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Washing Bacteria by Centrifugation Through a Water-Immiscible Layer of Silicones

机译:通过与水不混溶的有机硅离心分离来洗涤细菌

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Hurwitz, Charles (Veterans Administration Hospital, Albany, N.Y.), Catherine B. Braun, and Richard A. Peabody. Washing bacteria by centrifugation through a water-immiscible layer of silicones. J. Bacteriol. >90:1692–1695. 1965.—A method is described which enables the separation of cells from aqueous suspension without altering the internal aqueous environment of the cells. The method consists of centrifuging the cells from the aqueous environment through a more dense, immiscible solvent consisting of a mixture of two silicones. A thin film of the aqueous environment equal to 7 × 10−13 ml per cell remains with the bacteria during the separation procedure. The method by which this volume was determined is described. The procedure itself has no measurable effect on viability or permeability of the cells and permits recovery of about 90% of the cells from the aqueous environment. With this method, it has been found that the intracellular water volume of Escherichia coli ML 35 accessible to sucrose or inositol is 1.96 × 10−12 ml ± 6%, or 85% of the total volume of the cell determined by visual measurement.
机译:查尔斯·赫维兹(纽约州奥尔巴尼市退伍军人管理医院),凯瑟琳·B·布劳恩和理查德·皮博迪。通过与水不混溶的有机硅层离心来洗涤细菌。 J.细菌。 > 90: 1692-1695。 1965年。描述了一种方法,该方法能够从水悬液中分离细胞,而不会改变细胞的内部水环境。该方法包括通过更稠密,不混溶的溶剂(由两种有机硅的混合物组成)从水性环境中离心细胞。在分离过程中,细菌残留的水环境薄膜等于每个细胞7×10 -13 ml。描述确定该体积的方法。该过程本身对细胞的活力或通透性没有可测量的影响,并允许从水性环境中回收约90%的细胞。通过这种方法,发现蔗糖或肌醇可及的大肠杆菌ML 35的细胞内水量为1.96×10 -12 ml±6%,或总体积的85%。通过目测确定细胞。

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