Recombinant therapeutic protein

Size: px
Start display at page:

Download "Recombinant therapeutic protein"

Transcription

1 B i op r o c e s s Technical Differential Cell Culture Media for Single-Cell Cloning Requirements of CHO-S and CHO DG44 Cells Prasad Dhulipala, Margaret Liu, Shannon Beatty, Michelle Sabourin, Graziella Piras, Shawn Barrett, Richard Hassett, and Stephen Gorfien Recombinant therapeutic protein production using cell culture systems is a US$7 billion market. Most biotherapeutic proteins, including monoclonal antibodies (MAbs), are produced in Chinese hamster ovary (CHO) cells, which can generate the posttranslational modifications required for full biological function. Single-cell cloning is an important step in generating homogenous recombinant protein-producing mammalian cell lines. Recent advances in media development technologies have enabled limiting dilution cloning (LDC) and protein production in a serum-free environment to meet regulatory requirements. LDC allows homogeneity of a selected cell line. It involves diluting a pool of transfected cells down to a single cell per culture well and then expanding that single cell to a larger cell population called a clonal cell population or cell line. Success of this process requires a medium containing Product Focus: Pr o t e i n s, antibodies Process Focus: Upstream processing Wh o Sh o u l d Re a d: Pr o c e s s development and formulation Ke y w o r d s : CHO cells, c l o n i n g, g r o w t h m e d i a, c l o n i n g m e d i u m, transfec tion, IgG Le v e l: Intermediate Tina Rencelj ( correctly balanced nutrients that promote cell growth at extremely low cell densities. To meet stringent regulatory requirements, most current cell culture production processes are performed using well-defined serum and protein-free media (1), whereas development of cell lines is still performed with serum-containing medium. That requires adaptation of cells to serum-free media after clonal selection. Puck et al. first reported clonal growth of mammalian cells at high plating efficiencies in large volumes of cell culture media (2), and other investigators have confirmed their results (3). Clonal growth required media containing whole serum, dialyzed serum, purified serum components, or undefined dialyzed components from the serum (4, ). Ham reported the first successful experiments of clonal growth with a completely synthetic medium, F-12 (3). However, that medium failed to perform reproducibly at low cell densities. MCDB 1 was subsequently developed specifically for clonal growth of CHO cells, and investigations have shown that supplementation of MCDB 1 with insulin or methylcellulose is required for Chinese hamster lung cell growth in low densities (6). Several companies have developed chemically defined and animal-origin-free (AOF) media formulations for CHO cell growth (7) and bioprocessing applications (8). Here, we compare the performance of various chemically defined (CD) serum-free media in LDC assay, clone expansion, and other parts of the bioprocessing work flow. Materials and Methods Materials: We obtained all cell lines, cell culture media, supplements, serum, and transfection kits from Life Technologies Corporation, unless otherwise indicated. We purchased EX-CELL cloning medium and 96-well plates from Sigma and Fisher Scientific, respectively. Cell Culture: Stock cultures of test cells lines parental CHO-S, recombinant CHO DG44- erythropoietin (EPO) clone, and CHO-S or CHO DG44 pools transfected with an IgG or EPO expression plasmid were maintained in suspension culture in CD CHO, CD OptiCHO, or CD FortiCHO growth media. We 44 BioProcess International 9(11) De c e m b e r 11

2 Figure 1: Performance of lean AOF cloning medium using CHO-S parental and recombinant CHO DG44-EPO cells: Cells were grown for at least three passages in CD CHO medium with 8 mm glutamine before LDC assay and diluted to 1, cells/ml in CD CHO medium. Final dilution was cells/ml (made in AOF cloning medium). Cells were plated at 1 cell/well. The assay included five different lots of AOF cloning medium. Values are average ±SD from three replicates. Negative control is a formulation in which some components were not added. Results show no significant difference between lots (p >.). CHO -S Cells Lot 1 Lot 2 Lot 3 Lot 4 Lot Average Neg. Control Lot maintained cells requiring selection agents posttransfection for at least three passages without selection before cloning. We used basal medium Eagle (BME) with Earle s salts supplemented with % fetal bovine serum (FBS) as a positive control for comparing performance of AOF cloning medium. We supplemented all cell growth media with 8 mm l-glutamine and grew cells in an incubator set at 37 C, 8% humidity, and 8% CO 2. Preparation of Conditioned Medium: We seeded cells at 3 viable cells/ml in a sufficient culture volume of different growth media supplemented with 8 mm l-glutamine to generate enough conditioned medium needed for cloning experiments. Cells were grown for four or five days and were centrifuged at 8g for five minutes. We collected supernatants (conditioned medium), sterilized them using.22-µm membrane filters (SteriFlip, Millipore), and used them in cloning assays. Aliquots were frozen at 8 C until needed. Transfection: Parental CHO-S cells (1 7 cells/ml) were transfected with µg of IgG expression plasmid using FreeStyle MAX CHO expression system (Invitrogen) following manufacturer s recommendations. We generated stable pools using simultaneous selection with puromycin and methotrexate (MTX) at a -nm concentration for five weeks. We selected three pools resistant to MTX 6 CHO DG44 EPO Cells Lot 1 Lot 2 Lot 3 Lot 4 Lot Average Neg. Control Lot and used them for LDC assay using well plates for each pool. Cloning Protocol: We grew cells in respective growth media for at least three passages in a three- to four-day subculture schedule before performing a cloning assay. We determined viable-cell densities using trypan blue exclusion and a Vi-Cell (Beckman Coulter) analyzer. Cells were serially diluted to 1, cells/ml in growth media. Using a previously established cloning assay (9), we placed 38.4 ml of cloning medium in a -ml conical tube and prewarmed it for one hour in an incubator set at 37 C, 8% humidity, and % CO 2 with the cap loosened. We added glutamine to the prewarmed media to 6-mM final concentration and mixed gently. We added µl of serially diluted cell stock (1, cells/ml) to this medium to reach a final dilution of cells/ml in a volume of ml. We mixed the contents gently by inverting tubes five to six times and dispensed µl of this media in each well of three 96-well plates. The plates were then incubated for 14 days at 37 C, 8% humidity, and % CO 2. We observed those plates on day 14 using a microscope and counted the wells with positive cell growth to calculate cloning efficiencies. We adjusted the initial volume (38.4 ml) of cloning medium accordingly when we added hypoxanthine and thymidine (HT) supplement (1: v/v) or conditioned medium (% v/v) during cloning. Growth media, conditioned Figure 2: Performance of AOF cloning medium with CHO-S or CHO-DG44 transfected pools: Cells were grown for at least three passages in CD OptiCHO medium with 8 mm glutamine before LDC assay. Cells were diluted to 1, cells/ml in CD OptiCHO medium. Final dilution was cells/ml (made in AOF cloning medium). Added to the assay was 1% v/v HT supplement (AOF + HT) or 1% v/v HT supplement and % v/v conditioned medium (AOF + HT + CM). Cells were plated at 1 cell/well. Values are average of three replicates. CHO-S and recombinant CHO-S- IgG pools show high cloning efficiencies without supplements, whereas recombinant CHO DG44 pools require HT or HT plus conditioned medium to attain high cloning efficiencies Cloning Efficiency % CHO-S Parental CHO-S IgG Pool CHO DG44 IgG Pool CHO DG44 EPO Pool AOF AOF + HT AOF + HT + CM media, and cloning media were matched in each cloning experiment. Each media combination assay was performed in triplicate. We used a serum free EX-CELL cloning medium (Sigma) supplemented with 4 mm l-glutamine and BME supplemented with % FBS and 6 mm glutamine for comparing cloning efficiencies. Clonal Expansion and Productivity Assay: To demonstrate that the CHO-S clones obtained from either AOF cloning medium or CD FortiCHO are expandable and that our cloning process using those media is capable of comparable cell growth and productivity, we selected more than recombinant CHO-S clones producing IgG from each media and expanded in CD FortiCHO supplemented with 8 mm l-glutamine. We performed primary screening starting with 96-well plates followed by 24-well, six-well plates, and bioreactor tubes or shake flasks. We carried out secondary screening in bioreactor tubes or six-well plates with 3 cells/ml seeding density. We measured IgG expression on the fifth day after seeding. We ranked all clones on the basis of IgG production and selected the 28 topproducing clones for tertiary 46 BioProcess International 9(11) De c e m b e r 11

