Pharma Ingredients & Services. Soluplus. Technical Information. = Registered trademark of BASF group. July 2010 Supersedes issue dated May 2010

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Technical Information Soluplus July 21 Supersedes issue dated May 21 3_981e-4/Page 1 of 8 = Registered trademark of BASF group Pharma Ingredients & Services

3_981e-4 July 21 Page 2 of 8 Soluplus 1. Introduction 1.1. General information Soluplus is a polymeric solubilizer with an amphiphilic chemical structure, which was particularly developed for solid solutions. Due to its bifunctional character, it is able to act as a matrix polymer for solid solutions on the one hand, and, on the other hand, it is capable of solubilizing poorly soluble drugs in aqueous media. Furthermore, Soluplus can increase the bioavailability of poorly soluble drugs. 2. Specification and properties 2.1 Description Soluplus is a polyvinyl caprolactam-polyvinyl acetate-polyethylene glycol graft copolymer. It is a free flowing white to slightly yellowish granule with a faint characteristic odor. 2.2 Regulatory status A DMF is filed in the USA. 2.3. Structural formula H N n m I H 2.4 Molecular weight The average molecular weight determined by gel permeation chromatography is in the range of 9 14 g/mol. 2.5 Specification See separate document: Standard Specification (not for regulatory purposes) available via BASF s WorldAccount: https://worldaccount.basf.com (registered access). 2.6 Sorption isotherm The sorption isotherm was measured by storing Soluplus over saturated salt solutions. 35 3 Water content [%] 25 2 15 1 5 2 4 6 8 1 Relative humidity [%] Figure 1: Sorption isotherm of Soluplus

3_981e-4 July 21 Page 3 of 8 Soluplus 2.7 Critical micelle concentration 7.6 mg/l ~ 7.6 ppm 2.8 Glass transition temperature Approximately 7 C. 2.9 Minimum ignition energy According to VDI 2263 the ignition energy is between 1 3 mj (1.13 hpa, 2 C). 2.1 Solubility Soluplus is soluble in water. Furthermore, it is soluble in acetone (up to 5%), methanol (up to 45%), ethanol (up to 25%) and dimethylformamide (up to 5%). Higher polymer concentration may result in a cloudy or turbid aqueous solution. This is due to formation of colloidal Soluplus micelles. This phenomenon is more pronounced at elevated temperature (~4 C), which is a lower critical solution temperature (LCST). Thus, when the polymer solution is heated at or above its LCST, a clear polymer solution turns cloudy or turbid due to formation of larger micelles. This process is reversible upon cooling the polymer solution. 2.11 Viscosity in water The values shown in Fig. 2 were determined with a cone-plate viscometer at a shear rate of 1 s -1. Viscosity [mpas] 6 5 4 3 2 1 C 3 C 5 C 7 C 1 1 2 3 4 5 Polymer concentration [%] Viscosity [mpas] 3 25 2 15 1 1 C 3 C 5 C 7 C 5 5 1 15 2 25 3 35 Polymer concentration [%] Figure 2: Dynamic viscosity of Soluplus solutions with increasing polymer concentration

3_981e-4 July 21 Page 4 of 8 Soluplus 3. Application and processing 3.1 Recommendations for pretesting Solubilization A potential affinity between Soluplus and a poorly soluble drug can be pre tested by means of various methods. The solubilization capacity of the amphiphilic polymer is tested by determination of the saturation solubility of a poorly soluble drug in a polymer solution. Phosphate buffer as solvent (e. g. ph 7.) assures comparable conditions when testing ionic solubilizers or drugs. Thus, solubility effects due to ph shifts can be avoided. Procedure: A 1% polymer solution in phosphate buffer is oversaturated with a discrete drug and stirred for 72 h at room temperature. The resulting suspension is filtered through.45 µm filter and the content of solubilized drug in the filtrate is determined by UV spectroscopy. Figure 3 shows the results of the solubility enhancement of Soluplus for various drugs in comparison to the API solubilities in phosphate buffer ph 7.: Saturation solubility in phosphate buffer ph 7. [g/1 ml].4.35.3.25.2.15.1.5. Estradiol,.1,.26,.1,.13,.8 Piroxicam Clotrimazole Carbamazepine Griseofulvin Ketoconazole,.1 Cinnarizine,.1 Fenofibrate Soluplus Pure API,.1 Itraconazole,.1 Danazol,.1 Figure 3: Saturation solubility of various drugs Capacity for solid solutions A different approach to test solubilization capacity is the film casting procedure: An appropriate solvent that dissolves the API and also Soluplus has to be chosen (e. g. dimethylformamide). When both substances are dissolved after stirring, the solution can be casted on a glass plate resulting in a thin film. A scraper that leads to a film of 12 µm thickness is recommended as casting device. The thin film (thickness of the dry film <12 µm) enables a fast drying and avoids a recrys talliza tion of the poorly soluble drug due to concentration differences as it is the case within thick films and during slow drying processes. The drying should be performed in a vacuum drying cabinet (5 C, 1 mbar, 3 min) to ensure a fast and complete drying of the film. To analyze the extent of solubilization capacity of Soluplus for a discrete drug, increasing amounts of API should be applied for the film casting method (e. g. 2, 3 and 5%). The higher the incorporable concentration is the higher is the solubilization capacity for a discrete drug. A solid solution becomes obvious in clear and smooth films. Drug crystals can be easily seen after recrystallization resulting also in opaque films. Drying in a rotating evaporator can take too much time and could lead to recrystallization of the drug within the resulting solid solution. Spray drying is another possible and fast method to form solid solutions.

