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一种在密度梯度上识别和分离人血单核细胞的方法。

A method for the recognition and separation of human blood monocytes on density gradients.

作者信息

Loos H, Blok-Schut B, van Doorn R, Hoksbergen R, Brutel de la Rivière A, Meerhof L

出版信息

Blood. 1976 Nov;48(5):731-42.

PMID:788815
Abstract

The density distribution of human mononuclear blood leukocytes was studied in order to define the optimal conditions for the separation of monocytes and lymphocytes by isopycnic centrifugation. Under standardized conditions, two populations of cells with partially overlapping, normally distributed densities were consistently found. The cells with the lowest density were recognized as monocytes, using phagocytosis and size distribution analysis as criteria. Since the density of monocytes continuously increased during the centrifugation, optimal separation of monocytes and lymphocytes could only be achieved by limiting the time of centrifugation to 10 min at 2200 g and 4 degrees C. The separation on discontinuous density gradients decreased when the load exceeded 8 X 10(6) mononuclear cells per sq cm. Analysis of the composition of the two cell populations obtained after separation on a three-layer discontinuous gradient revealed that the contamination of the monocytes with lymphocytes was due to the partial overlapping density distributions of both cell types. A small and a large scale method for isolation of monocytes from blood on discontinuous density gradients are presented. Under the described conditions, a preparation of functionally intact monocytes can be obtained which is comparable, both in yield and purity, to those obtained by methods based on surface adherence without the drawbacks of the latter methods.

摘要

为了确定通过等密度离心分离单核细胞和淋巴细胞的最佳条件,对人单核血细胞白细胞的密度分布进行了研究。在标准化条件下,始终发现有两个密度呈正态分布且部分重叠的细胞群。以吞噬作用和大小分布分析为标准,密度最低的细胞被识别为单核细胞。由于单核细胞的密度在离心过程中持续增加,只有将离心时间限制在2200g和4℃下10分钟,才能实现单核细胞和淋巴细胞的最佳分离。当负载超过每平方厘米8×10⁶个单核细胞时,在不连续密度梯度上的分离效果会下降。对在三层不连续梯度上分离后获得的两个细胞群的组成分析表明,单核细胞被淋巴细胞污染是由于两种细胞类型的密度分布部分重叠所致。本文介绍了一种在不连续密度梯度上从血液中分离单核细胞的小规模和大规模方法。在所描述的条件下,可以获得功能完整的单核细胞制剂,其产量和纯度与基于表面黏附的方法相当,且没有后一种方法的缺点。

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