3 screening. We grew cells in CD FortiCHO medium containing 8 mm L-glutamine and Anti-Clumping Agent (Gibco) (1: v/v) using simple fed-batch culture. We added 4 g/l glucose to those cultures on days three and five so that glucose did not become rate limiting during growth. A paired two-sample student t-test was used to determine the statistical significance (p.) of our data. Results and Discussion Our fundamental finding is that successful generation of clones derived from a single cell depends on cell type, medium used, presence or absence of additional supplements, and the recombinant protein expressed. Comprehensive medium screening and cloning assay protocol optimization in this study resulted in serum-free and CD-media options that are suitable for supporting single-cell cloning by limiting dilution. To assess the suitability of a lean, AOF cloning medium and three CD growth media formulations for single-cell cloning, we used a CHO-S parental cell line, a recombinant CHO DG44 cell line expressing EPO, and CHO-S or CHO DG44 cell pools transfected with either IgG or EPO expression plasmids. We used EX-CELL cloning medium supplemented with 4 mm l-glutamine and BME supplemented with % FBS and 6 mm glutamine for comparing cloning efficiencies among those media formulations. Figure 3: Performance of chemically defined growth media using CHO-S parental or recombinant CHO DG44-EPO cells: Cells were grown for at least three passages in the respective growth medium with 8 mm glutamine. For condition-1, growth medium was used for growth, dilution, and cloning. For condition-2, growth medium was used for growth and dilutions (up to 1, cells/ml), and AOF cloning medium was used for final dilution ( cells/ml) and cloning. CD CHO (p =.24) and CD FortiCHO (p =.36) showed better performance, whereas CD OptiCHO showed significantly lower (p =.13) cloning efficiency compared with AOF cloning medium with CHO-S cells (a). CD CHO (p =.628) and CD FortiCHO (p =.381) showed similar performance, whereas CD OptiCHO showed significantly lower (p =.122) cloning efficiency with recombinant DG-44-EPO cells (b). Values are average of three replicates ±SD. Condition-1 Experiment 1 Condition-1 Experiment 2 Condition-2 B 6 A AOF CD CD Opti CD Forti- Cloning CHO CHO CHO CD CD Opti CD Forti- CHO CHO CHO Cloning efficiency of lean AOF cloning medium differs between CHO-S and CHO DG44 cell lines. Traditionally, development of recombinant protein-producing cells was performed using serumcontaining medium. Cells had to subsequently be adapted to serum-free media following clonal selection. That process is risky because the selected clones may lose productivity or protein quality during adaptation. It also significantly lengthens the time needed for cell-line development. Cell culture production methods that can be performed in fully chemically defined, protein-free media will meet strict regulatory guidelines and will mitigate the risks mentioned above. To address those issues, we developed an AOF cloning medium and tested its performance in LDC assays. As a first attempt, CHO-S parental cells and recombinant CHO DG44-EPO clones were used in the assay to control for variation (Figure 1). Results from those assays revealed consistent performance for different lots of media (p >.). The observed minor differences are because different stock of cells were grown at different times. Recombinant CHO DG44- EPO cells consistently showed % higher cloning efficiencies compared with CHO-S parental cells under identical conditions. Results also showed that the performance of AOF cloning medium was equal to that of EX-CELL cloning medium and 7% of the cloning efficiency of BME Figure 4: Performance of chemically defined growth media and influence of HT supplement and conditioned medium on cloning using transfected cell pools: Cells were grown for at least three passages in the respective growth medium with 8 mm glutamine. All dilutions and cloning used the same growth medium. AOF cloning medium was used for final dilution ( cells/ml) as a positive control for comparison. Conditioned medium (% v/v) and HT supplement (1% v/v) were added to growth media or AOF cloning medium during some cloning assays. Condition-1 was growth, dilution, and cloning in CD-growth medium; condition 2 was growth, dilution, and cloning in CD-growth medium plus HT and CM; condition-3 was growth, dilution in CD-growth medium, and cloning in AOF cloning medium; and condition 4 was growth, dilution in CD-growth medium, and cloning in AOF cloning medium plus HT and CM. Values are average of three replicates ±SD Condition 1 Condition 2 Condition 3 Condition 4 CHO-S-IgG pool CHO DG44-EPO pool CHO DG44-IgG pool CD CHO CD Opti- CD Forti- CHO CHO CD CHO CD Opti- CD Forti- CHO CHO CD CHO CD Opti- CD Forti- CHO CHO 48 BioProcess International 9(11) De c e m b e r 11

4 Figure : Protein expression profiles from top clones isolated from LDC experiments using AOF cloning medium and CD FortiCHO growth medium for cloning: LDC assay included stable pools from CHO-S cells transfected with IgG, with either AOF cloning medium or CD FortiCHO growth medium. Cells were plated at. cell/well and clone selection was performed with primary, secondary, and tertiary screenings under identical conditions. Both media produced comparable cloning efficiencies (Table 1). Estimation of IgG from top 28 clones grown for seven days using simple glucose fed batch showed similar protein expression profiles between clones generated from AOF cloning medium or CD FortiCHO medium. IgG titers of CD-FortiCHO clones compared with AOF cloning medium (%) Table 1: Comparison of AOF and CD FortiCHO cloning media (see Figure ) Cloning Medium Step AOF Cloning CD FortiCHO Cloning efficiency 33% a 31.% b Clones in primary screen Clones in secondary screen Clones in tertiary screen 28 a Average of three experiments supplemented with % FBS (data not shown). Having established the performance of AOF cloning medium using parental CHO-S or CHO DG44 EPO clone, we carried out additional experiments using CHO-S or CHO DG44 cell pools transfected with either IgG or EPO expression constructs (Figure 2). CHO-S parental cells or recombinant CHO-S- IgG pools showed high cloning efficiencies using AOF cloning medium. By contrast, CHO DG44-IgG or EPO transfected pools showed poor cloning efficiency in the absence of supplement addition. We added either HT supplement alone or HT supplement combined with conditioned medium (generated from empty poptivec plasmid vector) during cloning to examine whether cloning efficiencies improved in recombinant CHO DG44 pools. Addition of HT supplement produced five- and threefold improvement, and addition of both HT and conditioned medium gave seven- and fourfold b Average of two experiments increase in cloning efficiencies in IgG and EPO, respectively. Removal of selection pressure several passages before cloning further improved cloning efficiencies in CHO DG44 pools (data not shown). CD growth media do not require supplements for CHO-S cells or CHO-S transfected cell pools. The lean AOF cloning medium did not perform well with CHO DG44 pools without supplements. We evaluated three chemically defined CHO growth media to examine whether they can be used for LDC assay using parental CHO-S cells, a recombinant CHO DG44-EPO clone, and CHO DG44 cell pools transfected with either EPO or IgG expression constructs. Experiments using CHO-S cells and pools with different growth media showed 44% and 26% higher cloning efficiencies with CD CHO and CD FortiCHO, respectively. CD OptiCHO showed % lower efficiency compared with AOF cloning medium (Figure 3a). Experiments conducted with CHO DG44-EPO cells showed similar performance among AOF cloning medium, CD CHO, and CD FortiCHO media, both when the latter two were used as cloning media and as growth media. However, CD OptiCHO failed when used as a cloning medium (Figure 3b) but showed significant improvement (p =.12) when AOF cloning medium was used for LDC after cells were grown and diluted in CD OptiCHO. We repeated experiments using recombinant CHO-S-IgG pools, and results revealed high cloning efficiencies when we used CD growth media as growth and dilution media or cloning media (Figure 4 left). Addition of HT supplement and conditioned medium did not improve cloning efficiency of CD media when used for cloning (data not shown). It can be concluded from these three experiments that either AOF cloning medium, CD CHO, or CD FortiCHO media can be used for successful LDC assays when CHO-S cells, recombinant CHO-S cell pools, or recombinant CHO DG44 clones are used for cloning. However, CD OptiCHO growth medium did not perform well under similar conditions. CHO-S cells, recombinant CHO-S cell pools, or recombinant CHO DG44 clones required no supplementation with HT or conditioned medium. IgG or EPO expression plasmids show different profiles. Our studies carried out with recombinant CHO DG44 cell pools expressing either IgG or EPO showed different cloning profiles. When CD growth media or AOF cloning medium were used in LDC assays, cloning efficiency was very low. In CHO DG44-EPO pools, addition of HT supplement and conditioned medium to CD FortiCHO medium and to AOF cloning medium resulted in a two- to threefold increase in cloning efficiencies (Figure 4 middle). We observed moderate improvements with CD CHO and CD OptiCHO media. Similar experiments conducted with BioProcess International 9(11) De c e m b e r 11