3_981e-4 July 21 Page 5 of 8 Soluplus 3.2 Extrusion recommendations Soluplus with its glass transition temperature of around 7 C is a well extrudable polymer. The pure polymer can be extruded on a 16 mm twin-screw extruder at temperatures starting around 12 C up to 18 C depending on the applied screw configuration. The polymer shows no chemical degradation even after extrusion at 18 C. Incorporation of a drug can lead to lower temperatures than 12 C in dependence on the drug melting point. A solid solution with fenofibrate (melting point ~81 C) and 2% drug content can be prepared at 1 C. Higher melting drugs as itraconazole (melting point ~166 C) with 15% drug content can be extruded with Soluplus at 15 C. Parameters for a 16 mm twin-screw extruder were 2 rpm and 1 kg/h powder feed rate. The resulting transparent and clear extrudates showed no crystalline amounts of drug determined by x-ray diffraction. Drug release was tested according to USP, apparatus 2, 5 rpm, 7 ml HCl (.8 molar) under non-sink conditions. Drug release was determined out of cut extrudates of comparable length (3 mm in length and diameter). API amount was in both cases 1 mg. During dissolution samples were manually taken through a glass drip and immediately diluted in methanol (ratio 1:9). This procedure avoids a recrystallization of API when the sample cools down to room temperature. Figure 4 shows the dissolution rate of fenofibrate out of a solid solution with Soluplus and the dissolution rate of crystalline substance. 12 1 Drug release [%] 8 6 4 solid solution Soluplus/fenofibrate crystalline fenofibrate 2 3 6 9 12 t [min] Figure 4: Dissolution rate of fenofibrate Figure 5 shows the dissolution rate of itraconazole out of a solid solution with Soluplus and the dissolution rate of crystalline substance. 12 1 Drug release [%] 8 6 4 solid solution Soluplus/itraconazole crystalline itraconazole 2 3 6 9 12 t [min] Figure 5: Dissolution rate of itraconazole

3_981e-4 July 21 Page 6 of 8 Soluplus 3.3 Capsule formulation Solid solutions can be easily formulated into solid dosage forms, e.g. hard gelatin capsules. The extrudates have to be milled down to an appropriate size for a proper filling of the final capsules. To assure a drug release out of discrete solid solution particles and to avoid lumping additional disintegrant has to be added to the formulation. An effective disintegrant is Kollidon CL in a concentration range of 1 15%. Depending on the degree of milling also finer disintegrants as Kollidon CL-F or Kollidon CL-SF are recommendable. Additional water insoluble filler can also be added to the formulation in order to act as a spacer. Microcrystalline cellulose can be used as a potential spacer in concentrations around 15 2%. Capsule formulation: Solid solution 7% Kollidon CL 15% Microcrystalline cellulose 15% 3.4 Tablet formulation Solid solutions with Soluplus can also be compressed into tablets. Extrudates have to be milled down to an appropriate size and mixed with other excipients of a typical tablet formulation: Tablet formulation: Solid solution 6% Microcrystalline cellulose (Avicel PH 12) 29% Kollidon CL 1% Magnesium stearate.5% Aerosil 2.5% 3.5 Drug layering of nonpareils Soluplus can effectively be used in drug layering processes, e.g. in fluid bed granulators with a Wurster insert. Poorly soluble drug and Soluplus have to be dissolved in an appropriate organic solvent, e.g. acetone or ethanol. This solution can be sprayed onto drug free pellets (nonpareils). In the following example carbamazepine and Soluplus were dissolved in ethanol (ratio drug: Soluplus 1:2) and sprayed onto sugar pellets. Mass gain of the pellets after layering was approximately 1%. Figure 6 shows the dissolution rate of carbamazepine out of a solid solution with Soluplus which was coated onto sugar pellets. Drug release [%] 1 9 8 7 6 5 4 Sugar pellets layered with carbamazepine/soluplus 3 2 1 3 6 9 12 t [min] Figure 6: Dissolution rate of carbamazepine Drug release was tested according to USP, apparatus 2, 5 rpm, 7 ml HCl (.8 molar) under non-sink conditions. Amount of carbamazepine was 1 mg. During dissolution samples were manually taken through a glass drip and immediately diluted in methanol (ratio 1:9). This procedure avoids a recrystallization of API when the sample cools down to room temperature.

