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首页> 外文期刊>Biotechnology Progress >Insect cell culture medium supplementation with fetal bovine serum and bovine serum albumin: Effects on baculovirus adsorption and infection kinetics
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Insect cell culture medium supplementation with fetal bovine serum and bovine serum albumin: Effects on baculovirus adsorption and infection kinetics

机译:补充胎牛血清和牛血清白蛋白的昆虫细胞培养基:对杆状病毒吸附和感染动力学的影响

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摘要

The effects of insect cell culture. medium supplementation with FBS were investigated. BSA was found to be the factor responsible for the increased baculovirus infection rate of FBS-supplemented cultures in a concentration-dependent form up to 25 g L-1. Lower rates of baculovirus binding to cells were observed with FBS- and BSA-supplemented cultures compared with infections carried out in serum-free media. Virus attachment constants were found to depend on medium matrix composition. An efficiency factor dependent on the medium matrix composition was introduced to account for these effects, and a mathematical model was developed to describe the virus-cell interactions. It was shown that BSA acts by minimizing the nonspecific virus binding leading to an increased cell infection rate. Cell specific Porcine paruovirus virus-like particles (PPV-VLPs) expression was unaffected by medium supplementation pointing out that BSA and/or FBS affects mainly the initial phase of the baculovirus infection cycle. Implications for process definition are discussed.
机译:昆虫细胞培养的影响。研究了补充FBS的培养基。发现BSA是导致FBS补充的培养物中杆状病毒感染率增加的因素,浓度高达25 g L-1,呈浓度依赖性。与在无血清培养基中进行的感染相比,在添加了FBS和BSA的培养物中观察到杆状病毒与细胞的结合率较低。发现病毒附着常数取决于中等基质组成。引入了依赖于中等基质组成的效率因子来解释这些影响,并开发了一个数学模型来描述病毒与细胞的相互作用。结果表明,BSA通过最小化非特异性病毒结合而起作用,从而导致细胞感染率增加。细胞特异性猪细小病毒样病毒颗粒(PPV-VLPs)的表达不受培养基补充的影响,指出BSA和/或FBS主要影响杆状病毒感染周期的初始阶段。讨论了过程定义的含义。

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