Matches in SemOpenAlex for { <https://semopenalex.org/work/W2142850961> ?p ?o ?g. }
- W2142850961 endingPage "2542" @default.
- W2142850961 startingPage "2527" @default.
- W2142850961 abstract "ABSTRACT Based on an optimized electroporation protocol, we designed a rapid, milliliter‐scale diagnostic transient production assay to identify limitations in the ability of Chinese hamster ovary (CHO) cells to produce a model “difficult‐to‐express” homodimeric Fc‐fusion protein, Sp35Fc, that exhibited very low volumetric titer and intracellular formation of disulfide‐bonded oligomeric aggregates post‐transfection. As expression of Sp35Fc induced an unfolded protein response in transfected host cells, we utilized the transient assay to compare, in parallel, multiple functionally diverse strategies to engineer intracellular processing of Sp35Fc in order to increase production and reduce aggregation as two discrete design objectives. Specifically, we compared the effect of (i) co‐expression of ER‐resident molecular chaperones (BiP, PDI, CypB) or active forms of UPR transactivators (ATF6c, XBP1s) at varying recombinant gene load, (ii) addition of small molecules known to act as chemical chaperones (PBA, DMSO, glycerol, betaine, TMAO) or modulate UPR signaling (PERK inhibitor GSK2606414) at varying concentration, (iii) a reduction in culture temperature to 32°C. Using this information, we designed a biphasic, Sp35Fc‐specific transient manufacturing process mediated by lipofection that utilized CypB co‐expression at an optimal Sp35Fc:CypB gene ratio of 5:1 to initially maximize transfected cell proliferation, followed by addition of a combination of PBA (0.5 mM) and glycerol (1% v/v) at the onset of stationary phase to maximize cell specific production and eliminate Sp35Fc aggregation. Using this optimal, engineered process transient Sp35Fc production was significantly increased sixfold over a 12 day production process with no evidence of disulfide‐bonded aggregates. Finally, transient production in clonally derived sub‐populations (derived from parental CHO host) screened for a heritably improved capability to produce Sp35Fc was also significantly improved by the optimized process, showing that protein‐specific cell/process engineering can provide a solution that exceeds the limits of genetic/functional diversity within heterogeneous host cell populations. Biotechnol. Bioeng. 2015;112: 2527–2542. © 2015 Wiley Periodicals, Inc." @default.
- W2142850961 created "2016-06-24" @default.
- W2142850961 creator A5034217863 @default.
- W2142850961 creator A5043022666 @default.
- W2142850961 creator A5045290531 @default.
- W2142850961 creator A5065858992 @default.
- W2142850961 creator A5090610974 @default.
- W2142850961 date "2015-09-07" @default.
- W2142850961 modified "2023-09-26" @default.
- W2142850961 title "Integrated cell and process engineering for improved transient production of a “difficult-to-express“ fusion protein by CHO cells" @default.
- W2142850961 cites W1688835773 @default.
- W2142850961 cites W1968847190 @default.
- W2142850961 cites W1978490927 @default.
- W2142850961 cites W1979371976 @default.
- W2142850961 cites W1979578972 @default.
- W2142850961 cites W1983440646 @default.
- W2142850961 cites W1989711933 @default.
- W2142850961 cites W1990149904 @default.
- W2142850961 cites W2012416465 @default.
- W2142850961 cites W2015160204 @default.
- W2142850961 cites W2019099201 @default.
- W2142850961 cites W2019508778 @default.
- W2142850961 cites W2024115241 @default.
- W2142850961 cites W2028591711 @default.
- W2142850961 cites W2029878671 @default.
- W2142850961 cites W2032901225 @default.
- W2142850961 cites W2064815984 @default.
- W2142850961 cites W2068854526 @default.
- W2142850961 cites W2069229821 @default.
- W2142850961 cites W2069974072 @default.
- W2142850961 cites W2072448981 @default.
- W2142850961 cites W2072835990 @default.
- W2142850961 cites W2076595618 @default.
- W2142850961 cites W2078988344 @default.
- W2142850961 cites W2083525737 @default.
- W2142850961 cites W2097445454 @default.
- W2142850961 cites W2099687964 @default.
- W2142850961 cites W2105293460 @default.
- W2142850961 cites W2122837633 @default.
- W2142850961 cites W2136659618 @default.
- W2142850961 cites W2141741074 @default.
- W2142850961 cites W2149145325 @default.
- W2142850961 cites W2152709023 @default.
- W2142850961 cites W2154882802 @default.
- W2142850961 cites W2156684284 @default.
- W2142850961 cites W2159285058 @default.
- W2142850961 cites W2256672295 @default.
- W2142850961 cites W2917973694 @default.
- W2142850961 cites W74530011 @default.
- W2142850961 doi "https://doi.org/10.1002/bit.25687" @default.
- W2142850961 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/26126657" @default.
- W2142850961 hasPublicationYear "2015" @default.
- W2142850961 type Work @default.
- W2142850961 sameAs 2142850961 @default.
- W2142850961 citedByCount "53" @default.
- W2142850961 countsByYear W21428509612015 @default.
- W2142850961 countsByYear W21428509612016 @default.
- W2142850961 countsByYear W21428509612017 @default.
- W2142850961 countsByYear W21428509612018 @default.
- W2142850961 countsByYear W21428509612019 @default.
- W2142850961 countsByYear W21428509612020 @default.
- W2142850961 countsByYear W21428509612021 @default.
- W2142850961 countsByYear W21428509612022 @default.
- W2142850961 countsByYear W21428509612023 @default.
- W2142850961 crossrefType "journal-article" @default.
- W2142850961 hasAuthorship W2142850961A5034217863 @default.
- W2142850961 hasAuthorship W2142850961A5043022666 @default.
- W2142850961 hasAuthorship W2142850961A5045290531 @default.
- W2142850961 hasAuthorship W2142850961A5065858992 @default.
- W2142850961 hasAuthorship W2142850961A5090610974 @default.
- W2142850961 hasConcept C104317684 @default.
- W2142850961 hasConcept C123894998 @default.
- W2142850961 hasConcept C12554922 @default.
- W2142850961 hasConcept C139447449 @default.
- W2142850961 hasConcept C143065580 @default.
- W2142850961 hasConcept C175656101 @default.
- W2142850961 hasConcept C185592680 @default.
- W2142850961 hasConcept C186852380 @default.
- W2142850961 hasConcept C205260736 @default.
- W2142850961 hasConcept C40767141 @default.
- W2142850961 hasConcept C54009773 @default.
- W2142850961 hasConcept C54355233 @default.
- W2142850961 hasConcept C55493867 @default.
- W2142850961 hasConcept C79879829 @default.
- W2142850961 hasConcept C81885089 @default.
- W2142850961 hasConcept C86803240 @default.
- W2142850961 hasConcept C95444343 @default.
- W2142850961 hasConceptScore W2142850961C104317684 @default.
- W2142850961 hasConceptScore W2142850961C123894998 @default.
- W2142850961 hasConceptScore W2142850961C12554922 @default.
- W2142850961 hasConceptScore W2142850961C139447449 @default.
- W2142850961 hasConceptScore W2142850961C143065580 @default.
- W2142850961 hasConceptScore W2142850961C175656101 @default.
- W2142850961 hasConceptScore W2142850961C185592680 @default.
- W2142850961 hasConceptScore W2142850961C186852380 @default.
- W2142850961 hasConceptScore W2142850961C205260736 @default.
- W2142850961 hasConceptScore W2142850961C40767141 @default.
- W2142850961 hasConceptScore W2142850961C54009773 @default.