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利用速度沉降技术将人淋巴细胞分离为G1、S和G2细胞周期群体。

Separation of human lymphoid cells into G 1 , S, and G 2 cell cycle populations by use of a velocity sedimentation technique.

作者信息

Everson L K, Buell D N, Rogentine G N

出版信息

J Exp Med. 1973 Feb 1;137(2):343-58. doi: 10.1084/jem.137.2.343.

Abstract

Human lymphoid tissue culture cells can be separated according to cell size and corresponding cell cycle phase with a velocity sedimentation centrifugation method employing a continuous 5-20% wt/wt Ficoll gradient. A 7-fold increase in streaming limit was achieved by placing a buffer zone of isosmolar 5% Ficoll on top of the gradient before application of the cell load. The various pooled populations of cells from upper, middle, and lower areas of the gradient were characterized using autoradiographic, TCA-precipitable (3)H]thymidine incorporation, and Fuelgen microspectrophotometric methods. The upper range of the gradient contains cells in the G(1) cell cycle phase; the lower range, cells in the G(2) phase; cells found in the middle of the gradient belong largely to the S phase of the cell cycle. These gradient-separated cell pools contained relatively little contamination with cells from other phases of the cell cycle and, when explanted from the gradient into fresh growth media, showed growth patterns characteristic of synchronized cell populations. This system of cell separation provides a useful tool for investigating the relationship of the cell cycle to surface membrane and metabolic characteristics in human lymphoid cell culture systems.

摘要

人淋巴细胞组织培养细胞可以通过使用连续5-20%(重量/重量)的菲可梯度的速度沉降离心法,根据细胞大小和相应的细胞周期阶段进行分离。通过在加载细胞之前,在梯度顶部放置等渗5%菲可的缓冲区,使流动极限提高了7倍。使用放射自显影、三氯乙酸可沉淀的[³H]胸苷掺入和福尔根显微分光光度法对梯度上部、中部和下部区域的各种汇集细胞群体进行了表征。梯度的上部范围包含处于G₁细胞周期阶段的细胞;下部范围包含处于G₂期的细胞;在梯度中间发现的细胞主要属于细胞周期的S期。这些经梯度分离的细胞池受细胞周期其他阶段的细胞污染相对较少,并且当从梯度中移出并接种到新鲜生长培养基中时,显示出同步细胞群体的生长模式特征。这种细胞分离系统为研究人淋巴细胞培养系统中细胞周期与表面膜及代谢特征之间的关系提供了一个有用的工具。

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Cell separation by velocity sedimentation of postnatal mouse cerebellum.
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Separation of cells by velocity sedimentation.通过速度沉降法分离细胞。
J Cell Physiol. 1969 Jun;73(3):191-201. doi: 10.1002/jcp.1040730305.

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