5 recombinant CHO DG44-IgG pools showed that addition of HT supplement and conditioned medium to all CD-growth media or to AOF cloning medium improved cloning efficiencies (Figure 4 right). Studies conducted to evaluate performance of various CD serumfree media in LDC using different cells showed cell-line specific results. Performance of media were also sensitive to the protein expressed in the host cell line. Observed variations among different CHO cell populations can be attributed to several factors, including integration site of the recombinant DNA, chromosomal changes induced by foreign DNA integration, and other transcriptional regulatory elements. Primary diploid Chinese hamster (Cricetulus griseus) cells contain 22 chromosomes (), and parental CHO-K1 cells have 21 chromosomes and nine Z-group chromosomes that are structurally different from normal hamster cells (11). CHO DG44 strain was generated from CHO cell lines using chemical or radiation-mediated mutagenesis. Both alleles of dihydrofolate reductase (dhfr) on chromosome 2 are deleted, and these cells contain only chromosomes (12). Derouazi et al. investigated the stability and cytogenetic characterization of CHO cells established by different transfection methods and showed single integration site regardless of the gene delivery method or number of copies integrated (13). It was also observed that the integration site is not specific to a single chromosome. Integration of foreign DNA induced rearrangements on the same chromosome where it is integrated or on different chromosome in % of cell lines established. Results of this work demonstrate that different cell lines and transfected pools require different nutrient composition and/or concentrations to survive and grow at extremely low cell density. The observed specificity may be due to genetic alterations frequently associated with the establishment of recombinant CHO cell lines. CD FortiCHO medium can be used for entire bioprocess workflow. We conducted additional experiments to confirm that the single-cell clones generated using AOF cloning medium or CD FortiCHO growth medium indeed produced the protein of interest. We isolated and screened ~46 clones from CHO-S cells transfected with an IgG expression vector. Finally, we selected clones and compared IgG expression levels after tertiary screening in shake flask cultures. Results showed that clones generated from both AOF cloning medium and CD FortiCHO produced similar IgG expression levels. (Figure, Table 1). Both AOF cloning medium and CD FortiCHO growth medium support cloning of CHO-S pools. Nonetheless, using CD FortiCHO growth medium is advantageous because the same medium can be used during the entire cell engineering workflow (growing parental cells, transfection, selection, single-cell cloning) and scale-up. This not only saves time, but it also eliminates risks associated with adaptation, including selection against desired traits. Acknowle dgme nts The authors thank Hemasunder Reddy, Sridhar Kottakota, and David Zhao for initial AOF cloning medium prototype development work. Re fe re nces 1 Gorfien SF, et al. Recombinant Protein Production by CHO Cells Cultured in a Chemically Defined Medium. Animal Cell Technol. 9, 1998: Puck TT, Markus PI, Cieciura SJ. Clonal Growth of Mammalian Cells In Vitro: Growth Characteristics of Colonies from Single HeLa Cells with and without a Feeder Layer. J. Exp. Med. 3(2), 196: Ham RG. Clonal Growth of Mammalian Cells in a Chemically Defined, Synthetic Medium. Proc. Nat. Acad. Sci. 3, 196: Fisher HW, Puck TT, Sato G. Molecular Growth Requirements of Single Mammalian Cells: Quantitative Colonial Growth of Single S3 Cells in a Medium Containing Synthetic Small Molecular Constituents and Two Purified Protein Fractions. J Exp. Med 9, 199: Gwatkin RB. Are Macromolecules Required for Growth of Single Isolated Mammalian Cells? Nature 186, 196: Hamilton GW, Ham RG. Clonal Growth of Chinese Hamster Cell Lines in Protein-Free Media. In Vitro 13, 1977: Lin N, et al. Development and Application of an Animal-Component-Free Single-Cell Cloning Medium for Chinese Hamster Ovary Cell Lines. Cell Technology for Cell Products. Smith R, Ed. Springer: New York, NY, 7: Kuchenbecker M, et al. Establishment of Recombinant CHO Cell Lines under Serum-Free Conditions. Cell Technology for Cell Products. Smith R, Ed. Springer: New York, NY, 7: Ryan, JA. Single-Cell Cloning by Serial Dilution. Corning Life Sciences, 2. Ray M, Mohandas T. Proposed Banding Nomenclature for the Chinese Hamster Chromosomes (Cricetulus griseus). Cytogenet. Cell Genet. 16, 1976: Deaven LL, Petersen DF. The Chromosomes of CHO, an Aneuploid Chinese Hamster Cell Line: G-band, C-band, and Autoradiographic Analyses. Chromosoma 41, 1973: Urlaub G, et al. Deletion of the Diploid Dihydrofolate Reductase Locus from Cultured Mammalian Cells. Cell 33, 1983: Derouazi M, et al. Stability and Cytogenetic Characterization of Recombinant CHO Cell Lines Established by Microinjection and Calcium Phosphate Transfection. Cell Technology for Cell Products Smith R, Ed. Springer: New York, NY, 7; Prasad Dhulipala, PhD, is a staff scientist of bioproduction research and development at Life Technologies Corporation, 317 Staley Road, Grand Island, NY 172; ; fax ; prasad.dhulipala@lifetech.com. Margaret Liu, Shannon Beatty, and Michelle Sabourin are staff scientists, Graziella Piras and Shawn Barrett are senior managers, Richard Hassett is project manager, and Stephen Gorfien is senior director, all at Life Technologies. Products in this study are for research use only and not intended for animal or human therapeutic or diagnostic use. To order reprints of this article, contact Rhonda Brown (rhondab@fosterprinting.com) Download a low-resolution PDF online at De c e m b e r 11 9(11) BioProcess International 1

Suspension Culture raav-modified GS -/- CHO Cell Line

Suspension Culture raav-modified GS -/- CHO Cell Line Suspension Culture raav-modified GS -/- CHO Cell Line CATALOG NO. HD-BIOP3 1.0 Product Description/Overview The raav-modified GS -/- CHO (Chinese Hamster Ovary) cell line HD-BIOP1 was created using Horizon

