Self-Assembled DNA Nanocentipede as Multivalent Vehicle for

Size: px
Start display at page:

Download "Self-Assembled DNA Nanocentipede as Multivalent Vehicle for"

Transcription

1 Electronic Supplementary Material (ESI) for Chemical Communications. This journal is The Royal Society of Chemistry 2017 Electronic Supporting Information (ESI) Self-Assembled DNA Nanocentipede as Multivalent Vehicle for Enhanced Delivery of CpG Oligonucleotides Wenshan Li, Lei Luo, Jin Huang, Qing Wang, Jianbo Liu, Xiao Xiao, Hongmei Fang, Xiaohai Yang* and Kemin Wang* State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, Key Laboratory for Bio-Nanotechnology and Molecular Engineering of Hunan Province, Hunan University, Changsha , China Contents of ESI: Experimental Section S1 Chemicals and Materials S2 Cell Lines and Buffers S3 Preparation of CpG-Nces S4 Agarose Gel Electrophoresis S5 Cytotoxicity Assay S6 Confocal Fluorescence Microscopy Imaging S7 Three-Dimensional Reconstruction S8 Uptake of CpG-Nces in RAW264.7 Cells S9 Stability of CpG-Nces S10 Cytokine Secretion from RAW264.7 cells S11 Immunotherapeutic Effect S12 Statistical Analysis Table and Figures Table S1 Sequences of DNA probes. Fig. S1 Agarose gel electrophoresis showing the formation of CpG-Nces. Fig. S2 Effects of CpG-Nces on proliferation of RAW64.7 cells. Fig. S3 Characterization of the time-dependent internalization of CpG-Nces in RAW264.7 cells. S-1

2 Fig. S4 Internalized CpG(200)-Nces in RAW264.7 Cells at different Z positions revealed by confocal microscopy. Fig. S5 Characterization of the temperature-dependent internalization of CpG(200)-Nces in RAW264.7 cells. Fig. S6 Colocalization studies of the internalization of CpG(200)-Nces and free CpG ODNs in RAW264.7 cells. Fig. S7 Effects of the valence number of CpG-Nces on cellular uptake revealed by flow cytometry. Fig. S8 Colocalization studies of the stability of CpG-Nces within cells. Fig. S9 Serum stability of CpG(200)-Nces compared with free CpG ODNs. Fig. S10 Effect of different CpG(200)-Nces concentrations on immunostimulation. Fig. S11 Effect of incubate time on immunostimulation. Fig. S12 Characterization of the long-lasting immunostimulatory activities of CpG(200)-Nces. Fig. S13 The therapeutic effect of CpG-Nces on cancer cells revealed by flow cytometry. Fig. S14 The therapeutic effect of CpG(200)-Nces on cancer cells revealed by confocal microscopy. Fig. S15 Effect of co-culture time on immunotherapy at 37 o C. Fig. S16 Characterization of time-dependent immunotherapeutic effect of CpG(200)-Nces. S-2

3 Experimental Section S1 Chemicals and Materials All DNA oligonucleotides were synthesized and HPLC purified by Sangon Biotech. Co. Ltd. (Shanghai, China), and dissolved in phosphate buffered saline (PBS) solution (10 mm phosphate buffer, 137 mm NaCl, 2.7 mm KCl, ph 7.4). The sequences of the oligonucleotides are listed in Table 1. Streptavidin and 3-(4, 5-Dimethylthiazol-2-y1)-2, 5-diphenyltetrazolium bromide (MTT) were purchased from Sigma-Aldrich (USA). Hoechst (Hoechst) and SYBR Gold were purchased from Invitrogen (USA). Bovine serum albumin (BSA) and yeast trna were purchased from Dingguo Changsheng Biotechnology Co., Ltd. (Beijing, China). All other reagents were the highest grade available. All solutions were prepared and diluted using ultrapure water ( 18.2 MΩ cm) from the Millipore Milli-Q system (Barnstead/Thermolyne NANO-pure, Dubuque, IA). Washing buffer contained glucose (4.5 g/l) and MgCl2 (5 mm) in PBS solution. Binding buffer was prepared by adding yeast trna (0.1 mg/ml) and BSA (1 mg/ml) to the washing buffer to reduce background binding. S2 Cell Lines and Buffers Murine macrophage (RAW264.7) cells and T lymphoblast leukemia (CCRF-CEM) cells were purchased from the Shanghai Institute of Cell Biology of the Chinese Academy of Science. RAW264.7 cells were cultured in high glucose Dulbecco s modified Eagle s medium (DMEM, Sigma-Aldrich) supplemented with 10% fetal bovine serum (FBS; heat-inactivated) and 1.5 g/l NaHCO3. CCRF-CEM cells were cultured in RPMI medium 1640 supplemented with 10% fetal bovine serum (FBS; heat-inactivated), 100 units/ml penicillin and 100 µg/ml streptomycin. Both cultures were incubated at 37 C under a 5% CO2 atmosphere. S3 Preparation of CpG-Nces H1 and H2 were dissolved in PBS to a common final concentration of 100 µm, heated to 96 C for 3 min, immediately cooled on ice for 3 min, and then left at room temperature for 2 h before use. Trigger (250 nm) were incubated with H1 (25 μm) and H2 (25 μm) at 25 o C for 24 h, then dilute with PBS, followed by incubating with streptavidin and biotinylated CpG ODNs at 25 o C for 2 h. S4 Agarose gel electrophoresis A 2% agarose gel was prepared using a 1 TAE buffer (40 mm Tris AcOH, 2.0 mm Na2EDTA, ph 8.5). The SYBR Gold was used as oligonucleotide dye. The gel was run at 100 V for 60 min in 1 TAE buffer at room temperature, and then photographed in Gel Imaging (Tanon 2500 R, Tianneng Ltd., Shanghai, China). S5 Cytotoxicity Assay In vitro cytotoxicity was determined using MTT assay. Briefly, cells were seeded at cells per well into 96-well plates for 24 h. Then, cells were treated with S-3

4 CpG-Nces or Lib-Nces in medium (without FBS, unless denoted otherwise; 37 C; 5% CO2) for 24 h. After removing cell medium, 20 μl of MTT solution (5 mg/ml) diluted in fresh medium (100 μl) was added to each well and incubated for 4 h. The precipitated formazan violet crystals were dissolved in 150 μl of DMSO. The absorbance value at 570 nm was recorded using a multi-function plate reader Benchmarks Plus (BIO-RAD, USA). Each concentration was tested at least three times. S6 Confocal Fluorescence Microscopy Imaging All cellular fluorescent images were collected on a FV 500-IX70 confocal microscope (Olympus America Inc., Melville, NY) with a 100 oil immersion objective (Olympus, Melville, NY). Excitation wavelength and emission filters: Hoechst or LysoTracker Blue channel: EX 405 nm, emission bandpass ( nm) filter. FITC: EX 488 nm, emission bandpass ( nm) filter. TAMRA EX 543 nm, emission bandpass (565 nm long-pass) filter. RAW264.7 cells were plated in a 35 mm confocal dish and grown to around 80% confluency before the experiment. Cells were incubated with samples at 37 C for various time points. After the medium was removed, the cells were washed twice with washing buffer, followed by Hoechst or LysoTracker Blue staining, and visualized under a confocal laser scanning microscope. S7 Three-Dimensional Reconstruction All cellular fluorescent images were collected on a FV 500-IX70 confocal microscope (Olympus America Inc., Melville, NY) with a 100 oil immersion objective (Olympus, Melville, NY). Excitation wavelength and emission filters: TAMRA EX 543 nm, emission bandpass (565 nm long-pass) filter. RAW264.7 cells were plated in a 35 mm confocal dish and grown to around 80% confluency before the experiment. Cells were incubated with CpG(200)-Nces (100 nm TAMRA-labeled CpG equivalents) at 37 C for 4 h. After the medium was removed, the cells were washed twice with washing buffer. 3D reconstitution of Z-axis scanning was performed using the ImageJ software (NIH, Bethesda, MD, USA). S8 Uptake of CpG-Nces in RAW264.7 Cells FITC-labeled H1 and H2 were used for the preparation of fluorescently labeled DNA nanostructures. RAW264.7 cells were seeded on 24-well culture plates at a density of cells/ml (1 ml) and cultured for 24 h and then washed twice with PBS. They were incubated with fluorescently labeled DNA structures for 4 h at 37 o C, harvested, and washed three times with PBS. Then, the fluorescence intensity of the cells was determined by flow cytometry (Beckman Coulter, USA). S9 Stability of CpG-Nces For stability investigation, CpG(200)-Nces and CpG ODNs were incubated with 50% human serum diluted in PBS at 37 o C for difference times. The reaction was then stopped with a final concentration of 20 mm EDTA. Finally, the samples were then loaded on a 2% agarose gel and subjected to electrophoresis as described above. S-4

