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使用无动物源成分培养基建立体外培养体系。

Establishment of In Vitro Culture Using Medium Free of Animal Products.

作者信息

Álvarez Martínez Jesús A, Figueroa Millán Julio V, Ueti Massaro W, Rojas-Martínez Carmen

机构信息

Babesia Unit-CENID-Salud Animal e Inocuidad, INIFAP, Carr. Fed. Cuernavaca-Cuautla No. 8534, Col. Progreso, Jiutepec, Morelos C.P. 62550, Mexico.

Agricultural Research Service-Animal Disease Research Unit, The US Department of Agriculture, Pullman, WA 99164, USA.

出版信息

Pathogens. 2021 Jun 19;10(6):770. doi: 10.3390/pathogens10060770.

Abstract

, an etiological agent of bovine babesiosis, causes a significant burden to the cattle industry worldwide. The most efficient method to mitigate bovine babesiosis is a live vaccine produced by serial passage in splenectomized cattle. However, there are several concerns regarding live vaccine production, including variation between batches and the use of many animals. In this study, we report a -SF strain continuously cultured in a medium free of components of animal origin enriched with a chemically defined lipid mixture (CD lipid mixture) and the use of a perfusion bioreactor to harvest a large amount of . Six culture media were compared, including VP-SFM, CD-CHO, CD-Hydrolyzed, CD-CHO, SFM, and ADMEM/F12. We found that the VP-SFM medium performed the best for growth, with a maximum percentage of parasitized erythrocytes (PPE) of 8.6%. The effect of six dilutions of a commercial mixture of CD lipids added to VP-SFM showed that the CD lipid mixture at a dilution of 1:100 had the best growth curve, with a maximum PPE of 13.9%. Propagation of the in vitro culture was scaled up in a perfusion bioreactor using VP-SFM with a CD lipid mixture, and the PPE reached over 32%. The continuous in vitro culture in a medium free of animal origin components could potentially reduce and replace the use of animals to produce a reagent for diagnostics and live vaccines to control bovine babesiosis.

摘要

牛巴贝斯虫病的病原体,给全球养牛业带来了巨大负担。减轻牛巴贝斯虫病的最有效方法是通过在脾切除的牛中连续传代生产的活疫苗。然而,关于活疫苗生产存在一些担忧,包括批次间的差异以及使用大量动物。在本研究中,我们报告了一种在不含动物源成分并富含化学定义脂质混合物(CD脂质混合物)的培养基中连续培养的-SF菌株,以及使用灌注生物反应器收获大量该菌株的情况。比较了六种培养基,包括VP-SFM、CD-CHO、CD-水解物、CD-CHO、SFM和ADMEM/F12。我们发现VP-SFM培养基对该菌株生长表现最佳,寄生红细胞的最大百分比(PPE)为8.6%。向VP-SFM中添加六种稀释度的市售CD脂质混合物的效果表明,稀释度为1:100的CD脂质混合物具有最佳的生长曲线,最大PPE为13.9%。使用含有CD脂质混合物的VP-SFM在灌注生物反应器中扩大体外培养规模,PPE达到32%以上。在不含动物源成分的培养基中进行连续体外培养可能会减少并替代用于生产诊断试剂和控制牛巴贝斯虫病的活疫苗的动物使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6967/8235554/4e40cea5bd51/pathogens-10-00770-g001.jpg

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