More information

FectoCHO Expression system DNA transfection kit for protein production PROTOCOL

FectoCHO Expression system DNA transfection kit for protein production PROTOCOL FectoCHO Expression system DNA transfection kit for protein production DESCRIPTION PROTOCOL FectoCHO Expression system is a three-component kit that includes FectoPRO transfection reagent, FectoPRO Booster

More information

FectoPRO DNA transfection kit for Bioproduction PROTOCOL

FectoPRO DNA transfection kit for Bioproduction PROTOCOL DNA transfection kit for Bioproduction PROTOCOL DESCRIPTION transfection kit is specifically designed for enhanced Transient Gene Expression using low DNA amounts, in suspension CHO and HEK-293 cells as

More information

TransIT-PRO Transfection Kit Protocol for MIR 5700 and 5760

TransIT-PRO Transfection Kit Protocol for MIR 5700 and 5760 Quick Reference Protocol, SDS and Certificate of Analysis available at mirusbio.com/5700 INTRODUCTION TransIT-PRO Transfection Kit was specifically developed for mammalian protein production in suspension

More information

NEW! CHOgro Expression System

NEW! CHOgro Expression System NEW! CHOgro Expression System At Mirus Bio, we know it s all about expression. Introducing the new CHOgro Expression System, a transient transfection platform that finally gets high protein titers with

More information

ClonaCell -CHO. Semi-Solid Cloning Testing Guidelines

ClonaCell -CHO. Semi-Solid Cloning Testing Guidelines ClonaCell -CHO Semi-Solid Cloning Testing Guidelines Table of Contents 1.0 Introduction... 3 2.0 Before Planning a Semi-Solid Cloning Protocol... 4 3.0 Equipment and Materials... 5 4.0 Storage of Semi-Solid

More information

CHOgro Expression System

CHOgro Expression System CHOgro Expression System At Mirus Bio, we know it s all about expression. Introducing the new CHOgro Expression System, a transient transfection platform that finally gets high protein titers with robust

More information

TransIT-PRO Transfection Reagent Protocol for MIR 5740 and 5750

TransIT-PRO Transfection Reagent Protocol for MIR 5740 and 5750 Quick Reference Protocol, SDS and Certificate of Analysis available at mirusbio.com/5740 INTRODUCTION TransIT-PRO Transfection Reagent was developed by empirically testing proprietary lipid and polymer

More information

Protocol CRISPR Genome Editing In Cell Lines

Protocol CRISPR Genome Editing In Cell Lines Protocol CRISPR Genome Editing In Cell Lines Protocol 2: HDR donor plasmid applications (gene knockout, gene mutagenesis, gene tagging, Safe Harbor ORF knock-in) Notes: 1. sgrna validation: GeneCopoeia

More information

HYPE-CHO Transfection Kit Results

HYPE-CHO Transfection Kit Results HYPE-CHO Transfection Kit Results HYPE-CHO Transfection Kit is the newest reagent dedicated to achieve High Yield Protein Expression in CHO cells. This kit has been designed for maximum efficiency in CHO

More information

CHOgro Expression System

CHOgro Expression System SDS and Certificate of Analysis available at mirusbio.com/6260 INTRODUCTION The CHOgro Expression System is an optimized platform for transient, high titer protein production in suspension CHO derived

More information

ExpiCHO Expression System

ExpiCHO Expression System APPLICATION NOTE ExpiCHO Expression System ExpiCHO Expression System Protocols for 24 and 96 deep well blocks and mini bioreactor tubes The Gibco ExpiCHO Expression System brings together a high-expressing

More information

WELCOME TO THE FUTURE OF TRANSIENT EXPRESSION. Smart start guide for the ExpiCHO system

WELCOME TO THE FUTURE OF TRANSIENT EXPRESSION. Smart start guide for the ExpiCHO system WELCOME TO THE FUTURE OF TRANSIENT EXPRESSION Smart start guide for the ExpiCHO system 2 Contents Smart start tips 6 Shake grid 7 Frequently asked questions (FAQs) Getting started 8 Cell handling 8 Medium

More information

Gxpress CHO Transfection & Medium Kit. CHO Cells Gene Expression System. Description. Package Contents(Catalog Number GXCHO-MAK-0010) Important Points

Gxpress CHO Transfection & Medium Kit. CHO Cells Gene Expression System. Description. Package Contents(Catalog Number GXCHO-MAK-0010) Important Points Gxpress CHO Transfection & Medium Kit for CHO Cells Gene Expression System Description Gxpress CHO Transfection & Medium Kit has been developed for the gene expression system of Chinese hamster ovary (CHO)

More information

TransIT-PRO Transfection Kit Protocol for MIR 5700 and 5760

TransIT-PRO Transfection Kit Protocol for MIR 5700 and 5760 INTRODUCTION TransIT-PRO Transfection Kit consists of a DNA transfection reagent and boost combination specifically developed for mammalian protein production in suspension 293 and CHO derived cells. The

More information

Product Information.

Product Information. Product Information EX-CELL CD CHO Fusion Serum-Free Medium for CHO Cells Chemically Defined, Animal-Component Free without L-glutamine, without sodium bicarbonate CATALOG NO. 24365C Description EX-CELL

More information

STANDARD OPERATING PROCEDURE

STANDARD OPERATING PROCEDURE STANDARD OPERATING PROCEDURE Culture of the Rat Macrophage Cell Line, NR8383 SOP number: WP1/001 Protocol prepared by: Ewelina Hoffman Developed under NC3R project: NC/C013203/1 INTRODUCTION Procedure

More information

Code No Retrovirus Packaging Kit Ampho

Code No Retrovirus Packaging Kit Ampho Code No. 6161 Retrovirus Packaging Kit Ampho Precautions for the use of this product Please follow the guideline for experiments using recombinant DNA issued by the relevant authorities and the safety

More information

Optimized Feed Strategies for Increased Titer and Product Quality

Optimized Feed Strategies for Increased Titer and Product Quality Optimized Feed Strategies for Increased Titer and Product Quality Steve Gorfien, PhD Senior Director, R&D steve.gorfien@thermofisher.com The world leader in serving science Agenda Pain points in fed-batch

More information

Application Note. Superior protein yields in suspension CHO cells using FectoPRO -mediated transient transfection in CELLSTAR CELLreactor

Application Note. Superior protein yields in suspension CHO cells using FectoPRO -mediated transient transfection in CELLSTAR CELLreactor Application Note Superior protein yields in suspension CHO cells using FectoPRO -mediated transient transfection in CELLSTAR CELLreactor 1. Introduction The introduction of nucleic acids into cells represents

More information

CloneMedia and XP Media CHO Growth A Reagents Table 0-1: Available Reagents

CloneMedia and XP Media CHO Growth A Reagents Table 0-1: Available Reagents CloneMedia and XP Media CHO Growth A Reagents Table 0-1: Available Reagents Item Quantity Part Number CloneMedia CHO Growth A with L-Gln, 90 ml 1 bottle K8810 CloneMedia CHO Growth A with L-Gln, 90 ml

More information

Data Sheet GITR / NF-ĸB-Luciferase Reporter (Luc) - Jurkat Cell Line Catalog #60546

Data Sheet GITR / NF-ĸB-Luciferase Reporter (Luc) - Jurkat Cell Line Catalog #60546 Data Sheet GITR / NF-ĸB-Luciferase Reporter (Luc) - Jurkat Cell Line Catalog #60546 Description This cell line expresses a surface human GITR (glucocorticoid-induced TNFR family related gene; TNFRSF18;

More information

ReproRNA -OKSGM is a non-integrating, self-replicating RNA-based reprogramming vector for generating induced pluripotent stem (ips)