5 S10 Cytokine Secretion from RAW264.7 cells RAW264.7 cells were seeded on 24-well culture plates at a density of cells/ml per well (1 ml) in fresh medium and incubated for 24 h. Cells were then washed twice with 1 ml PBS before treatment with the indicated conditions and incubated at 37 o C for the indicated time. The media were collected afterwards and centrifuged at 12,000 rpm for 20 min at 4 C (Microfuge 18, Beckman Coulter, USA). The levels of TNF-α and IL-6 were measured using ELISA kits (VAL609, VAL604, R&D Systems) following protocols recommended by the manufacturer. S11 Immunotherapeutic Effect RAW264.7 cells were seeded on 24-well culture plates at a density of cells/ml per well (1 ml) in fresh medium and incubated for 24 h. After washing twice with PBS, CEM cells at a density of cells per well mixed with the indicated therapeutics in fresh DMEM medium were incubated with the RAW264.7 cells for the indicated time. The cells in supernatant medium were collected and washed twice with PBS. Cell apoptosis was evaluated using FITC Annexin V Apoptosis Kit I (No , BD Pharmingen) by following the procedure recommended by the manufacturer and using flow cytometer (Beckman Coulter, USA). FITC and PI were exited at 488 nm; FITC was detected at FL1 (533/30 nm) while PI was detected at FL3 (>670 nm). S12 Statistical Analysis All data were presented as mean ± standard deviation and were evaluated by Student s t-test. A p value of less than 0.05 was considered to be statistically significant. S-5

6 Table and Figures Table S1. Sequences of DNA probes. Probes Sequences (5-3 ) H1 FITC-labeled H1 H2 FITC-labeled H2 Trigger CpG ODN TAMRA-labeled CpG ODN Lib TAMRA-labeled Lib Biotin-CGT CGT GCA GCA GCA GCA GCA GCA ACG GCT TGC TGC TGC TGC TGC TGC Biotin-CGT CGT GCA GCA GCA GCA GCA GCA ACG GCT TGC TGC TGC TGC TGC TGC-FITC Biotin-TGC TGC TGC TGC TGC TGC ACG ACG GCA GCA GCA GCA GCA GCA AGC CGT Biotin-TGC TGC TGC TGC TGC TGC ACG ACG GCA GCA GCA GCA GCA GCA AGC CGT-FITC TGC TGC TGC TGC TGC TGC ACG ACG TCC ATG ACG TTC CTG ACG TT (T) 10 -Biotin TAMRA- TCC ATG ACG TTC CTG ACG TT (T) 10 -Biotin (N) 20 (T) 10 -Biotin TAMRA-(N) 20 (T) 10 -Biotin a TAMRA, if applicable, was labeled at the 5 -ends of CpG and Lib, FITC, if applicable, was labeled at the 3 -ends of H1 and H2. The underlined of DNA probes represent the stem complementary sequence of the hairpins. S-6

7 Figures 5000 bp 1000 bp Fig. S1 Agarose gel electrophoresis showing the formation of CpG-Nces. From left to right lanes: (1) 50 μm H1; (2) 50 μm H2; (3) 25 μm H μm H2; (4) 25 μm H μm H nm Trigger; (5) 25 μm H μm H nm Trigger + 2 μm streptavidin (SA) + 2 μm biotinylated CpG ODNs, (6) DNA Markers. The samples were diluted 25-fold with PBS, followed by 2% agarose gel electrophoresis and visualized with SYBR Gold staining. S-7

8 CpG-Nces Lib-Nces Cell Viability Medium Fig. S2 Effects of CpG-Nces on proliferation of RAW64.7 cells. CpG-Nces (100 nm CpG ODN equivalents) and control Lib-Nces (100 nm Lib equivalents) were incubated with RAW264.7 cells at 37 o C for 24 h, respectively. The valence number of nanocentipede means the number of CpG ODN or Lib per nanocentipede. The results showed that the multivalent CpG-Nces (i.e. CpG(5)-Nces, CpG(10)-Nces, CpG(50)-Nces, CpG(100)-Nces, CpG(200)-Nces) could induce significant enhancement of cell proliferation. In contrast, monovalent CpG-Nces (i.e. CpG(1)-Nces) and Lib-Nces did not induce significant change of cell proliferation. The error bars indicated the standard deviations of three experiments. *p < 0.05; **p < significantly different from medium group. S-8

9 360 min 240 min 120 min 60 min 30 min 15 min Hoechst Brightfield TAMRA Merged Fig. S3 Characterization of the time-dependent internalization of CpG-Nces in RAW264.7 cells. RAW264.7 cells were incubated with CpG(200)-Nces (100 nm TAMRA-labeled CpG ODN equivalents) at 37 o C for different times. Confocal microscopy images showed that the fluorescence intensity of cells was gradually enhanced with the increase of time. Scale bar: 20 μm. S-9

10 A B C Fig. S4 Internalized CpG(200)-Nces in RAW264.7 Cells at different Z positions revealed by confocal microscopy. (A) As the Z-axis moves from bottom to top, the fluorescence of TAMRA was observed in RAW264.7 cell. (B) Three-dimensional reconstruction of the confocal Z-axis imaging of RAW263.7 cell without bright field. (C) Interactive 3D surface plot analysis of RAW263.7 cell with bright field. The results showed the distribution of TAMRA fluorescence within the cytoplasm rather than adsorbed on the membrane of RAW cell. S-10

11 37 o C 20 o C 4 o C Hoechst Brightfield TAMRA Merged Fig. S5 Characterization of the temperature-dependent internalization of CpG(200)-Nces in RAW264.7 cells. RAW264.7 cells were incubated with CpG(200)-Nces (100 nm TAMRA-labeled CpG ODN equivalents) at different temperature for 4 h. Confocal microscopy images showed that the fluorescence intensity of cells was gradually enhanced with the increase of temperature. Scale bar: 20 μm. S-11

12 A 1 h LysoTracker Blue Brightfield TAMRA LysoTracker Blue TAMRA Brightfield LysoTracker Blue TAMRA 8 h 4 h 2 h B LysoTracker Blue Brightfield TAMRA LysoTracker Blue TAMRA Brightfield LysoTracker Blue TAMRA 8 h 4 h 2 h 1 h Fig. S6 Colocalization studies of the internalization of CpG(200)-Nces (A) and free CpG ODNs (B) in RAW264.7 cells. Scale bar: 20 μm. RAW264.7 cells were incubated with CpG(200)-Nces (100 nm TAMRA-labeled CpG ODN equivalents) or free CpG ODNs (100 nm TAMRA-labeled CpG ODN) at 37 C for 1, 2, 4, and 8 h, respectively. When RAW264.7 cells were treated with CpG(200)-Nces for more than 4 h, most of the red fluorescence from CpG(200)-Nces overlapped with the blue fluorescence from LysoTracker Blue (stain acidic compartments in live cells), which indicated that CpG(200)-Nces were localized to late endosome/lysosomes. In contrast, free CpG ODNs were not efficiently uptaken by RAW264.7 cells. S-12

