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用于体外疟原虫肝期研究的小鼠肝细胞的改良分离方法。

Improved isolation of murine hepatocytes for in vitro malaria liver stage studies.

作者信息

Gonçalves Lígia A, Vigário Ana M, Penha-Gonçalves Carlos

机构信息

Instituto Gulbenkian de Ciência, Rua da Quinta Grande, 6, 2781-901 Oeiras, Portugal.

出版信息

Malar J. 2007 Dec 20;6:169. doi: 10.1186/1475-2875-6-169.

Abstract

BACKGROUND

Primary hepatocyte cultures are a valuable tool for the understanding of cellular and molecular phenomena occurring during malaria liver stage. This paper describes an improved perfusion/dissociation procedure to isolate hepatocytes from mouse liver that is suitable for malaria studies and allows reproducible preparation of primary hepatocytes with consistent cell yields and controlled purity.

RESULTS

This protocol is a detailed description of a technique to isolate and culture mouse hepatocytes and represents an improvement over previous descriptions of hepatocyte isolation for malaria studies, regarding three technical aspects: (1) dissociation reagents choice; (2) cell separation gradient and (3) cell purity control. Cell dissociation was optimized for a specific collagenase digestion media. The cell dissociation step was improved by using a three-layer discontinuous gradient. A cell purity check was introduced to monitor the expression of CD95 on hepatocytes using flow cytometry methods.

CONCLUSION

The procedure described allows reproducible recovery of one to three million hepatocytes per preparation with cell purity of about 90% as determined by FACS analysis. Completion of the protocol is usually achieved in about four hours per preparation and pooling is suggested for multiple preparations of larger number of cells.

摘要

背景

原代肝细胞培养是理解疟疾肝期细胞和分子现象的重要工具。本文描述了一种改进的灌注/解离程序,用于从小鼠肝脏中分离肝细胞,该程序适用于疟疾研究,能够以一致的细胞产量和可控的纯度可重复地制备原代肝细胞。

结果

该方案详细描述了分离和培养小鼠肝细胞的技术,在三个技术方面对先前用于疟疾研究的肝细胞分离方法进行了改进:(1)解离试剂的选择;(2)细胞分离梯度;(3)细胞纯度控制。针对特定的胶原酶消化培养基优化了细胞解离。通过使用三层不连续梯度改进了细胞解离步骤。引入了细胞纯度检查,以使用流式细胞术方法监测肝细胞上CD95的表达。

结论

所述程序每次制备可重复回收100万至300万个肝细胞,通过FACS分析确定细胞纯度约为90%。该方案通常每次制备约4小时完成,建议对多个大量细胞制备进行合并。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f6f/2244635/34b2b8e58868/1475-2875-6-169-1.jpg

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