ReproRNA -OKSGM is a non-integrating, self-replicating RNA-based reprogramming vector for generating induced pluripotent stem (ips) Kit for generating ips cells using ReproRNA -OKSGM, a non-integrating, self-replicating RNA reprogramming vector Product Description ReproRNA -OKSGM is a non-integrating, self-replicating RNA-based reprogramming

More information

HIV-1 Pseudovirus Neutralization Protocol using Ghost cells

HIV-1 Pseudovirus Neutralization Protocol using Ghost cells HIV-1 Pseudovirus Neutralization Protocol using Ghost cells Institute of Tropical Medicine, Belgium Neutnet code: 6A Contact person: Leo Heyndrickx; LHeyndrickx@itg.be 1. AIM: This protocol describes the

More information

Transfection of pluripotent stem cells with Lipofectamine Stem reagent in mtesr1 Medium on Geltrex matrix

Transfection of pluripotent stem cells with Lipofectamine Stem reagent in mtesr1 Medium on Geltrex matrix TRANSFECTION PROTOCOL Lipofectamine Stem Transfection Reagent Transfection of pluripotent stem cells with Lipofectamine Stem reagent in mtesr1 Medium on Geltrex matrix PSC growth medium, passaging reagents,

More information

Anti-Clumping Supplement

Anti-Clumping Supplement Anti-Clumping Supplement 2511 Daimler Street, Santa Ana, California 9275-5588 USA Telephone: 1 949 261 78 1 8 437 576 Fax: 1 949 261 6522 www.irvinesci.com PN 4162 Rev. Anti-Clumping Supplement Catalog

More information

Gibco ExpiCHO Expression System

Gibco ExpiCHO Expression System Gibco ExpiCHO Expression System Essential protocol guide The ExpiCHO system is so easy; it takes less work than making proteins in E. coli. The scalability of the system is fantastic; I can express 30

More information

Thermo Scientific Metabolic Pathway Design Process Cell culture media and process optimization approaches for optimal biotherapeutic production

Thermo Scientific Metabolic Pathway Design Process Cell culture media and process optimization approaches for optimal biotherapeutic production Thermo Scientific Metabolic Pathway Design Process Cell culture media and process optimization approaches for optimal biotherapeutic production May/June 2013 1 The world leader in serving science Agenda

More information

Transfection of neural stem cells with Lipofectamine Stem Transfection Reagent in StemPro medium

Transfection of neural stem cells with Lipofectamine Stem Transfection Reagent in StemPro medium TRANSFECTION PROTOCOL Lipofectamine Stem Transfection Reagent Transfection of neural stem cells with Lipofectamine Stem Transfection Reagent in StemPro medium NSC media, passaging reagents, and complexation

More information

Table of Contents. 2.1 NeuroCult NCFC Assay Kit (Rat) Components Additional Required Reagents Required Equipment...

Table of Contents. 2.1 NeuroCult NCFC Assay Kit (Rat) Components Additional Required Reagents Required Equipment... i Table of Contents 1.0 Overview of the NeuroCult NCFC Assay 2.0 Materials 2.1 NeuroCult NCFC Assay Kit (Rat) Components... 4 2.2 Additional Required Reagents... 4 2.3 Required Equipment... 4 3.0 Preparation

More information

Automated Optimization of IgG Production in CHO Cells

Automated Optimization of IgG Production in CHO Cells APPLICATION NOTE Automated Optimization of IgG Production in CHO Cells Michael Kowalski, Staff Applications Scientist Beckman Coulter Life Sciences, Indianapolis, IN David Apiyo, Marketing Applications

More information

Thermo Scientific HyCell CHO Medium: Targeted for high cell density and productivity across a broad variety of CHO clones

Thermo Scientific HyCell CHO Medium: Targeted for high cell density and productivity across a broad variety of CHO clones Thermo Scientific HyCell CHO Medium: Targeted for high cell density and productivity across a broad variety of CHO clones May/June 2013 1 The world leader in serving science Agenda Introduction Thermo

More information

THE DELIVERY EXPERTS. INTERFERin in vitro sirna transfection reagent PROTOCOL

THE DELIVERY EXPERTS. INTERFERin in vitro sirna transfection reagent PROTOCOL THE DELIVERY EXPERTS INTERFERin in vitro sirna transfection reagent PROTOCOL DESCRIPTION INTERFERin is a powerful sirna transfection reagent that ensures efficient gene silencing and reproducible transfection

More information

STANDARD OPERATING PROCEDURE

STANDARD OPERATING PROCEDURE STANDARD OPERATING PROCEDURE Culture of the Human Monocyte-Macrophage Cell Line; U937 SOP number: WP1/002 Protocol prepared by: Ewelina Hoffman & Abhinav Kumar Developed under NC3R project: NC/C013203/1

More information

Growth and Maintenance of the 293A Cell Line

Growth and Maintenance of the 293A Cell Line Growth and Maintenance of the 293A Cell Line USER GUIDE Catalog Number R705-07 Publication Number MAN0000303 Revision A.0 For Research Use Only. Not for use in diagnostic procedures. The information in

More information

Data Sheet CD137/NF-κB Reporter - HEK293 Recombinant Cell Line Catalog # 79289

Data Sheet CD137/NF-κB Reporter - HEK293 Recombinant Cell Line Catalog # 79289 Data Sheet CD137/NF-κB Reporter - HEK293 Recombinant Cell Line Catalog # 79289 Background Human CD137 (4-1BB; TNFRS9) is an inducible co-stimulatory molecule that activates T cells. CD137:CD137L-mediated

More information

Development and Optimization of CHOgro Transient Expression Technologies for High Titer Antibody Production in Suspension CHO Cells

Development and Optimization of CHOgro Transient Expression Technologies for High Titer Antibody Production in Suspension CHO Cells Development and Optimization of CHOgro Transient Expression Technologies for High Titer Antibody Production in Suspension CHO Cells Laura Juckem, PhD Mirus Bio LLC Providing gene delivery expertise since

More information

BalanCD HEK293 SYSTEM

BalanCD HEK293 SYSTEM BalanCD HEK293 SYSTEM Maximize productivity in suspension cultures Versatile formulation supports transfection and production including: - Rapid, scalable production of viral vectors - Use the same system

More information

Cellca Technology Platform

Cellca Technology Platform Cellca Technology Platform Custom Cell Line & Process Development April 2018 Overview: Cellca Technology Platform Cellca CMO/Client Cell Line Development Process Development Process Transfer GMP Production

More information

ViaFect Transfection Reagent

ViaFect Transfection Reagent TECHNICAL MANUAL ViaFect Transfection Reagent Instructions for Use of Products E4981, E4982 and E4983 Revised 7/17 TM409 ViaFect Transfection Reagent All technical literature is available at: www.promega.com/protocols/

More information

Protocol. GoClone Reporter Constructs: Sample Protocol for Adherent Cells. Tech support: Luciferase Assay System

Protocol. GoClone Reporter Constructs: Sample Protocol for Adherent Cells. Tech support: Luciferase Assay System Luciferase Assay System Protocol GoClone Reporter Constructs: Sample Protocol for Adherent Cells LightSwitch Luciferase Assay System GoClone Reporter Assay Workflow Step 1: Seed cells in plate format.