13 Fig. S7 Effects of the valence number of CpG-Nces on cellular uptake revealed by flow cytometry. At a given concentration of FITC-labeled H1/H2 (20 nm each) and Trigger (0.2 nm), RAW264.7 cells were incubated with different CpG-Nces or DNA scaffolds at 37 o C for 4 h, respectively. There was no measurable difference in the cellular uptake. S-13

14 A 0 h 2 h 4 h 8 h 12 h 24 h B Fig. S8 Serum stability of (A) CpG(200)-Nces compared with (B) free CpG ODNs. The samples were incubated with 50% human serum at 37 o C for different times. The reaction mixtures were visualized with SYBR Gold staining and analysed using 2% agarose gel electrophoresis. S-14

15 2 h 4 h 6 h 8 h Hoechst FITC TAMRA Brightfield Merged Fig. S9 Colocalization studies of the stability of CpG-Nces within cells. RAW264.7 cells were incubated with dual-labeled CpG(200)-Nces at 37 o C for different times. The FITC-labeled H1/H2 (50 nm, each) and TAMRA-labeled CpG ODNs (100 nm) to provide fluorescent tracing (FITC-green and TAMRA-red). Confocal microscopy images showed that the two fluorescent colors were present nearly in the same place even after 8 h. Scale bar: 20 μm S-15

16 A CpG(200)-Nces Lib(200)-Nces TNF- (pg/ml) nm 40 nm 80 nm 100 nm 450 CpG(200)-Nces Lib(200)-Nces IL-6 (pg/ml) nm 40 nm 80 nm 100 nm Fig. S10 Effect of different CpG(200)-Nces concentrations on immunostimulation. RAW cells were incubated with different concentrations of CpG(200)-Nces (20, 40, 80, 100 nm CpG equivalents) and Lib(200)-Nces (20, 40, 80, 100 nm Lib equivalents) at 37 C for 24 h, then the secretion levels of TNF-α (A) and IL-6 (B) were determined. The error bars indicated the standard deviations of three experiments. **p < significantly different from Lib(200)-Nces. S-16

17 A CpG(200)-Nces Lib(200)-Nces TNF- (pg/ml) h 8 h 12 h 24 h CpG(200)-Nces Lib(200)-Nces IL-6 (pg/ml) h 16 h 20 h 24 h Fig. S11 Effect of incubate time on immunostimulation. CpG(200)-Nces (100 nm CpG equivalents) and Lib(200)-Nces (100 nm Lib equivalents) were incubated with RAW cells at 37 C for different time, then the secretion levels of TNF-α (A) and IL-6 (B) were determined. The error bars indicated the standard deviations of three experiments. **p < significantly different from Lib(200)-Nces. S-17

18 TNF- (pg/ml) Medium Lib(200)-Nces Free CpG ODNs CpG(200)-Nces 0 24 h 48 h 72 h Fig. S12 Characterization of the time-dependent immunostimulatory activities of CpG(200)-Nces. RAW264.7 cells were incubated with CpG(200)-Nces at 37 o C for 4 h. Cells were then washed twice with 1 ml PBS and fresh cell culture medium was added. After 24 h incubation, the media were collected. This process was repeated every 24 h over the course of 72 h. All the supernatants were collected and stored at -80 C before assays. These results suggested that the secretion levels of TNF-α from RAW264.7 cells stimulated by CpG(200)-Nces were higher than that stimulated by free CpG ODNs at 72 h. S-18

19 0.89% 0.68% 3.49% 2.17% 2.32% 3.41% 1.76% 4.69% 96.44% 1.99% 91.79% 2.55% 86.13% 8.14% 84.13% 9.42% PI Fluorescence Intensity (FL3) CEM cells only CEM cells + RAW264.7 cells CEM cells + RAW264.7 cells + Lib(200)-Nces 3.97% 5.21% 81.17% 9.65% CEM cells + RAW264.7 cells + CpG(1)-Nces 2.67% 16.63% 3.58% 8.52% 70.87% 17.03% CEM cells + RAW264.7 cells + CpG(5)-Nces 3.07% 20.56% 2.90% 8.55% 68.17% 20.38% CEM cells + RAW264.7 cells + CpG(10)-Nces CEM cells + RAW264.7 cells + Free CpGODNs 2.63% 14.21% 51.01% 32.15% CEM cells + RAW264.7 cells + CpG(50)-Nces 43.00% 37.70% 36.05% 40.32% CEM cells + RAW264.7 cells + CpG(100)-Nces CEM cells + RAW264.7 cells + CpG(200)-Nces FITC Fluorescence Intensity (FL1) Fig. S13 The therapeutic effect of CpG-Nces on cancer cells revealed by flow cytometry. CCRF-CEM (CEM) cells cocultured with RAW264.7 cells and different CpG-Nces at 37 o C for 24 h, respectively, then stained with annexin V-FITC and propidium iodide (PI) followed by flow cytometry analysis. S-19

20 CpG(200)-Nces Lib(200)-Nces CpG ODNs FITC Brightfield PI Merged Fig. S14 The therapeutic effect of CpG(200)-Nces on cancer cells revealed by confocal microscopy. CEM cells cocultured with RAW264.7 cells and CpG(200)-Nces at 37 o C for 24 h, then stained with annexin V-FITC and propidium iodide (PI), followed by confocal microscopy analysis. Scale bar: 20 µm S-20

21 1.93% 8 h 16 h 24 h 1.39% 1.65% 1.26% 1.41% 0.98% A 91.50% 5.18% 91.56% 5.53% 93.83% 3.78% 1.45% 2.16% 1.11% 3.37% 1.05% 5.61% PI Fluorescence Intensity (FL3) 90.83% 5.56% 1.38% 2.71% 89.41% 6.50% 89.52% 6.00% 1.25% 5.80% 83.18% 9.77% 81.83% 11.51% 1.62% 7.22% 81.18% 9.98% B C 1.38% 5.82% 1.13% 8.45% 1.17% 10.49% D 82.48% 10.32% 77.08% 13.34% 73.75% 14.59% 1.16% 11.86% 0.80% 21.52% 0.80% 35.98% E 74.58% 12.40% 59.18% 18.50% 35.26% 27.96% FITC Fluorescence Intensity (FL1) Fig. S15 Effect of co-culture time on immunotherapy at 37 o C. (A) CEM cells only; (B) CEM cells co-culture with RAW264.7 cells and Lib(200)-Nces; (C) CEM cells co-culture with RAW264.7 cells and free CpG ODNs; (D) CEM cells co-culture with RAW264.7 cells and CpG(1)-Nces; (E) CEM cells co-culture with RAW264.7 cells and CpG(200)-Nces for different times, then stained with annexin V-FITC and propidium iodide (PI), followed by flow cytometry analysis. S-21

22 Percentage of Living CEM (%) CEM cells only Free CpG ODNs CpG(200)-Nces Lib(200)-Nces CpG(1)-Nces 25 8 h 16 h 24 h Time Fig. S16 Characterization of time-dependent immunotherapeutic effect of CpG(200)-Nces. CCRF-CEM (CEM) cells co-cultured with RAW264.7 cells and CpG(200)-Nces at 37 o C for different times, then stained with annexin V-FITC and propidium iodide, followed by flow cytometry analysis. The error bars indicated the standard deviations of three experiments. S-22

