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Generally applicable methods to purify intracellular coccidia from cell cultures and to quantify purification efficacy using quantitative PCR

机译:通常用于从细胞培养物中纯化胞内球菌并使用定量PCR定量纯化功效的方法

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The objective of this study was to evaluate the utility of a simple, efficient, and rapid method for the isolation of Sarcocystis neurona merozoites and Besnoitia darlingi tachyzoites from cultured cells. The efficacy of this purification method was assessed by microscopy, SDS-PAGE, Western blotting, immuno-fluorescence, and three novel quantitative PCR assays. Culture medium containing host cell debris and parasites was eluted through PD-10 desalting columns. This purification method was compared to alternatives employing filtration through a cellulose filter pad or filter paper. The estimated recovery of S. neurona merozoites purified by the column method was 82% (+/-3.7) of the original merozoites with 97.5% purity. In contrast, estimated recovery of S. neurona merozoites purified by filter pad and filter paper was 40% and 30% with 76% and 83% purity, respectively. The same procedures were applied to purify B. darlingi tachyzoites from cultured cells. Of the original cultured B. darlingi tachyzoites, 94% (+/-2.5) were recovered from the PD-10 column with 96.5%, purity whereas percentage recovery of B. darlingi tachyzoites purified by filter pad and filter paper were 51% and 35% with 84% and 88% purity, respectively. All described methods maintained sterility so that purified parasites could be subsequently cultured in vitro. However, purification using a PD-10 column minimized parasite loss and the loss of viability as determined by the trypan blue dye exclusion assay, the rate of parasite production, and plaque forming efficiency in cell culture. Moreover, column-purified parasites improved the sensitivity of an immuno-fluorescent (IFA) analysis and real-time quantitative PCR assays targeted to parasite 18S ribosomal DNA and hsp70 genes. This technique appears generally applicable for purifying coccidia grown in cell cultures.
机译:这项研究的目的是评估一种简单,高效,快速的方法从培养细胞中分离神经节孢子虫裂殖子和Besnoitia darlingi速殖子的效用。通过显微镜,SDS-PAGE,Western印迹,免疫荧光和三种新颖的定量PCR测定法评估了该纯化方法的功效。通过PD-10脱盐柱洗脱含有宿主细胞碎片和寄生虫的培养基。将该纯化方法与采用通过纤维素滤垫或滤纸过滤的替代方法进行了比较。通过柱法纯化的神经链霉菌裂殖子的估计回收率为原始裂殖子的82%(+/- 3.7),纯度为97.5%。相反,通过滤垫和滤纸纯化的神经链霉菌裂殖子的估计回收率分别为40%和30%,纯度分别为76%和83%。采用相同的程序从培养的细胞中纯化达氏芽孢杆菌速殖子。从PD-10色谱柱中回收的原始培养的达氏芽孢杆菌速殖子中94%(+/- 2.5)的纯度为96.5%,而经滤垫和滤纸纯化的达氏芽孢杆菌速殖子的回收率分别为51%和35 %分别具有84%和88%的纯度。所有描述的方法均保持无菌状态,因此随后可以在体外培养纯化的寄生虫。但是,使用PD-10色谱柱进行纯化可最大程度地减少寄生虫损失和活力的丧失,如台盼蓝染料排斥试验,寄生虫的产生速率和细胞培养中噬菌斑形成效率所确定的。此外,柱纯化的寄生虫提高了针对寄生虫18S核糖体DNA和hsp70基因的免疫荧光(IFA)分析和实时定量PCR分析的灵敏度。该技术似乎普遍适用于纯化在细胞培养物中生长的球菌。

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