More information

Amaxa Cell Line Nucleofector Kit L

Amaxa Cell Line Nucleofector Kit L Amaxa Cell Line Nucleofector Kit L For 3T3-L1 (adipocytes) [ATCC CL-173, cryopreserved] Mouse embryonal fibroblast, differentiated into adipocytes; Fibroblast-like cells before differentiation; adipocyte-like

More information

INTERFERin sirna transfection reagent

INTERFERin sirna transfection reagent INTERFERin in vitro sirna Transfection Protocol Company Information... 2 Product Information... 3 1. Standard sirna transfection of adherent cells... 4 (forward transfection)... 4 1.1 Cell seeding... 5

More information

VDL300.3 PRODUCTION OF RETROVIRAL VECTOR BY TRANSIENT TRANSFECTION

VDL300.3 PRODUCTION OF RETROVIRAL VECTOR BY TRANSIENT TRANSFECTION 1. Purpose 1.1. The purpose of this protocol is to produce retrovirus from transfected plasmid DNA. 1.2. This procedure is routinely performed in the Vector Development Laboratory (VDL) following Good

More information

Abstract. Materials and Methods. Introduction

Abstract. Materials and Methods. Introduction The Performance of Serum-Free and Animal Component-Free Media for Multiple Hybridoma Cell Lines and Culture Systems Heather N. Loke, Steven C. Peppers, Daniel W. Allison, Damon L. Talley, and Matthew V.

More information

TransIT -Lenti Transfection Reagent

TransIT -Lenti Transfection Reagent Quick Reference Protocol, SDS and Certificate of Analysis available at mirusbio.com/6600 INTRODUCTION Lentivirus is an enveloped, single-stranded RNA virus from the Retroviridae family capable of infecting

More information

INTERFERin in vitro sirna/mirna transfection reagent PROTOCOL

INTERFERin in vitro sirna/mirna transfection reagent PROTOCOL INTERFERin in vitro sirna/mirna transfection reagent PROTOCOL DESCRIPTION INTERFERin is a powerful sirna/mirna transfection reagent that ensures efficient gene silencing and reproducible transfection in

More information

Protocol Reprogramming Human Fibriblasts using the Dox Inducible Reprogramming Polycistronic Lentivirus Set: Human 4F2A LoxP

Protocol Reprogramming Human Fibriblasts using the Dox Inducible Reprogramming Polycistronic Lentivirus Set: Human 4F2A LoxP STEMGENT Page 1 OVERVIEW The following protocol describes the reprogramming of one well of BJ Human Fibroblasts (BJ cells) into induced pluripotent stem (ips) cells in a 6-well format. Transduction efficiency

More information

HYPE-293 Transfection Kit Results

HYPE-293 Transfection Kit Results HYPE-293 Transfection Kit Results Interest in any of the products, request or order them at Bio-Connect. Bio-Connect B.V. T NL +31 ()26 326 44 5 T BE +32 ()2 53 3 48 Begonialaan 3a F NL +31 ()26 326 44

More information

Modeling Cardiomyocyte Differentiation:

Modeling Cardiomyocyte Differentiation: icell Cardiac Progenitor Cells Prototype Application Protocol Wnt- and Activin/TGFβ-inhibitor Induction with Flow Cytometry Analysis Introduction The ability of cardiac progenitor cells to proliferate

More information

Technical Bulletin. CHOZN Platform. Product Description/Overview

Technical Bulletin. CHOZN Platform. Product Description/Overview CHOZN Platform Catalog NO. CHOGS (CHOZN GS Cell Line) Catalog NO. 14365C/24365C (EX-CELL CD CHO Fusion) Catalog NO 6366C (EX-CELL CHO Cloning Medium) Catalog NO. 14366C/24366C (EX-CELL Advanced CHO Fed-batch

More information

The RNAi Consortium (TRC) Broad Institute

The RNAi Consortium (TRC) Broad Institute TRC Laboratory Protocols Protocol Title: Lentivirus production of shrna, CRISPR, or ORF-pLX clones in 10 cm dishes or 6- well plates Current Revision Date: 6/3/2015 RNAi Platform,, trc_info@broadinstitute.org

More information

FreeStyle 293-F Cells

FreeStyle 293-F Cells user guide FreeStyle 293-F Cells Catalog Number R790-07 Document Part Number 25-0457 Publication Number MAN0000255 Revision A.0 Information in this document is subject to change without notice. DISCLAIMER

More information

APPROACHES TO IMPROVING THE PERFORMANCE OF MAMMALIAN CELL CULTURES FOR PROTEIN PRODUCTION

APPROACHES TO IMPROVING THE PERFORMANCE OF MAMMALIAN CELL CULTURES FOR PROTEIN PRODUCTION BioLOGIC USA BOSTON, 20 th OCTOBER 2004 APPROACHES TO IMPROVING THE PERFORMANCE OF MAMMALIAN CELL CULTURES FOR PROTEIN PRODUCTION Dr Robert Gay Lonza Biologics 2004 The Challenge of the MAb Market Global

More information

CloneMedia-CHOK1SV Semi-solid media for the growth of CHOK1SV colonies

CloneMedia-CHOK1SV Semi-solid media for the growth of CHOK1SV colonies Protocol CloneMedia-CHOK1SV Semi-solid media for the growth of CHOK1SV colonies Control #: 03PCT1011.A0 Effective Date: 01-Jul-11 ECO #: 4002 Content Page Introduction 3 Protocol 4 1. Media Preparation

More information

BalanCD HEK293 SYSTEM

BalanCD HEK293 SYSTEM BalanCD HEK293 SYSTEM Maximize productivity in suspension cultures Versatile formulation supports transfection and production including: - Rapid, scalable production of viral vectors - Use the same system

More information

Data Sheet PD-1 / NFAT - Reporter - Jurkat Recombinant Cell Line Catalog #: 60535

Data Sheet PD-1 / NFAT - Reporter - Jurkat Recombinant Cell Line Catalog #: 60535 Data Sheet PD-1 / NFAT - Reporter - Jurkat Recombinant Cell Line Catalog #: 60535 Product Description Recombinant Jurkat T cell expressing firefly luciferase gene under the control of NFAT response elements

More information

ExpiCHO Expression System

ExpiCHO Expression System ExpiCHO Expression System USER GUIDE For transfection of ExpiCHO-S Cells in a defined, serum-free medium Catalog Number A29133 Document Part Number A29518 Publication Number MAN0014337 Revision C.0 For

More information

Amaxa Cell Line 96-well Nucleofector Kit SF

Amaxa Cell Line 96-well Nucleofector Kit SF Amaxa Cell Line 96-well Nucleofector Kit SF For HL-60 Human acute promyelocytic leukemia; myeloblastic cells Example for Nucleofection of HL-60 cells % 100 Transfection efficiency % 100 Transfection efficiency

More information

Amaxa Cell Line 96-well Nucleofector Kit SF

Amaxa Cell Line 96-well Nucleofector Kit SF Amaxa Cell Line 96-well Nucleofector Kit SF For HepG2 Human hepatocellular carcinoma; adherent epithelial cells Example for Nucleofection of HepG2 cells OD 405 100 80 SEAP activity % 100 80 Transfection

More information

ExpiCHO Expression System

ExpiCHO Expression System ExpiCHO Expression System USER GUIDE For transfection of ExpiCHO-S Cells in a defined, serum-free medium Catalog Number A29133 Publication Number MAN0014337 Revision D.0 For Research Use Only. Not for

More information

CloneMedia-CHO Semi-solid media for the growth of CHO-S Colonies

CloneMedia-CHO Semi-solid media for the growth of CHO-S Colonies Protocol CloneMedia-CHO Semi-solid media for the growth of CHO-S Colonies Control #: 03PCT1010.A0 Effective Date: 01-Jul-11 ECO #: 4002 Content Page Introduction 3 Protocol 4 1. Media Preparation 4 2.

