Biomedical Engineering Reference
In-Depth Information
Senger RS, Karim MN (2003) Effect of shear stress on intrinsic CHO culture state and glycosylation
of recombinant tissue-type plasminogen activator protein. Biotechnol Prog 19(4):1199-1209
Shimizu S et al (2010) The let-7 family of microRNAs inhibits Bcl-xL expression and potentiates
sorafenib-induced apoptosis in human hepatocellular carcinoma. J Hepatol 52(5):698-704
Si ML et al (2007) miR-21-mediated tumor growth. Oncogene 26(19):2799-2803
Sun W et al (2010) microRNA: a master regulator of cellular processes for bioengineering systems.
Annu Rev Biomed Eng 12:1-27
Sung YH et al (2007) Influence of co-down-regulation of caspase-3 and caspase-7 by siRNAs
on sodium butyrate-induced apoptotic cell death of Chinese hamster ovary cells producing
thrombopoietin. Metab Eng 9(5-6):452-464
Taguchi A et al (2008) Identification of hypoxia-inducible factor-1 alpha as a novel target for
miR-17-92 microRNA cluster. Cancer Res 68(14):5540-5545
Tan HK et al (2008) Overexpression of cold-inducible RNA-binding protein increases interferon-
gamma production in Chinese-hamster ovary cells. Biotechnol Appl Biochem 49(Pt 4):247-257
Tang X et al (2009) Identification of glucose-regulated miRNAs from pancreatic {beta} cells reveals
a role for miR-30d in insulin transcription. RNA 15(2):287-293
Tey BT et al (2000) Influence of bcl-2 on cell death during the cultivation of a Chinese hamster
ovary cell line expressing a chimeric antibody. Biotechnol Bioeng 68(1):31-43
Tigges M, Fussenegger M (2006) Xbp1-based engineering of secretory capacity enhances the
productivity of Chinese hamster ovary cells. Metab Eng 8:264-272
Tseng CF et al (2004) Antioxidant role of human haptoglobin. Proteomics 4(8):2221-2228
Weber M et al (2010) MiR-21 is induced in endothelial cells by shear stress and modulates apoptosis
and eNOS activity. Biochem Biophys Res Commun 393(4):643-648
Weber W, Fussenegger M (2007) Inducible product gene expression technology tailored to
bioprocess engineering. Curr Opin Biotechnol 18(5):399-410
Wong DC et al (2006) Targeting early apoptotic genes in batch and fed-batch CHO cell cultures.
Biotechnol Bioeng 95(3):350-361
Xu C et al (2007) The muscle-specific microRNAs miR-1 and miR-133 produce opposing effects
on apoptosis by targeting HSP60, HSP70 and caspase-9 in cardiomyocytes. J Cell Sci 120(Pt
17):3045-3052
Xu X et al (2011) The genomic sequence of the Chinese hamster ovary (CHO)-K1 cell line. Nat
Biotechnol 29(8):735-741
Yallop CA, Svendsen I (2001) The effects of G418 on the growth and metabolism of recombinant
mammalian cell lines. Cytotechnology 35(2):101-114
Yang M, Butler M (2000) Effects of ammonia on CHO cell growth, erythropoietin production, and
glycosylation. Biotechnol Bioeng 68(4):370-380
Yang W, Paschen W (2008) Conditional gene silencing in mammalian cells mediated by a stress-
inducible promoter. Biochem Biophys Res Commun 365(3):521-527
Yoon SK, Song JY, Lee GM (2003) Effect of low culture temperature on specific productivity, tran-
scription level, and heterogeneity of erythropoietin in Chinese hamster ovary cells. Biotechnol
Bioeng 82(3):289-298
Yu F et al (2010) Mir-30 reduction maintains self-renewal and inhibits apoptosis in breast tumor-
initiating cells. Oncogene 29(29):4194-4204
Zamboni N, Sauer U (2009) Novel biological insights through metabolomics and 13C-flux analysis.
Curr Opin Microbiol 12(5):553-558
Zanghi JA, Fussenegger M, Bailey JE (1999) Serum protects protein-free competent Chinese ham-
ster ovary cells against apoptosis induced by nutrient deprivation in batch culture. Biotechnol
Bioeng 64(1):108-119
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