A Cell-Surface-Anchored Ratiometric I-Motif Sensor for. Extracellular ph Detection

A Cell-Surface-Anchored Ratiometric I-Motif Sensor for. Extracellular ph Detection Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 216 Electronic Supplementary Information (ESI) A Cell-Surface-Anchored Ratiometric I-Motif Sensor for

More information

A Supersandwich Fluorescence in Situ Hybridization (SFISH) Strategy. for Highly Sensitive and Selective mrna Imaging in Tumor Cells

A Supersandwich Fluorescence in Situ Hybridization (SFISH) Strategy. for Highly Sensitive and Selective mrna Imaging in Tumor Cells Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2015 Electronic Supplementary Information (ESI) A Supersandwich Fluorescence in Situ Hybridization (SFISH)

More information

Electronic Supplementary Information

Electronic Supplementary Information Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2014 Electronic Supplementary Information Multiplexed Detection of Lung Cancer Cells at the Single-Molecule

More information

Supporting Information

Supporting Information Electronic Supplementary Material (ESI) for Materials Chemistry Frontiers. This journal is the Partner Organisations 2017 Supporting Information Supramolecular Conjugated Polymer Materials for Organelle

More information

catalytic hairpin DNA assembly for dual-signal amplification toward homogenous analysis of protein and

catalytic hairpin DNA assembly for dual-signal amplification toward homogenous analysis of protein and Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2015 Supporting Information Programmable Mg 2+ -dependent DNAzyme switch by the catalytic hairpin DNA

More information

Electronic Supplementary Information (ESI)

Electronic Supplementary Information (ESI) Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2018 Electronic Supplementary Information (ESI) Ultra-pH-responsive split i-motif based aptamer anchoring

More information

Supplementary Information. Binding-responsive catalysis of Taq DNA polymerase for sensitive. and selective detection of cell-surface proteins

Supplementary Information. Binding-responsive catalysis of Taq DNA polymerase for sensitive. and selective detection of cell-surface proteins Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2016 Supplementary Information Binding-responsive catalysis of Taq DNA polymerase for sensitive and

More information

Supplementary information for. An Ultrasensitive Biosensor for DNA Detection Based on. Hybridization Chain Reaction Coupled with the Efficient

Supplementary information for. An Ultrasensitive Biosensor for DNA Detection Based on. Hybridization Chain Reaction Coupled with the Efficient Supplementary information for An Ultrasensitive Biosensor for DNA Detection Based on Hybridization Chain Reaction Coupled with the Efficient Quenching of Ruthenium Complex to CdTe Quantum Dot Yufei Liu,

More information

Qi Peng, Fujie Chen, Zhenlin Zhong,* Renxi Zhuo

Qi Peng, Fujie Chen, Zhenlin Zhong,* Renxi Zhuo Electronic Supplementary Information Enhanced Gene Transfection Capability of Polyethylenimine by Incorporating Boronic Acid Groups Qi Peng, Fujie Chen, Zhenlin Zhong,* Renxi Zhuo Key Laboratory of Biomedical

More information

Supplementary Information Temperature-responsive Gene Silencing by a Smart Polymer

Supplementary Information Temperature-responsive Gene Silencing by a Smart Polymer Supplementary Information Temperature-responsive Gene Silencing by a Smart Polymer Mingming Wang, Yiyun Cheng * Shanghai Key Laboratory of Regulatory Biology, School of Life Sciences, East China Normal

More information

DNA Tetrahedron-Based Molecular Beacon for Tumor-Related

DNA Tetrahedron-Based Molecular Beacon for Tumor-Related Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2015 Electronic Supporting Information (ESI) DNA Tetrahedron-Based Molecular Beacon for Tumor-Related

More information

Supporting Information

Supporting Information Supporting Information One-step, Multiplexed Fluorescence Detection of micrornas Based on Duplex-Specific Nuclease Signal Amplification Bin-Cheng Yin, Yu-Qiang Liu, and Bang-Ce Ye* Lab of Biosystems and

More information

Electronic Supplementary Material (ESI) for Journal of Materials Chemistry This journal is The Royal Society of Chemistry 2011.

Electronic Supplementary Material (ESI) for Journal of Materials Chemistry This journal is The Royal Society of Chemistry 2011. Experimental: MTT assay: To determine cell viability the colorimetric MTT metabolic activity assay was used. Hela cells (1 10 4 cells/well) were cultured in a 96-well plate at 37 C, and exposed to varying

More information

Electronic Supporting information (ESI)

Electronic Supporting information (ESI) Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2014 Electronic Supporting information (ESI) Hairpin DNA Probes Based on Target-induced in situ Generation

More information

Electronic Supplementary Information (ESI)

Electronic Supplementary Information (ESI) Electronic Supplementary Material (ESI) for RSC Advances. This journal is The Royal Society of Chemistry 2015 Electronic Supplementary Information (ESI) A label free fluorescent assay for uracil-dna glycosylase

More information

Apoptosis And Anti-tumor Effect Induced By Mtor Inhibitor And Autophagy Inhibitor In Human Osteosarcoma Cells

Apoptosis And Anti-tumor Effect Induced By Mtor Inhibitor And Autophagy Inhibitor In Human Osteosarcoma Cells Apoptosis And Anti-tumor Effect Induced By Mtor Inhibitor And Autophagy Inhibitor In Human Osteosarcoma Cells Ryosuke Horie. Kagawa University of medecine, Kita-gun, Japan. Disclosures: R. Horie: None.

More information

Graphene oxide-enhanced cytoskeleton imaging and mitosis tracking

Graphene oxide-enhanced cytoskeleton imaging and mitosis tracking Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2017 Supplementary information for Graphene oxide-enhanced cytoskeleton imaging and mitosis tracking

More information

A protein-polymer hybrid gene carrier based on thermophilic histone. and polyethylenimine

A protein-polymer hybrid gene carrier based on thermophilic histone. and polyethylenimine Electronic Supplementary Material (ESI) for New Journal of Chemistry. This journal is The Royal Society of Chemistry and the Centre National de la Recherche Scientifique 2015 A protein-polymer hybrid gene

More information

Electronic Supplementary Information. Enzyme-free catalytic DNA circuit for amplified detection of aflatoxin B1 using

Electronic Supplementary Information. Enzyme-free catalytic DNA circuit for amplified detection of aflatoxin B1 using Electronic Supplementary Material (ESI) for Nanoscale. This journal is The Royal Society of Chemistry 2016 Electronic Supplementary Information Enzyme-free catalytic DNA circuit for amplified detection

More information

Supporting Information

Supporting Information Supporting Information Table S1. Oligonucleotide sequences used in this work Oligo DNA A B C D CpG-A CpG-B CpG-C CpG-D Sequence 5 ACA TTC CTA AGT CTG AAA CAT TAC AGC TTG CTA CAC GAG AAG AGC CGC CAT AGT

More information

Low Background D-A-D Type Fluorescent Probe for Imaging of Biothiols

Low Background D-A-D Type Fluorescent Probe for Imaging of Biothiols Electronic Supplementary Material (ESI) for Journal of Materials Chemistry B. This journal is The Royal Society of Chemistry 2018 Electronic supplementary information Low Background D-A-D Type Fluorescent

More information

Three. hree-dimensional DNA Amplifier Able to Function. Living. Cells

Three. hree-dimensional DNA Amplifier Able to Function. Living. Cells Supporting Information An mrna-initiated, Three hree-dimensional DNA Amplifier Able to Function Inside Living Cells Lei He, Danqing Lu, Hao Liang, Sitao Xie, Xiaobing Zhang, Qiaoling Liu, Quan Yuan, *

