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小鼠新皮质细胞培养中小胶质细胞的发育

Development of microglia in mouse neopallial cell cultures.

作者信息

Neuhaus J, Fedoroff S

机构信息

Department of Anatomy, University of Saskatchewan, Saskatoon, Canada.

出版信息

Glia. 1994 May;11(1):11-7. doi: 10.1002/glia.440110104.

Abstract

Microglia develop in cultures initiated from disaggregated neopallial cells of newborn C3H/HeJ mice when the cultures are subjected to nutritional deprivation for 10 or more days (Hao et al: Int J Dev Neurosci 9:1-14, 1991). In the present experiments, the cultures were pulsed with BrdU for 3 hours at different times during incubation and then the cells were immunoreacted with antibodies against BrdU, GFAP, and CR3 receptor. The dividing cells (BrdU+) were found to be either GFAP+ or GFAP-, but not Mac-1+/BrdU+. Infection of proliferating cells after 2 or more days of incubation with replication-deficient retroviral vector containing E. coli lacZ reporter gene resulted in many labeled astroglia cell clones but no labeled microglia. However, when cells were infected right after disaggregation of neopallium, labeled Mac-1+ microglia were found. When Mac-1+ cells in a suspension of disaggregated neopallial cells were killed using complement mediated lysis before setting up the cultures, Mac-1+ microglia developed, in spite of the treatment. We conclude that in cultures initiated from mouse neopallium there are MAC-1-/GFAP- microglia progenitor cells which do not divide in nutritionally deprived cultures but can transform into Mac-1+ microglia under the influence of astroglia-derived trophic factors. Microglia, which become Mac-1+ (i.e., express CR3 receptor), proliferate extensively in the presence of CSF-1 (which is produced by astroglia).

摘要

当从新生C3H/HeJ小鼠的新皮质细胞解离后开始培养,并使培养物经历10天或更长时间的营养剥夺时,小胶质细胞会在培养物中发育(郝等人:《国际发育神经科学杂志》9:1 - 14,1991年)。在本实验中,在培养期间的不同时间用BrdU脉冲处理培养物3小时,然后用抗BrdU、GFAP和CR3受体的抗体对细胞进行免疫反应。发现分裂细胞(BrdU+)要么是GFAP+,要么是GFAP-,但不是Mac-1+/BrdU+。用含有大肠杆菌lacZ报告基因的复制缺陷型逆转录病毒载体培养2天或更长时间后感染增殖细胞,结果产生了许多标记的星形胶质细胞克隆,但没有标记的小胶质细胞。然而,当在新皮质解离后立即感染细胞时,发现了标记的Mac-1+小胶质细胞。当在建立培养物之前使用补体介导的裂解杀死解离的新皮质细胞悬液中的Mac-1+细胞时,尽管进行了这种处理,Mac-1+小胶质细胞仍会发育。我们得出结论,在从小鼠新皮质开始的培养物中,存在MAC-1-/GFAP-小胶质细胞祖细胞,它们在营养剥夺的培养物中不分裂,但在星形胶质细胞衍生的营养因子的影响下可以转化为Mac-1+小胶质细胞。变成Mac-1+(即表达CR3受体)的小胶质细胞在CSF-1(由星形胶质细胞产生)存在的情况下会大量增殖。

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