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与培养皿相比,毛细管克隆的人类肿瘤的接种效率有所提高。

Improved plating efficiencies for human tumors cloned in capillary tubes versus Petri dishes.

作者信息

Von Hoff D D, Forseth B J, Huong M, Buchok J B, Lathan B

出版信息

Cancer Res. 1986 Aug;46(8):4012-7.

PMID:3731071
Abstract

As now constituted, the human tumor cloning assay performed in Petri dishes has several limitations including: (a) not all patients' tumors form colonies in the assay; (b) the plating efficiencies (number of colonies formed/number of cells plated) are low; and (c) a large number of tumor cells are required to perform drug sensitivity testing. In this study the use of capillary tubes, as vessels in which to clone human tumors, is compared to the use of 35-mm Petri dishes. In 100-microliters capillary tubes the optimal plating efficiencies are found with 50,000 cells/vessel (500,000 cells/ml), while in 35-mm Petri dishes the optimal plating efficiencies are found with 500,000 cells/vessel (250,000 cells/ml). In head to head comparisons of plating efficiencies of 183 human tumors (18 different histological types), the median plating efficiency was 5-fold higher (range, 1.16-37.00) for the capillary tubes than for the Petri dishes. This improved plating efficiency was noted for nearly all of the histological tumor types examined. The improved plating efficiencies noted with the capillary system indicate that the Petri dish method may be too selective and not reflect the total number of clonogenic units in a human tumor. In addition, the higher plating efficiencies noted with the capillary system may be exploited to solve some of the problems noted with the conventional Petri dish method.

摘要

就目前的构成而言,在培养皿中进行的人类肿瘤克隆试验有几个局限性,包括:(a)并非所有患者的肿瘤在试验中都能形成集落;(b)接种效率(形成的集落数/接种的细胞数)很低;(c)进行药物敏感性测试需要大量肿瘤细胞。在本研究中,将毛细管作为克隆人类肿瘤的容器与使用35毫米培养皿进行了比较。在100微升的毛细管中,每管接种50000个细胞(每毫升500000个细胞)时可获得最佳接种效率,而在35毫米培养皿中,每皿接种500000个细胞(每毫升250000个细胞)时可获得最佳接种效率。在对183个人类肿瘤(18种不同组织学类型)的接种效率进行直接比较时,毛细管的中位接种效率比培养皿高5倍(范围为1.16 - 37.00)。几乎所有检查的组织学肿瘤类型都出现了这种接种效率的提高。毛细管系统所显示的接种效率提高表明,培养皿方法可能过于有选择性,不能反映人类肿瘤中克隆形成单位的总数。此外,毛细管系统所显示的较高接种效率可用于解决传统培养皿方法所存在的一些问题。

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