More information

CHAPTER 4 IN VITRO CYTOTOXICITY ASSAY ON GOLD NANOPARTICLES WITH DIFFERENT STABILIZING AGENT

CHAPTER 4 IN VITRO CYTOTOXICITY ASSAY ON GOLD NANOPARTICLES WITH DIFFERENT STABILIZING AGENT 81 CHAPTER 4 IN VITRO CYTOTOXICITY ASSAY ON GOLD NANOPARTICLES WITH DIFFERENT STABILIZING AGENT 4.1 INTRODUCTION The nanoparticles have been shown to adhere to cell membranes (Ghitescu and Fixman 1984)

More information

Specific Detection of Cancer Cells through Aggregation- Induced Emission of a Light-Up Bioprobe

Specific Detection of Cancer Cells through Aggregation- Induced Emission of a Light-Up Bioprobe Electronic Supplementary Material (ESI) for Chemical Communications. This journal is The Royal Society of Chemistry 2017 Supporting Information Specific Detection of Cancer Cells through Aggregation- Induced

More information

Aryl-thioether substituted nitrobenzothiadiazole probe for selective detection of cysteine and homocysteine

Aryl-thioether substituted nitrobenzothiadiazole probe for selective detection of cysteine and homocysteine Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2015 Electronic Supplementary Information (ESI) for Chemical Communications This journal is The Royal

More information

Electronic Supplementary Information

Electronic Supplementary Information Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2015 Electronic Supplementary Information Amplified Binding-Induced Homogeneous Assay through Catalytic

More information

Supporting Information. A one-step sensitive dynamic light scattering method for. adenosine detection using split aptamer fragments

Supporting Information. A one-step sensitive dynamic light scattering method for. adenosine detection using split aptamer fragments Supplementary Material (ESI) for Analytical Methods This journal is (c) The Royal Society of Chemistry 2011 Supporting Information for A one-step sensitive dynamic light scattering method for adenosine

More information

Supporting Information

Supporting Information Electronic Supplementary Material (ESI) for RSC Advances. This journal is The Royal Society of Chemistry 2015 Supporting Information Materials BSA (bovine serum albumin, 99%), fluorescein isothiocyanate

More information

Supplementary Materials for. Combinatory screening of DNA aptamers for molecular imaging of HER2 in cancer

Supplementary Materials for. Combinatory screening of DNA aptamers for molecular imaging of HER2 in cancer Supplementary Materials for Combinatory screening of DNA aptamers for molecular imaging of HER2 in cancer Guizhi Zhu, Huimin Zhang,, Orit Jacobson, Zhantong Wang, Haojun Chen,, Xiangyu Yang, ǁ, Gang Niu,

More information

Randomly arrayed G-rich DNA sequence for label-free and realtime. assay of enzyme activity

Randomly arrayed G-rich DNA sequence for label-free and realtime. assay of enzyme activity Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2014 Randomly arrayed G-rich DNA sequence for label-free and realtime assay of enzyme activity Zhuoliang

More information

Electronic Supplementary Information

Electronic Supplementary Information Electronic Supplementary Material (ESI) for Chemical Communications. This journal is The Royal Society of Chemistry 2017 Electronic Supplementary Information Nitrogen-doped graphene quantum dots coupled

More information

Supporting Information. Cationic Conjugated Polymers-Induced Quorum Sensing of Bacteria Cells

Supporting Information. Cationic Conjugated Polymers-Induced Quorum Sensing of Bacteria Cells Supporting Information Cationic Conjugated Polymers-Induced Quorum Sensing of Bacteria Cells Pengbo Zhang, Huan Lu, Hui Chen, Jiangyan Zhang, Libing Liu*, Fengting Lv, and Shu Wang* Beijing National Laboratory

More information

Electronic Supplementary Information

Electronic Supplementary Information Electronic Supplementary Material (ESI) for RSC Advances. This journal is The Royal Society of Chemistry 2014 Electronic Supplementary Information dsdna-templated fluorescent copper nanoparticles: poly(at-

More information

Electronic Supplementary Information Sensitive detection of polynucleotide kinase using rolling circle amplification-induced chemiluminescence

Electronic Supplementary Information Sensitive detection of polynucleotide kinase using rolling circle amplification-induced chemiluminescence Electronic Supplementary Material (ESI) for Chemical Communications. This journal is The Royal Society of Chemistry 2014 Electronic Supplementary Information Sensitive detection of polynucleotide kinase

More information

3T3-L1 Differentiation Protocol

3T3-L1 Differentiation Protocol 3T3-L1 Differentiation Protocol Written by Eisuke Kato on 2013/10/09 MATERIALS Dulbecco's Modified Eagles Medium (D-MEM) (High Glucose) with L-Glutamine and Phenol Red High glucose (Wako Chem 044-29765,

More information

Electronic Supporting Information

Electronic Supporting Information Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2015 Electronic Supporting Information Phosphorylation-Induced Hybridization Chain Reaction on Beads:

More information

B. ADM: C. D. Apoptosis: 1.68% 2.99% 1.31% Figure.S1,Li et al. number. invaded cells. HuH7 BxPC-3 DLD-1.

B. ADM: C. D. Apoptosis: 1.68% 2.99% 1.31% Figure.S1,Li et al. number. invaded cells. HuH7 BxPC-3 DLD-1. A. - Figure.S1,Li et al. B. : - + - + - + E-cadherin CK19 α-sma vimentin β -actin C. D. Apoptosis: 1.68% 2.99% 1.31% - : - + - + - + Apoptosis: 48.33% 45.32% 44.59% E. invaded cells number 400 300 200

More information

Physicochemical Properties and Cellular Toxicity of Nanocrystal Quantum

Physicochemical Properties and Cellular Toxicity of Nanocrystal Quantum Physicochemical Properties and Cellular Toxicity of Nanocrystal Quantum Dots Depend on their Surface Modification. Akiyoshi Hoshino 1,2,3, Kouki Fujioka 1,3, Taisuke Oku 1, Masakazu Suga 1, Yu F. Sasaki

More information

Support Information. Enzyme encapsulated hollow silica nanospheres for intracellular biocatalysis

Support Information. Enzyme encapsulated hollow silica nanospheres for intracellular biocatalysis Support Information Enzyme encapsulated hollow silica nanospheres for intracellular biocatalysis Feng-Peng Chang, Yann Hung, Jen-Hsuan Chang, Chen-Han Lin, Chung-Yuan Mou* Department of Chemistry, National

More information

Aptamer-Based FRET Nanoflares for Imaging Potassium Ions. in Living Cells

Aptamer-Based FRET Nanoflares for Imaging Potassium Ions. in Living Cells Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2016 Electronic Supplementary Information (ESI) Aptamer-Based FRET Nanoflares for Imaging Potassium

More information

Oligonucleotide Loading Determines Cellular Uptake of DNA- Modified Gold Nanoparticles

Oligonucleotide Loading Determines Cellular Uptake of DNA- Modified Gold Nanoparticles Supporting Information for: Oligonucleotide Loading Determines Cellular Uptake of DNA- Modified Gold Nanoparticles David A. Giljohann, Dwight S. Seferos, Pinal C. Patel, Jill E. Millstone, Nathaniel L.