More information

Storage on Arrival. Aliquot and store at -20 C for up to 6 months. Store at -20 C. Aliquot and store at -80 C for up to 6 months

Storage on Arrival. Aliquot and store at -20 C for up to 6 months. Store at -20 C. Aliquot and store at -80 C for up to 6 months Human Lung Epithelial Stem Cells Catalog No. ax3005 ax3580 ax0047 ax0047x Product Name Lung Epithelial Stem Cells Lung Epithelial Stem Cell Culture Medium SureGrowth Recombinant Human FGF2 SureGrowthX

More information

The RNAi Consortium (TRC) Broad Institute

The RNAi Consortium (TRC) Broad Institute TRC Laboratory Protocols Protocol Title: Lentivirus production of shrna or ORF-pLX clones Current Revision Date: 10/20/2012 RNAi Platform,, trc_info@broadinstitute.org Brief Description: This protocol

More information

In vitro Transfection Protocol

In vitro Transfection Protocol BIOMOL GmbH Waidmannstr. 35 22769 Hamburg info@biomol.de www.biomol.de Phone:+49-40-8532600 or 0800-2466651 (D) Fax: +49-40-85326022 or 0800-2466652 (D) In vitro Transfection Protocol Technical Assistance...

More information

Transfection of Jurkat cells with METAFECTENE

Transfection of Jurkat cells with METAFECTENE Transfection of cells with METAFECTENE Qian Chen and Massimo Gadina Department of Microbiology and Immunology, Queen s University, Belfast, Northern Ireland Transfection of eukaryotic cells is widely used

More information

COMPONENT NAME COMPONENT # QUANTITY STORAGE SHELF LIFE FORMAT. Store at 2-8 C. Do not freeze. Store at 2-8 C. Do not freeze.

COMPONENT NAME COMPONENT # QUANTITY STORAGE SHELF LIFE FORMAT. Store at 2-8 C. Do not freeze. Store at 2-8 C. Do not freeze. This document is available at www.stemcell.com/pis EasySep Mouse CD90. Kit II Catalog #89 For processing x 0^9 cells Description Isolate highly purified CD90.+ (Thy.+) cells from mouse splenocytes or other

More information

RECENT IMPROVEMENTS TO LONZA S GLUTAMINE SYNTHETASE (GS) GENE EXPRESSION SYSTEM. Dr Robert Gay

RECENT IMPROVEMENTS TO LONZA S GLUTAMINE SYNTHETASE (GS) GENE EXPRESSION SYSTEM. Dr Robert Gay RECENT IMPROVEMENTS TO LONZA S GLUTAMINE SYNTHETASE (GS) GENE EXPRESSION SYSTEM Dr Robert Gay Lonza Biologics plc, 2004 The Challenge of the MAb Market Global market for Monoclonal Antibody Therapeutics

More information

Data Sheet. TCR activator / PD-L1 - CHO Recombinant Cell line Cat. #: 60536

Data Sheet. TCR activator / PD-L1 - CHO Recombinant Cell line Cat. #: 60536 Data Sheet TCR activator / PD-L1 - CHO Recombinant Cell line Cat. #: 60536 Product Description Recombinant CHO-K1 cells constitutively expressing human PD-L1 (Programmed Cell Death 1 Ligand 1, CD274, B7

More information

EpiQuik General Protein-DNA Binding Assay Kit (Fluorometric)

EpiQuik General Protein-DNA Binding Assay Kit (Fluorometric) EpiQuik General Protein-DNA Binding Assay Kit (Fluorometric) Base Catalog # PLEASE READ THIS ENTIRE USER GUIDE BEFORE USE The EpiQuik General Protein-DNA Binding Assay Kit (Fluorometric) is suitable for

More information

TransIT -VirusGEN Transfection Reagent

TransIT -VirusGEN Transfection Reagent Quick Reference Protocol, SDS and Certificate of Analysis available at mirusbio.com/6700 INTRODUCTION Adeno-associated virus (AAV) is a nonenveloped, single stranded DNA virus from the Paroviridae family

More information

Data Sheet HVEM/NF-κB Reporter Jurkat Recombinant Cell Line Catalog # 79310

Data Sheet HVEM/NF-κB Reporter Jurkat Recombinant Cell Line Catalog # 79310 Data Sheet HVEM/NF-κB Reporter Jurkat Recombinant Cell Line Catalog # 79310 Product Description Recombinant clonal stable Jurkat T cell line expressing firefly luciferase gene under the control of 4 copies

More information

Data Sheet IDO2 - HEK293 Recombinant Cell Line Cat #: 60533

Data Sheet IDO2 - HEK293 Recombinant Cell Line Cat #: 60533 Data Sheet IDO2 - HEK293 Recombinant Cell Line Cat #: 60533 Description Recombinant HEK293 cell line expressing tetracycline-inducible human indoleamine 2,3- dioxygenase (IDO2), Genbank accession number

More information

Protocol Using a Dox-Inducible Polycistronic m4f2a Lentivirus to Reprogram MEFs into ips Cells

Protocol Using a Dox-Inducible Polycistronic m4f2a Lentivirus to Reprogram MEFs into ips Cells STEMGENT Page 1 OVERVIEW The following protocol describes the transduction and reprogramming of one well of Oct4-GFP mouse embryonic fibroblasts (MEF) using the Dox Inducible Reprogramming Polycistronic

More information

Protocol. High-throughput Transfection Protocol for GoClone Reporter Assays. Tech support: Luciferase Assay System

Protocol. High-throughput Transfection Protocol for GoClone Reporter Assays. Tech support: Luciferase Assay System Luciferase Assay System Protocol High-throughput Transfection Protocol for GoClone Reporter Assays LightSwitch Luciferase Assay System GoClone Reporter Assay Workflow promoter luciferase Step 1: Simultaneously

More information

TransIT -Lenti Transfection Reagent

TransIT -Lenti Transfection Reagent Quick Reference Protocol, SDS and Certificate of Analysis available at mirusbio.com/6600 INTRODUCTION Lentivirus is an enveloped, single-stranded RNA virus from the Retroviridae family capable of infecting

More information

Tech support: Luciferase Assay System. Protocol. LightSwitch Transfec tion Optimization Kit. Genome In. Function Out.

Tech support: Luciferase Assay System. Protocol. LightSwitch Transfec tion Optimization Kit. Genome In. Function Out. Luciferase Assay System Protocol LightSwitch Transfec tion Optimization Kit LightSwitch Transfection Optimization Kit Instructions for use in 96-well format, 4 day protocol OVERVIEW The LightSwitch Transfection

More information

Mammalian Expression Platform

Mammalian Expression Platform Mammalian Expression Platform Partners for Life Advancing tomorrow s medicines w Your CDMO partner for biologics and advanced therapies Good science, experience and a quality driven approach Line/Strain

More information

Data Sheet ICOS/NFAT Reporter-Jurkat Recombinant Cell Line Catalog #: 79668

Data Sheet ICOS/NFAT Reporter-Jurkat Recombinant Cell Line Catalog #: 79668 Data Sheet ICOS/NFAT Reporter-Jurkat Recombinant Cell Line Catalog #: 79668 Product Description Recombinant Jurkat T cell expressing firefly luciferase gene under the control of NFAT response elements

More information

3D Mammary Colony-Forming Cell Assay Giusy Tornillo 1* and Sara Cabodi 2

3D Mammary Colony-Forming Cell Assay Giusy Tornillo 1* and Sara Cabodi 2 3D Mammary Colony-Forming Cell Assay Giusy Tornillo 1* and Sara Cabodi 2 1 Cardiff School of Biosciences, European Cancer Stem Cell Research Institute, Cardiff University, Cardiff, UK; 2 Department of

More information

Introduction to Sinofection

Introduction to Sinofection Introduction to Sinofection Sinofection is a superior cationic polymer-based transfection reagent. It has been successfully applied to transfection at various scales over a broad range of cell lines. Compared

More information

TransIT -LT1 Transfection Reagent

TransIT -LT1 Transfection Reagent Quick Reference Protocol, MSDS and Certificate of Analysis available at mirusbio.com/2300 INTRODUCTION TransIT -LT1 Transfection Reagent is a broad spectrum reagent that provides high efficiency plasmid

More information

BD Resurge Media Supplements Chemically Defined. Protein Free. Animal Free.

