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1.
MAbs ; 11(1): 1-12, 2019 01.
Article in English | MEDLINE | ID: mdl-30303443

ABSTRACT

Amino acid sequence variation in protein therapeutics requires close monitoring during cell line and cell culture process development. A cross-functional team of Pfizer colleagues from the Analytical and Bioprocess Development departments worked closely together for over 6 years to formulate and communicate a practical, reliable sequence variant (SV) testing strategy with state-of-the-art techniques that did not necessitate more resources or lengthen project timelines. The final Pfizer SV screening strategy relies on next-generation sequencing (NGS) and amino acid analysis (AAA) as frontline techniques to identify mammalian cell clones with genetic mutations and recognize cell culture process media/feed conditions that induce misincorporations, respectively. Mass spectrometry (MS)-based techniques had previously been used to monitor secreted therapeutic products for SVs, but we found NGS and AAA to be equally informative, faster, less cumbersome screening approaches. MS resources could then be used for other purposes, such as the in-depth characterization of product quality in the final stages of commercial-ready cell line and culture process development. Once an industry-wide challenge, sequence variation is now routinely monitored and controlled at Pfizer (and other biopharmaceutical companies) through increased awareness, dedicated cross-line efforts, smart comprehensive strategies, and advances in instrumentation/software, resulting in even higher product quality standards for biopharmaceutical products.


Subject(s)
Genetic Variation , Sequence Analysis, Protein/methods , Amino Acid Sequence , Animals , High-Throughput Screening Assays/methods , Humans
2.
Stem Cells Dev ; 19(12): 1923-35, 2010 Dec.
Article in English | MEDLINE | ID: mdl-20367282

ABSTRACT

Human embryonic stem cells (hESC) require a balance of growth factors and signaling molecules to proliferate and retain pluripotency. Conditioned medium (CM) from a human embryonic germ-cell-derived cell culture, SDEC, was observed to support the growth of hESC on type I collagen (COL I) and on Matrigel (MAT) biomatricies. After 1 month, the population doubling of hESC grown in SDEC CM on COL I was equivalent to that of hESC grown in mouse embryonic fibroblast (MEF) CM on MAT. hESC grown in SDEC CM on COL I expressed OCT4, NANOG, SSEA-4, alkaline phosphatase (AP), and TRA-1-60; retained a normal karyotype; and were capable of forming teratomas. DNA microarray analysis was used to compare the transcriptional profiles of SDEC and the less supportive WI38 and Detroit 551 human cell lines. The mRNA level of secreted frizzled-related protein (sFRP-1), a known antagonist of the WNT/ß-catenin signaling pathway, was significantly reduced in SDEC as compared with the other 2 cell lines, whereas the mRNA levels of prostaglandin-endoperoxide synthase 2 (PTGS2 or COX-2) and prostaglandin I2 synthase (PGIS), two prostaglandin biosynthesis genes, were significantly increased in SDEC. The level of sFRP-1 protein was significantly reduced, and levels of 2 prostaglandins that are downstream products of PTGS2 and PGIS, prostaglandin E2 and 6-keto-prostaglandin F(1α), were significantly elevated in SDEC CM compared with WI38, Detroit 551, and MEF CM. Further, addition of purified sFRP-1 to SDEC CM reduced the proliferation of hESC grown on COL I as well as MAT in a dose-dependent manner.


Subject(s)
Cell Proliferation , Collagen Type I , Embryonic Stem Cells/physiology , Pluripotent Stem Cells/physiology , Biomarkers/metabolism , Blotting, Western , Cell Line , Collagen , Culture Media, Conditioned , Drug Combinations , Embryonic Stem Cells/cytology , Embryonic Stem Cells/metabolism , Frizzled Receptors/analysis , Frizzled Receptors/genetics , Gene Expression , Glycoproteins/genetics , Glycoproteins/metabolism , Humans , Intracellular Signaling Peptides and Proteins , Laminin , Oligonucleotide Array Sequence Analysis , Pluripotent Stem Cells/cytology , Pluripotent Stem Cells/metabolism , Prostaglandin-Endoperoxide Synthases/genetics , Prostaglandin-Endoperoxide Synthases/metabolism , Prostaglandins/biosynthesis , Prostaglandins/metabolism , Proteoglycans , Reverse Transcriptase Polymerase Chain Reaction
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