More information

Electronic Supplementary Information

Electronic Supplementary Information Electronic Supplementary Information FRET-based probing to gain direct information on sirna sustainability in live cells: Asymmetric degradation of sirna strands Seonmi Shin, a Hyun-Mi Kwon, b Kyung-Sik

More information

Obtaining More Accurate Signals: Spatiotemporal Imaging of Cancer Sites Enabled by a Photoactivatable Aptamer-Based Strategy

Obtaining More Accurate Signals: Spatiotemporal Imaging of Cancer Sites Enabled by a Photoactivatable Aptamer-Based Strategy Supporting Information Obtaining More Accurate Signals: Spatiotemporal Imaging of Cancer Sites Enabled by a Photoactivatable Aptamer-Based Strategy Heng Xiao,,, Yuqi Chen,, Erfeng Yuan,, Wei Li, Zhuoran

More information

Supporting Information. DNA Tetraplexes-Based Toehold Activation for Controllable DNA Strand Displacement Reactions

Supporting Information. DNA Tetraplexes-Based Toehold Activation for Controllable DNA Strand Displacement Reactions Supporting Information DNA Tetraplexes-Based Toehold Activation for Controllable DNA Strand Displacement Reactions Wei Tang, Huaming Wang, Dingzhong Wang, Yan Zhao, Na Li, and Feng Liu* Beijing National

More information

Cell Surface-Anchored Fluorescent Aptamer Sensor Enables. Imaging of Chemical Transmitter Dynamics

Cell Surface-Anchored Fluorescent Aptamer Sensor Enables. Imaging of Chemical Transmitter Dynamics Supporting Information for Cell Surface-Anchored Fluorescent Aptamer Sensor Enables Imaging of Chemical Transmitter Dynamics Takeshi Tokunaga, Shigeyuki Namiki, Katsuhiro Yamada, Takahiro Imaishi, Hiroshi

More information

Supporting Information

Supporting Information Supporting Information Wiley-VCH 2009 69451 Weinheim, Germany Reversible Cell-Specific Delivery of Chemotherapy Drugs Using Aptamer- Functionalized Liposomes Zehui Cao, 1 Rong Tong, 2 Abhijit Mishra, 2

More information

A Supramolecular Approach to Improve the Gene Transfection Efficacy of Dendrimers

A Supramolecular Approach to Improve the Gene Transfection Efficacy of Dendrimers Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2015 A Supramolecular Approach to Improve the Gene Transfection Efficacy of Dendrimers Naimin Shao,

More information

A self-assembled DNA nanostructure-amplified quartz crystal microbalance with dissipation biosensing platform for nucleic acids

A self-assembled DNA nanostructure-amplified quartz crystal microbalance with dissipation biosensing platform for nucleic acids Electronic Supplementary Information A self-assembled DNA nanostructure-amplified quartz crystal microbalance with dissipation biosensing platform for nucleic acids Wei Tang, Dingzhong Wang, Yi Xu, Na

More information

Standard Operating Procedure

Standard Operating Procedure Standard Operating Procedure Title Subtitle NANoREG Work package/task: Owner and co-owner(s) HTS Comet Assay with and without FPG - 20 wells Comet assay with and without FPG using Trevigen 20-well slides

More information

Programmable and Multiparameter DNA-based Logic Platform For Cancer Recognition and Targeted Therapy

Programmable and Multiparameter DNA-based Logic Platform For Cancer Recognition and Targeted Therapy Programmable and Multiparameter DNA-based Logic Platform For Cancer Recognition and Targeted Therapy Mingxu You,, Guizhi Zhu,, Tao Chen,, Michael J. Donovan and Weihong Tan, * Department of Chemistry and

More information

Developing a real-time fluorescence cell growth monitoring system

Developing a real-time fluorescence cell growth monitoring system - 65 - Developing a real-time fluorescence cell growth monitoring system Jo-Ting Wang 1, Chun-Han Lu 2, Yao-Nan Wang 2, Ko-Tung Chang 1,* 1 Department of Biological Science and Technology, National Pingtung

More information

Supporting Information. Universal Strategy To Engineer Catalytic DNA Hairpin Assemblies for Protein Analysis

Supporting Information. Universal Strategy To Engineer Catalytic DNA Hairpin Assemblies for Protein Analysis Supporting Information Universal Strategy To Engineer Catalytic DNA Hairpin Assemblies for Protein Analysis Yanan Tang, Yanwen Lin, Xiaolong Yang, Zhixin Wang, X. Chris Le, and Feng Li, * Department of

More information

Supporting Information. A Fluorogenic Resveratrol-Confined Graphene Oxide For Economic and Rapid. Detection Of Alzheimer's Disease

Supporting Information. A Fluorogenic Resveratrol-Confined Graphene Oxide For Economic and Rapid. Detection Of Alzheimer's Disease Supporting Information A Fluorogenic Resveratrol-Confined Graphene Oxide For Economic and Rapid Detection Of Alzheimer's Disease Xiao-Peng He, 1 Qiong Deng, 1 Liang Cai, 1 Chang-Zheng Wang, 1,2 Yi Zang,*,2

More information

Whole Spleen Flow Cytometry Assay Cathy S. Yam *, Adeline M. Hajjar *

Whole Spleen Flow Cytometry Assay Cathy S. Yam *, Adeline M. Hajjar * Whole Spleen Flow Cytometry Assay Cathy S. Yam *, Adeline M. Hajjar * Department of Comparative Medicine, University of Washington, Seattle, USA *For correspondence: csyam@u.washington.edu; hajjar@uw.edu

More information

Dual-targeted peptide-conjugated multifunctional fluorescent probe with. AIEgen for efficient nucleus-specific imaging and long-term tracing of

Dual-targeted peptide-conjugated multifunctional fluorescent probe with. AIEgen for efficient nucleus-specific imaging and long-term tracing of Electronic Supplementary Material (ESI) for Chemical Science. This journal is The Royal Society of Chemistry 2017 Electronic Supplementary Information Dual-targeted peptide-conjugated multifunctional fluorescent

More information

Propidium Iodide. Catalog Number: Structure: Molecular Formula: C 27H 34I 2N 4. Molecular Weight: CAS #

Propidium Iodide. Catalog Number: Structure: Molecular Formula: C 27H 34I 2N 4. Molecular Weight: CAS # Catalog Number: 195458 Propidium Iodide Structure: Molecular Formula: C 27H 34I 2N 4 Molecular Weight: 668.45 CAS # 25535-16-4 Physical Description: Dark red crystals Description: Reagent used for the

More information

Supporting Information. Glutathione-stabilized fluorescent gold nanoclusters vary in their

Supporting Information. Glutathione-stabilized fluorescent gold nanoclusters vary in their Supporting Information Glutathione-stabilized fluorescent gold nanoclusters vary in their influences on the proliferation of pseudorabies virus and porcine reproductive and respiratory syndrome virus Yanli

More information

Aldehyde Site Detection Kit

Aldehyde Site Detection Kit Aldehyde Site Detection Kit Catalog Number KA1295 96 assays Version: 04 Intended for research use only www.abnova.com Table of Contents Introduction... 3 Background... 3 Principle of the Assay... 3 General

More information

Supporting Information. Self-constructing G-quadruplex From AGG Trinucleotide Repeats

Supporting Information. Self-constructing G-quadruplex From AGG Trinucleotide Repeats Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2018 Supporting Information A Novel Nucleic Acid Aptamer Tag: A Rapid Fluorescent Strategy Using A Self-constructing

More information

Electronic Supplementary Information

Electronic Supplementary Information Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2014 Electronic Supplementary Information Direct Detection of Circulating MicroRNA in Cancer Patient

More information

Lumazine synthase protein cage nanoparticles as modular delivery platforms for targeted drug delivery

Lumazine synthase protein cage nanoparticles as modular delivery platforms for targeted drug delivery Electronic Supplementary Material (ESI) for RSC Advances. This journal is The Royal Society of Chemistry 2014 Supporting Information for Lumazine synthase protein cage nanoparticles as modular delivery

More information

Supplementary Information

Supplementary Information Electronic Supplementary Material (ESI) for ChemComm. This journal is The Royal Society of Chemistry 2015 Supplementary Information Title: Mitochondria-targeted fluorescent thermometer monitors intracellular

