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Oli, M. S. K.

Publications and source records attributed to Oli, M. S. K..

2 recordsLinked to original sources

Determining the shelf life of an erythropoietin alfa biosimilar GBPD002 through stability study

GBPD002 is a recombinant human erythropoietin (rhEPO) produced by recombinant DNA technology using mammalian cell expression system. In this study, samples were analyzed according to current Good Laboratory Practice (cGLP) and regulatory guidelines to evaluate the quality of the product under the influence of variety of environmental factors in a time-dependent manner. Accelerated (25 {+/-} 2 {degrees}C and relative humidity: 60 {+/-} 5 %) and real-time (5 {+/-} 3 {degrees}C) stability study were conducted up to 6 months and 12 months, respectively; samples were analyzed in every 3 months. After 12 months, real-time stability studies were performed with 6 months interval up to18 months, which to be continued up to 24 months. Appearance and pH were assessed using standard methods, and molecular weight was determined by Western blotting. Chromatographic identification and quantitative assays were performed by reversed- phase chromatography (RPC). High-molecular weight aggregatesand degradants were determined using size exclusion chromatography (SEC) and particle size distribution (PSD) analysis. Biofunctionality of the samples were evaluated by in vitro and in vivo bioassays. Bacterial endotoxin and sterility test were performed as safety parameters. All samples met the acceptance criteria, and the data were extrapolated using the regulatory guideline to determine the shelf life. The data revealed that the GBPD002 is stable up to 24 months.

pharmacology and toxicology↗

Development and qualification of a high-yield recombinant human Erythropoietin biosimilar

Recombinant human erythropoietin (rhEPO) has been saving millions of lives worldwide as a potent and safe treatment for the lack of erythrocyte, which is caused by chronic kidney disease (CKD) and other issues. Several biosimilars of rhEPO have been approved since the expiry of the relevant patents to provide cost-effective options but the price of rhEPO is still high for the affordability of global community. Therefore, development of biosimilar of rhEPO at a lower price is highly necessary. Here we report the development and characterization of a biosimilar of rhEPO with high-yield satisfying regulatory requirements. The hEPO-expressing cDNA was stably expressed in CHO cells with successive transfection. The master cell bank (MCB) and working cell bank (WCB) were established from the best selected clone and characterized for 50 passages. The rhEPO was expressed from the WCB in single-use suspension culture system with a high-titer (1.24{+/-}0.16 g/L). To the best of our knowledge this is the highest reported rhEPO titer to date. The rhEPO was purified using a series of validated chromatography unit processes including virus inactivation and filtration. The purified EPO was formulated in serum-free buffer, sterile filtered, and analyzed as the biosimilar of reference product Eprex(R). Physicochemical analysis strongly suggested similarities between the developed rhEPO (GBPD002) and the reference. The in vitro and in vivo functional assays confirmed the similar biofunctionality of the GBPD002 and Eprex(R). GBPD002 could provide a less-expensive solution to the needful communities as an effective and safe biosimilar where rhEPO treatment is necessary.

bioengineering↗