首页> 外文期刊>Journal of Virological Methods >Adaptation of a Madin-Darby canine kidney cell line to suspension growth in serum-free media and comparison of its ability to produce avian influenza virus to Vero and BHK21 cell lines.
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Adaptation of a Madin-Darby canine kidney cell line to suspension growth in serum-free media and comparison of its ability to produce avian influenza virus to Vero and BHK21 cell lines.

机译:Madin-Darby犬肾细胞系适应于无血清培养基中的悬浮生长,并比较其对Vero和BHK21细胞产生禽流感病毒的能力。

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Madin-Darby canine kidney (MDCK) cells are currently considered for influenza vaccine manufacturing. A drawback of these cells is their anchorage dependent growth, which greatly complicates process scale-up. In this paper a novel MDCK cell line (MDCK-SFS) is described that grows efficiently in suspension and retained high expression levels of both alpha -2,6 and alpha -2,3 sialic acid receptors, which bind preferably to human and avian influenza viruses, respectively. The production of avian influenza virus by BHK21, Vero and MDCK-SFS cell lines was compared. Although BHK21 cells consisted of two populations, one of which lacks the alpha -2,3 receptor, they supported the replication of two influenza strains to high titres. However, BHK21 cells are generally not applicable for influenza production since they supported the replication of six further strains poorly. MDCK-SFS cells yielded the highest infectious virus titres and virus genome equivalent concentration for five of the eight influenza strains analyzed and the highest hemagglutination activity for all eight virus strains. Taken together with their suitability for suspension growth this makes the MDCK-SFS cell line potentially useful for large scale influenza virus production.Digital Object Identifier http://dx.doi.org/10.1016/j.jviromet.2010.09.029
机译:目前考虑将Madin-Darby犬肾(MDCK)细胞用于流感疫苗的生产。这些细胞的缺点是其锚定依赖性生长,这极大地增加了工艺规模。在本文中,描述了一种新型MDCK细胞系(MDCK-SFS),该细胞可在悬浮液中高效生长并保持高表达水平的α-2,6和α-2,3唾液酸受体,这些受体优选与人和禽流感结合病毒。比较了由BHK21,Vero和MDCK-SFS细胞系产生的禽流感病毒。尽管BHK21细胞由两个种群组成,其中一个缺乏α-2,3受体,但它们支持将两种流感病毒株复制到高滴度。然而,BHK21细胞通常不适用于流感的产生,因为它们不能很好地支持另外六个菌株的复制。对于所分析的八种流感病毒株中的五种,MDCK-SFS细胞产生最高的传染性病毒滴度和病毒基因组当量浓度,而对于所有八种病毒株而言,其血凝活性最高。结合其对悬浮液生长的适应性,这使得MDCK-SFS细胞系潜在地可用于大规模流感病毒生产。数字对象标识符http://dx.doi.org/10.1016/j.jviromet.2010.09.029

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