BD Resurge Media Supplements Chemically Defined. Protein Free. Animal Free. D Resurge Media Supplements Chemically Defined. Protein Free. nimal Free. Overview Cell-based production of active pharmaceutical ingredients generally requires supplementation of cell culture media to

More information

VDL602.2 RAPID ASSAY FOR DETERMINING ADENOVIRAL VECTOR TITER

VDL602.2 RAPID ASSAY FOR DETERMINING ADENOVIRAL VECTOR TITER 1. Purpose 1.1. The purpose of this protocol is to determine the number of infectious adenoviral particles. 1.2. The starting material is purified adenoviral vectors. 1.3. This protocol is based upon the

More information

AAV Purification Maxi Slurry Kit Product # 63250

AAV Purification Maxi Slurry Kit Product # 63250 3430 Schmon Parkway Thorold, ON, Canada L2V 4Y6 Phone: 866-667-4362 (905) 227-8848 Fax: (905) 227-1061 Email: techsupport@norgenbiotek.com AAV Purification Maxi Slurry Kit Product # 63250 Product Insert

More information

PromoFectin-siRNA. Instruction Manual

PromoFectin-siRNA. Instruction Manual PromoFectin-siRNA 2 3 Contents Contents 3 Product Description 3 Materials and Methods 3 Troubleshooting 9 Shipping & Storage 9 Quality Control 9 Ordering Information 10 Contents 0.5 ml (PK-CT-2000-RNA-050),

More information

Mouse Embryonic Stem Cell Differentiation to Hematopoietic Precursors Hogune Im

Mouse Embryonic Stem Cell Differentiation to Hematopoietic Precursors Hogune Im Mouse Embryonic Stem Cell Differentiation to Hematopoietic Precursors Hogune Im Molecular and Cellular Pharmacology Program, Department of Pharmacology, University of Wisconsin Medical School, Madison,

More information

The Development of a Bio-inspired, Chemically Defined Media Supplement for Cell Culture

The Development of a Bio-inspired, Chemically Defined Media Supplement for Cell Culture The Development of a Bio-inspired, Chemically Defined Media Supplement for Cell Culture Justin Oliver*, Kirti Chaturvedi*, Damon Barbacci, Cindy Hunt, and Elizabeth Dodson BD Biosciences Advanced Bioprocessing,

More information

OPPF-UK Standard Protocols: Mammalian Expression

OPPF-UK Standard Protocols: Mammalian Expression OPPF-UK Standard Protocols: Mammalian Expression Joanne Nettleship joanne@strubi.ox.ac.uk Table of Contents 1. Materials... 3 2. Cell Maintenance... 4 3. 24-Well Transient Expression Screen... 5 4. DNA

More information

Rapid selection of high yielding GS-CHO cell lines using the GS expression system in a protein-free, chemically defined, animal component-free process

Rapid selection of high yielding GS-CHO cell lines using the GS expression system in a protein-free, chemically defined, animal component-free process Rapid selection of high yielding GS-CHO cell lines using the GS expression system in a protein-free, chemically defined, animal component-free process David Mainwaring, Lonza Biologics. Introduction Chemically

More information

SCIENTIFIC. Process for Success. CHO ONE Media System. Expression Media for Fed-Batch Culture

SCIENTIFIC. Process for Success. CHO ONE Media System. Expression Media for Fed-Batch Culture CAPRICORN SCIENTIFIC Process for Success CHO ONE Media System Expression Media for Fed-Batch Culture Culture for Life www.capricorn-scientific.com 2 Capricorn Scientific as a young established cell culture

More information

Protocols for Neural Progenitor Cell Expansion and Dopaminergic Neuron Differentiation

Protocols for Neural Progenitor Cell Expansion and Dopaminergic Neuron Differentiation Protocols for Neural Progenitor Cell Expansion and Dopaminergic Neuron Differentiation In vitro neurological research presents many challenges due to the difficulty in establishing high-yield neuronal

More information

human Dopamine D 2L Receptor, Frozen Cells

human Dopamine D 2L Receptor, Frozen Cells TECHNICAL DATA SHEET AequoZen Caution: For Laboratory Use. A research reagent for research purposes only. You are authorized to utilize these frozen cell preparations one time only. Any attempt to transfer,

More information

Store at 2-8 C. Do not freeze. Store at 2-8 C. Do not freeze. Store at 2-8 C. Do not freeze.

Store at 2-8 C. Do not freeze. Store at 2-8 C. Do not freeze. Store at 2-8 C. Do not freeze. Catalog #1086 Complete Kit for Human Whole Blood CD3+ Cells For labeling 120 ml of whole blood Description Isolate highly purified CD3 cells from human whole blood using a simple, two-step procedure. Fast

More information

In vitro Human Umbilical Vein Endothelial Cells (HUVEC) Tube-formation Assay. Josephine MY Ko and Maria Li Lung *

In vitro Human Umbilical Vein Endothelial Cells (HUVEC) Tube-formation Assay. Josephine MY Ko and Maria Li Lung * In vitro Human Umbilical Vein Endothelial Cells (HUVEC) Tube-formation Assay Josephine MY Ko and Maria Li Lung * Clinical Oncology Department, The Univerisity of Hong Kong, Hong Kong, Hong Kong SAR *For

More information

ClonePix 2. Screen and select more clones in less time. Genetix Now part of Molecular Devices.

ClonePix 2. Screen and select more clones in less time. Genetix Now part of Molecular Devices. ClonePix 2 Screen and select more clones in less time www.moleculardevices.com/genetix Genetix Now part of Molecular Devices Screen more clones in less time Cut cell line and antibody development times

More information

TransIT -293 Transfection Reagent

TransIT -293 Transfection Reagent TransIT -293 Transfection Reagent Quick Reference Protocol, MSDS and Certificate of Analysis available at mirusbio.com/2700 INTRODUCTION TransIT -293 Transfection Reagent is specifically optimized to provide

More information

Plasmid Miniprep Kit

Plasmid Miniprep Kit Plasmid Miniprep Kit Catalog No. Specification Storage/Shelf life EP001-50T 50T Room temperature/1 year EP001-200T 200T Room temperature/1 year Introduction In this kit, the plasmid DNA was purified rapidly

More information

EPIGENTEK. EpiQuik Tissue Chromatin Immunoprecipitation Kit. Base Catalog # P-2003 PLEASE READ THIS ENTIRE USER GUIDE BEFORE USE

EPIGENTEK. EpiQuik Tissue Chromatin Immunoprecipitation Kit. Base Catalog # P-2003 PLEASE READ THIS ENTIRE USER GUIDE BEFORE USE EpiQuik Tissue Chromatin Immunoprecipitation Kit Base Catalog # P-2003 PLEASE READ THIS ENTIRE USER GUIDE BEFORE USE The EpiQuik Tissue Chromatin Immunoprecipitation Kit is suitable for combining the specificity

More information

EPIGENTEK. EpiQuik Chromatin Immunoprecipitation Kit. Base Catalog # P-2002 PLEASE READ THIS ENTIRE USER GUIDE BEFORE USE

EPIGENTEK. EpiQuik Chromatin Immunoprecipitation Kit. Base Catalog # P-2002 PLEASE READ THIS ENTIRE USER GUIDE BEFORE USE EpiQuik Chromatin Immunoprecipitation Kit Base Catalog # P-2002 PLEASE READ THIS ENTIRE USER GUIDE BEFORE USE The EpiQuik Chromatin Immunoprecipitation Kit is suitable for combining the specificity of

More information