More information

Disassembly of gold nanoparticle dimers for colorimetric

Disassembly of gold nanoparticle dimers for colorimetric Electronic Supplementary Material (ESI) for Analytical Methods. This journal is The Royal Society of Chemistry 2015 Disassembly of gold nanoparticle dimers for colorimetric determination of ochratoxin

More information

Supporting Information

Supporting Information Electronic Supplementary Material (ESI) for Chemical Communications. This journal is The Royal Society of Chemistry 2014 Supporting Information Rolling Circle Amplification, Enzyme-catalyzed Polymerization,

More information

Electric Supplement Information

Electric Supplement Information Electric Supplement Information Preparation of DNA-AuNPs Thiol-modified oligonucleotide (5 -Cy5- ATCTCGGCTCTGCTAGCGAAAAAAAAAA-(C3H6)-SH-3, 5 15.5 OD) was added to 13 nm citrate-stabilized AuNPs (~3 nmol

More information

A Universal SERS Amplification Detector for Ultrasensitive Detection of Multiple Target Analytes

A Universal SERS Amplification Detector for Ultrasensitive Detection of Multiple Target Analytes Supplementary Information A Universal SERS Amplification Detector for Ultrasensitive Detection of Multiple Target Analytes Jing Zheng, Yaping Hu, Junhui Bai, Cheng Ma, Jishan Li, Yinhui Li, Muling Shi,

More information

Programming cell adhesion for on-chip sequential Boolean logic

Programming cell adhesion for on-chip sequential Boolean logic Supporting Information Programming cell adhesion for on-chip sequential Boolean logic functions Xiangmeng Qu,, Shaopeng Wang,, Zhilei Ge,, Jianbang Wang, Guangbao Yao, Jiang Li, Xiaolei Zuo, Jiye Shi,

More information

Supporting Information. An Aptazyme-Gold Nanoparticle Sensor for Amplified. Molecular Probing in Living Cells

Supporting Information. An Aptazyme-Gold Nanoparticle Sensor for Amplified. Molecular Probing in Living Cells Supporting Information n ptazyme-gold Nanoparticle Sensor for mplified Molecular Probing in Living Cells Yanjing Yang, Jin Huang*, Xiaohai Yang, Ke Quan, He Wang, Le Ying, Nuli Xie, Min Ou, Kemin Wang*

More information

Supporting Information Innate Reverse Transcriptase Activity of DNA Polymerase for Isothermal RNA Direct Detection

Supporting Information Innate Reverse Transcriptase Activity of DNA Polymerase for Isothermal RNA Direct Detection Supporting Information Innate Reverse Transcriptase Activity of DNA Polymerase for Isothermal RNA Direct Detection Chao Shi, Xiaotong Shen, Shuyan Niu and Cuiping Ma *, Key Laboratory of Sensor Analysis

More information

Cholesterol Uptake Cell-Based Assay Kit

Cholesterol Uptake Cell-Based Assay Kit Cholesterol Uptake Cell-Based Assay Kit Item No. 600440 www.caymanchem.com Customer Service 800.364.9897 Technical Support 888.526.5351 1180 E. Ellsworth Rd Ann Arbor, MI USA TABLE OF CONTENTS GENERAL

More information

Detection of bacterial aggregation by flow cytometry

Detection of bacterial aggregation by flow cytometry Detection of bacterial aggregation by flow cytometry Jack Coleman 1 and Melis McHenry 2 1 Enzo Life Sciences, Farmingdale NY, USA, 2 Beckman Coulter Inc., Miami FL, USA PROTEOSTAT Aggresome Detection Kit

More information

Atomic Force Microscope (AFM) analysis of GO and RGD-pyrene/GO complex

Atomic Force Microscope (AFM) analysis of GO and RGD-pyrene/GO complex Supporting information Materials and apparatus 1-Pyrenebutyric acid (PBA), N,N-Diisopropylethylamine (DIEA), Dipyrrolidino(Nsuccinimidyloxy)carbenium hexafluorophosphate (HSPyU), N,N-dimethylformamide

More information

Autophagy/Cytotoxicity Dual Staining Kit

Autophagy/Cytotoxicity Dual Staining Kit Autophagy/Cytotoxicity Dual Staining Kit Catalog Number KA1299 96 assays Version: 05 Intended for research use only www.abnova.com Table of Contents Introduction... 3 Background... 3 Principle of the Assay...

More information

Calcein AM Cell Viability Kit

Calcein AM Cell Viability Kit Instructions For Research Use Only. Not For Use In Diagnostic Procedures Calcein AM Cell Viability Kit Catalog# 4892-010-K 1000 Tests* * Calculated based on using 1 μm final concentration of Calcein AM;

More information

Electronic Supplementary Information

Electronic Supplementary Information Electronic Supplementary Information Fluorescence Turn-On Detection of a Protein through the Displaced Single-Stranded DNA Binding Protein Binding to a Molecular Beacon Dan Tang, abc Dongli Liao, ab Qiankun

More information

Reverse Microemulsion-Mediated Synthesis of Bi 2 S 3 2 -PEG for Dual Modal CT/ Fluorescence Imaging in vitro and in vivo

Reverse Microemulsion-Mediated Synthesis of Bi 2 S 3 2 -PEG for Dual Modal CT/ Fluorescence Imaging in vitro and in vivo Supporting Information Reverse Microemulsion-Mediated Synthesis of Bi 2 S 3 -QD@SiO 2 -PEG for Dual Modal CT/ Fluorescence Imaging in vitro and in vivo Jun Chen +, Xiao-Quan Yang +, Yuan-Zheng Meng, Meng-Yao

More information

DNA Nano-Claw : Logic-based Autonomous Cancer Targeting and Therapy

DNA Nano-Claw : Logic-based Autonomous Cancer Targeting and Therapy Supplementary Materials: DNA Nano-Claw : Logic-based Autonomous Cancer Targeting and Therapy Mingxu You,, Lu Peng, Na Shao, Liqin Zhang, Liping Qiu, Cheng Cui, and Weihong Tan, * Molecular Science and

More information

A nucleic acid-based fluorescent sensor for expeditious detection of pyrophosphate anions at nanomolar concentrations

A nucleic acid-based fluorescent sensor for expeditious detection of pyrophosphate anions at nanomolar concentrations Supporting Information for A nucleic acid-based fluorescent sensor for expeditious detection of pyrophosphate anions at nanomolar concentrations Xin Su, Chen Zhang, Xianjin Xiao, Anqin Xu, Zhendong Xu

More information

Nuclease-resistant Synthetic Drug-DNA Adducts: Programmable Drug-DNA. Conjugation for Targeted Anticancer Drug Delivery

Nuclease-resistant Synthetic Drug-DNA Adducts: Programmable Drug-DNA. Conjugation for Targeted Anticancer Drug Delivery Supplemental Information Nuclease-resistant Synthetic Drug-DNA Adducts: Programmable Drug-DNA Conjugation for Targeted Anticancer Drug Delivery Guizhi Zhu 1,2, Sena Cansiz 2, Mingxu You 1,2, Liping Qiu

More information

DNA damage - AP site- Assay Kit (Cell-Based)

DNA damage - AP site- Assay Kit (Cell-Based) ab133076 DNA damage - AP site- Assay Kit (Cell-Based) Instructions for Use For the detection of aldehyde sites in cells. This product is for research use only and is not intended for diagnostic use. 1

More information

Supplementary Figure 1 Characterization of sirna-onv stability. (a) Fluorescence recovery curves of SQ-siRNA-ONV and SQ-ds-siRNA in 1 TAMg buffer