3_981e-4 July 21 Page 7 of 8 Soluplus 3.6. ther applications Soluplus can also be used for spray drying out of organic solutions. However, the spray dried powder could show inappropriate properties in terms of the handling of the powder during the next steps (e.g. compression of tablets, filling of capsules). ther applications for Soluplus are the use as a binder in wet granulation or a dry binder in direct compression, e. g. for pooly soluble drugs. Thus its solubilization capacity can be used in a simple process method. Furthermore, Soluplus can also be used as emulsifier. 4. Bioavailability Soluplus can enhance the bioavailability of poorly soluble drugs. Solid solutions were prepared with fenofibrate and Soluplus (ratio 2:8); itraconazole and Soluplus (ratio 15:85). They were administered to beagle dogs. For comparison, crystalline substance was administered as well. Each dog received 1 mg API/kg bodyweight in form of hard gelatin capsules. To avoid lumping either of crystalline API or solid solution, a disintegrant was added to the formulations: Figures 7 and 8 show the blood concentration of API administered to beagle dogs. 6 Blood concentration [ng/ml] 5 4 3 2 1 solid solution fenofibrate crystalline fenofibrate 5 1 15 2 t [h] Figure 7: Blood concentration of fenofibrate 45 Blood concentration [ng/ml] 4 35 3 25 2 15 1 5 solid solution itraconazole crystalline itraconazole 5 1 15 2 t [h] Figure 8: Blood concentration of itraconazole

3_981e-4 July 21 Page 8 of 8 Soluplus 5. Packaging material Soluplus is packed in 25 kg cartons with a welded PE/Aluminium/Polyester inliner. 6. Retest date and storage conditions When stored in unopened original containers, the retest period is at least 36 months. After opening the inliner, it should be stored tightly closed (e. g. reseal inliner or store granules in a closed container). 7. Safety data sheet A safety data sheet for Soluplus is available on request. 8. Toxicological Studies Toxicological studies are available on request. For detailed information and individual reports a secrecy agreement has to be signed in advance. 9. PRD-No. 3446233 Note This document, or any answers or information provided herein by BASF, does not constitute a legally binding obligation of BASF. While the descriptions, designs, data and information contained herein are presented in good faith and believed to be accurate, it is provided for your guidance only. Because many factors may affect processing or application/use, we recommend that you make tests to determine the suitability of a product for your particular purpose prior to use. It does not relieve our customers from the obligation to perform a full inspection of the products upon delivery or any other obligation. N WARRANTIES F ANY KIND, EITHER EXPRESS R IMPLIED, INCLUDING WARRANTIES F MERCHANTABILITY R FITNESS FR A PARTICULAR PURPSE, ARE MADE REGARDING PRDUCTS DESCRIBED R DESIGNS, DATA R INFRMATIN SET FRTH, R THAT THE PRDUCTS, DESIGNS, DATA R INFRMATIN MAY BE USED WITHUT INFRINGING THE INTELLECTUAL PRPERTY RIGHTS F THERS. IN N CASE SHALL THE DESCRIPTINS, INFRMATIN, DATA R DESIGNS PRVIDED BE CNSIDERED A PART F UR TERMS AND CNDITINS F SALE. July 21 BASF SE - Care Chemicals Division - Pharma Ingredients & Services - 67117 Limburgerhof - www.pharma-ingredients.basf.com