1 |
Transcriptome analysis of a CHO cell line expressing a recombinant therapeutic protein treated with inducers of protein expression |
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2 |
Addition of Valproic Acid to CHO Cell Fed-Batch Cultures Improves Monoclonal Antibody Titers |
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3 |
Influence of molecular and chemical chaperones on protein folding |
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4 |
Chemical Chaperones Reduce Endoplasmic Reticulum Stress and Prevent Mutant HFE Aggregate Formation |
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5 |
Suppressive effects of 4‐phenylbutyrate on the aggregation of Pael receptors and endoplasmic reticulum stress |
미소장 |
6 |
Expression systems for therapeutic glycoprotein production |
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7 |
Butyrate increases production of human chimeric IgG in CHO-K1 cells whilst maintaining function and glycoform profile |
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8 |
Proliferation control strategies to improve productivity and survival during CHO based production culture |
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9 |
Effect of sodium butyrate on the assembly, charge variants, and galactosylation of antibody produced in recombinant Chinese hamster ovary cells |
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10 |
Identification of novel small molecule enhancers of protein production by cultured mammalian cells |
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11 |
CHO cells in biotechnology for production of recombinant proteins: current state and further potential |
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12 |
Recent advances in mammalian protein production |
미소장 |
13 |
Phenylbutyric acid induces the cellular senescence through an Akt/p21WAF1 signaling pathway |
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14 |
Valproic acid enhances recombinant mRNA and protein levels in transiently transfected Chinese hamster ovary cells |
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15 |
Stable microRNA expression enhances therapeutic antibody productivity of Chinese hamster ovary cells |
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16 |
The combined effect of sodium butyrate and low culture temperature on the production, sialylation, and biological activity of an antibody produced in CHO cells |
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17 |
Overexpression ofbcl-2 inhibits sodium butyrate-induced apoptosis in Chinese hamster ovary cells resulting in enhanced humanized antibody production |
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18 |
Valproic acid: A viable alternative to sodium butyrate for enhancing protein expression in mammalian cell cultures |
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19 |
Sodium butyrate stimulates monoclonal antibody over‐expression in CHO cells by improving gene accessibility |
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20 |
Cell culture processes for monoclonal antibody production |
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21 |
Valeric acid induces cell cycle arrest at G1 phase in CHO cell cultures and improves recombinant antibody productivity |
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22 |
Chemical inhibition of autophagy: Examining its potential to increase the specific productivity of recombinant CHO cell lines |
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23 |
Valeric acid supplementation combined to mild hypothermia increases productivity in CHO cell cultivations |
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24 |
Evaluating the impact of suramin additive on CHO cells producing Fc-fusion protein |
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25 |
Mammalian cell culture for production of recombinant proteins: A review of the critical steps in their biomanufacturing |
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26 |
Recent advances in CHO cell line development for recombinant protein production |
미소장 |
27 |
Establishment of a glycoengineered CHO cell line for enhancing antennary structure and sialylation of CTLA4-Ig |
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28 |
Combination of sodium butyrate and decitabine promotes transgene expression in CHO cells via apoptosis inhibition |
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