نتایج جستجو برای: cho cells

تعداد نتایج: 1391550  

Journal: :Molecular & cellular proteomics : MCP 2014
Zhang Yang Adnan Halim Yoshiki Narimatsu Hiren Jitendra Joshi Catharina Steentoft Katrine Ter-Borch Gram Schjoldager Morten Alder Schulz Natalie R Sealover Kevin J Kayser Eric Paul Bennett Steven B Levery Sergey Y Vakhrushev Henrik Clausen

The Chinese hamster ovary cell (CHO) is the major host cell factory for recombinant production of biological therapeutics primarily because of its "human-like" glycosylation features. CHO is used for production of several O-glycoprotein therapeutics including erythropoietin, coagulation factors, and chimeric receptor IgG1-Fc-fusion proteins, however, some O-glycoproteins are not produced effici...

Journal: :Cancer research 1987
D M Sullivan M D Latham W E Ross

We have shown previously that quiescent Chinese hamster ovary (CHO) cells are less sensitive than log phase CHO cells to the cytotoxic and DNA cleavage effects of etoposide, a drug which appears to act via DNA topoisomerase II. This loss of sensitivity was associated with a decrease in topoisomerase enzyme activity in nuclear extracts of the quiescent cells. We have now extended our observation...

2016
Shin‐Young Kang Yeon‐Gu Kim Seunghee Kang Hong Weon Lee Eun Gyo Lee

Vectors flanked by regulatory DNA elements have been used to generate stable cell lines with high productivity and transgene stability; however, regulatory elements in Chinese hamster ovary (CHO) cells, which are the most widely used mammalian cells in biopharmaceutical production, are still poorly understood. We isolated a novel gene regulatory element from CHO-K1 cells, designated E77, which ...

Journal: :Cancer research 1990
P Hentosh A R Collins L Correll A J Fornace A Giaccia C A Waldren

The CHO-UV-1 mutant, a Chinese hamster ovary cell with defective postreplication recovery of DNA, is 2- to 4-fold more sensitive than its wild-type counterpart (CHO-77256) to the lethal effects of ethylating agents and UV radiation; it is also hypersensitive (10- to 20-fold) to some DNA-methylating and -cross-linking agents. We studied the CHO-UV-1 mutant further to define its phenotype in term...

Journal: :The Journal of Cell Biology 1983
P A Charp R J Kinders T C Johnson

The ability of glycopeptides, isolated from bovine cerebral cortex, to alter cell division was studied by cell-cycle analyses. The results showed that glycopeptides arrested baby hamster kidney (BHK)-21 cells and Chinese hamster ovary (CHO) cells in the G2 phase of the cell cycle. Upon removal of the growth inhibition from arrested BHK-21 cells, the mitotic index in colchicine-treated cultures ...

Journal: :Cancer research 2005
Rudranath Persaud Hongning Zhou Sarah E Baker Tom K Hei Eric J Hall

A three-dimensional cell culture model composed of human-hamster hybrid (A(L)) and Chinese hamster ovary (CHO) cells in multicellular clusters was used to investigate low linear energy transfer (LET) radiation-induced bystander genotoxicity. CHO cells were mixed with A(L) cells in a 1:5 ratio and briefly centrifuged to produce a spheroid of 4 x 10(6) cells. CHO cells were labeled with tritiated...

Journal: :Cancer research 1999
Y Cai M H Wu S M Ludeman D J Grdina M E Dolan

Cyclophosphamide is used to treat a wide range of human malignancies. However, it is also a known carcinogen associated with induction of therapy-related leukemia and bladder cancer. The DNA repair protein, O6-alkylguanine-DNA alkyltransferase (AGT), protects cells from the toxic and mutagenic effects of O6-alkylating agents. We report here the contribution of AGT in protecting against the toxi...

2016
Shenshen Zhang Chuanrui Liu Yang Li Mustapha U. Imam Hui Huang Haohao Liu Yongjuan Xin Huizhen Zhang

Microcystin-LR (MC-LR) is a ubiquitous peptide that exhibits strong reproductive toxicity, although the mechanistic basis for such toxicity remains largely unknown. The present study was conducted to investigate the mechanisms underlying the adverse effects of exposure to MC-LR in Chinese hamster ovary (CHO) cells. The results showed that MC-LR inhibited the in vitro proliferation of CHO cells ...

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