Supplementary Figure 1 Characterization of sirna-onv stability. (a) Fluorescence recovery curves of SQ-siRNA-ONV and SQ-ds-siRNA in 1 TAMg buffer Supplementary Figure 1 Characterization of sirna-onv stability. (a) Fluorescence recovery curves of SQ-siRNA-ONV and SQ-ds-siRNA in 1 TAMg buffer containing 10% serum The data error bars indicate means

More information

Star poly(β-amino esters) obtained from the combination of linear poly(β-amino esters) and polyethyleneimine

Star poly(β-amino esters) obtained from the combination of linear poly(β-amino esters) and polyethyleneimine Supporting information Star poly(β-amino esters) obtained from the combination of linear poly(β-amino esters) and polyethyleneimine Xiaobei Huang,, Dezhong Zhou,,* Ming Zeng, Fatma Alshehri, Xiaolin Li,

More information

Characterizing Phenotypes of Bacteria by Staining Method

Characterizing Phenotypes of Bacteria by Staining Method Experiment 3 Laboratory to Biology III Diversity of Microorganisms / Wintersemester / page 1 Experiment 3 Characterizing Phenotypes of Bacteria by Staining Method Advisor NN Reading Chapters in BBOM 9

More information

Excess Titanium Dioxide Nanoparticles on Cell Surface Induce Cytotoxicity by Hindering Ion Exchange and Disrupting Exocytosis Processes

Excess Titanium Dioxide Nanoparticles on Cell Surface Induce Cytotoxicity by Hindering Ion Exchange and Disrupting Exocytosis Processes Electronic Supplementary Material (ESI) for Nanoscale. This journal is The Royal Society of Chemistry 2015 Supporting Information Excess Titanium Dioxide Nanoparticles on Cell Surface Induce Cytotoxicity

More information

Characterizing Phenotypes of Bacteria by Staining Method

Characterizing Phenotypes of Bacteria by Staining Method Experiment 3 Laboratory to Biology III Diversity of Microorganisms / Wintersemester / page 1 Experiment Characterizing Phenotypes of Bacteria by Staining Method Advisor Reading NN Chapters 3.1, 3.7, 3.8,

More information

Synthesis of the pyridinyl analogues of dibenzylideneacetone. (pyr-dba) via an improved Claisen-Schmidt condensation,

Synthesis of the pyridinyl analogues of dibenzylideneacetone. (pyr-dba) via an improved Claisen-Schmidt condensation, Synthesis of the pyridinyl analogues of dibenzylideneacetone (pyr-dba) via an improved Claisen-Schmidt condensation, displaying diverse biological activities as curcumin analogues Bin Cao, Yong Wang, Kan

More information

Supplementary Information for. Targeting and Imaging of Cancer Cells via Monosaccharide-Imprinted

Supplementary Information for. Targeting and Imaging of Cancer Cells via Monosaccharide-Imprinted Supplementary Information for Targeting and Imaging of Cancer Cells via Monosaccharide-Imprinted Fluorescent Nanoparticles Shuangshou Wang 1,2, Danyang Yin 1,2, Wenjing Wang 1,2, Xiaojing Shen 1,2, Jun-Jie

More information

CFSE Cell Division Assay Kit

CFSE Cell Division Assay Kit CFSE Cell Division Assay Kit Catalog Number KA1302 100 assays Version: 02 Intended for research use only www.abnova.com Table of Contents Introduction... 3 Intended Use... 3 Background... 3 General Information...

More information

Fitness Measurements of Evolved Escherichia coli Migla Miskinyte and Isabel Gordo *

Fitness Measurements of Evolved Escherichia coli Migla Miskinyte and Isabel Gordo * Fitness Measurements of Evolved Escherichia coli Migla Miskinyte and Isabel Gordo * Evolutionary Biology Group, Instituto Gulbenkian de Ciência, Oeiras, Portugal *For correspondence: igordo@igc.gulbenkian.pt

More information

Supporting Information

Supporting Information Electronic Supplementary Material (ESI) for Chemical Science. This journal is The Royal Society of Chemistry 2018 Supporting Information An enzyme-free molecular catalytic device: dynamically self-assembled

More information

Supporting Information Facile Synthesis of Robust and Biocompatible Gold Nanoparticles

Supporting Information Facile Synthesis of Robust and Biocompatible Gold Nanoparticles Supporting Information Facile Synthesis of Robust and Biocompatible Gold Nanoparticles Hongje Jang, Young-Kwan Kim, Soo-Ryoon Ryoo, Mi-Hee Kim, Dal-Hee Min* Department of Chemistry, Institute for the BioCentury,

More information

Supporting Information. Department of Chemical Engineering and Materials Science, University of Minnesota, Minneapolis,

Supporting Information. Department of Chemical Engineering and Materials Science, University of Minnesota, Minneapolis, Supporting Information Cytotoxicity of Graphene Oxide and Graphene in Human Erythrocytes and Skin Fibroblasts Ken-Hsuan Liao,, Yu-Shen Lin,, Christopher W. Macosko,, * and Christy L. Haynes,, * Department

More information

The Development of an Indirect Competitive. Immunomagnetic-Proximity Ligation Assay for Small-Molecule. Detection

The Development of an Indirect Competitive. Immunomagnetic-Proximity Ligation Assay for Small-Molecule. Detection The Development of an Indirect Competitive Immunomagnetic-Proximity Ligation Assay for Small-Molecule Detection Xuecheng Jiang, a Zhenhong Zhu, ab Zhihao Sun, a Luming Wang, a Lixiao Zhou, a Hanqiang Miao,

More information

Multidrug Resistance Assay Kit (Calcein AM)

Multidrug Resistance Assay Kit (Calcein AM) Multidrug Resistance Assay Kit (Calcein AM) Item No. 600370 www.caymanchem.com Customer Service 800.364.9897 Technical Support 888.526.5351 1180 E. Ellsworth Rd Ann Arbor, MI USA TABLE OF CONTENTS GENERAL

More information

Supplementary Materials and Methods

Supplementary Materials and Methods Supplementary Materials and Methods Reagents Supplementary Material (ESI) for Lab on a Chip RPMI medium, FBS, HEPES buffer solution, sodium pyruvate, penicillin, and streptomycin were obtained from Biological

More information

ab Propidium Iodide Flow Cytometry Kit for Cell Cycle Analysis

ab Propidium Iodide Flow Cytometry Kit for Cell Cycle Analysis ab139418 Propidium Iodide Flow Cytometry Kit for Cell Cycle Analysis Instructions for Use To determine cell cycle status in tissue culture cell lines by measuring DNA content using a flow cytometer. This

More information

ab Propidium Iodide Flow Cytometry Kit for Cell Cycle Analysis

ab Propidium Iodide Flow Cytometry Kit for Cell Cycle Analysis ab139418 Propidium Iodide Flow Cytometry Kit for Cell Cycle Analysis Instructions for Use To determine cell cycle status in tissue culture cell lines by measuring DNA content using a flow cytometer. This

More information

Dynamic light scattering (DLS)-based immunoassay for. ultrasensitive detection of tumor marker protein

Dynamic light scattering (DLS)-based immunoassay for. ultrasensitive detection of tumor marker protein Electronic Supplementary Material (ESI) for Chemical Communications. This journal is The Royal Society of Chemistry 2016 Dynamic light scattering (DLS)-based immunoassay for ultrasensitive detection of

More information

0.5% Triton X-100 for 5 min at room temperature. Fixed and permeabilized cells were

0.5% Triton X-100 for 5 min at room temperature. Fixed and permeabilized cells were 1 Supplementary Methods Immunohistochemistry EBC-1 cells were fixed in 4% paraformaldehyde for 15 min at room temperature, followed by 0.5% Triton X-100 for 5 min at room temperature. Fixed and permeabilized

More information