首页> 美国卫生研究院文献>The Journal of Neuroscience >Development of septal cholinergic neurons in culture: plating density and glial cells modulate effects of NGF on survival fiber growth and expression of transmitter-specific enzymes
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Development of septal cholinergic neurons in culture: plating density and glial cells modulate effects of NGF on survival fiber growth and expression of transmitter-specific enzymes

机译:培养中间隔胆碱能神经元的发育:板密度和神经胶质细胞调节NGF对存活纤维生长和递质特异性酶表达的影响

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摘要

To characterize the role of NGF in the development of forebrain cholinergic neurons, we established primary cell culture systems to grow these cells under controlled in vitro conditions. Cultures of dissociated cells were prepared from the septal area of fetal (E17) rats, which contained part of the group of basal forebrain cholinergic neurons. Cultures were treated either with NGF (100 ng/ml) or with an antiserum against NGF (1:500 dilution). To assess the influence of non- neuronal cells, 2 types of high-density cultures were prepared: mixed neuronal-glial cultures and pure neuronal cultures. Cholinergic neurons were identified using choline acetyltransferase (ChAT) immunocytochemistry and AChE cytochemistry. Receptors for NGF (NGF-R) were located immunocytochemically using monoclonal antibodies against rat NGF-R. We report that, first, NGF-R are exclusively localized on cholinergic neurons in septal cultures. All neurons labeled with antibodies against NGF-R also contained AChE. Twenty-one percent of all AChE-positive neurons were not stained in NGF-R immunocytochemistry (AChE has earlier been shown to be colocalized with ChAT in septal cultures). Second, NGF treatment increases and anti-NGF treatment reduces the number of AChE-positive neurons in cultures of low plating density, suggesting that NGF promotes survival of septal cholinergic neurons in these cultures. In cultures of high plating density, NGF increased the number of NGF-R and ChAT-positive neurons without affecting the number of AChE-positive neurons in these cultures. These results suggest that exogenous NGF is not required for survival of cholinergic neurons in high-density cultures but stimulates the expression of ChAT and NGF-R. Third, NGF stimulates fiber growth of septal cholinergic neurons, as assessed by computerized image analysis of AChE-positive neurons. Fourth, NGF specifically increases ChAT and AChE activities in septal cultures. These NGF-mediated increases in enzyme activities are more pronounced when neurons are grown together with glial cells. In pure neuronal cultures, NGF increased ChAT and AChE activities by 101 and 16%, and in mixed neuronal-glial cultures by 318 and 87%, respectively. Anti-NGF blocked the effects of NGF but failed to reduce ChAT and AChE activities below control levels in cultures of high plating density. Fifth, astrocytes attenuate the expression of ChAT and AChE by septal neurons in the absence of NGF.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:为了表征NGF在前脑胆碱能神经元发育中的作用,我们建立了原代细胞培养系统以在受控的体外条件下生长这些细胞。从胎儿(E17)大鼠的中隔区制备离体细胞培养物,该区包含基底前脑胆碱能神经元组的一部分。用NGF(100 ng / ml)或抗NGF的抗血清(1:500稀释)处理培养物。为了评估非神经元细胞的影响,制备了两种类型的高密度培养物:混合神经元-神经胶质培养物和纯神经元培养物。使用胆碱乙酰基转移酶(ChAT)免疫细胞化学和AChE细胞化学鉴定胆碱能神经元。使用针对大鼠NGF-R的单克隆抗体通过免疫细胞化学法确定NGF的受体(NGF-R)。我们报告,首先,NGF-R专门定位在间隔培养物中的胆碱能神经元上。所有标记有抗NGF-R抗体的神经元也都含有AChE。在NGF-R免疫细胞化学中未染色的所有AChE阳性神经元中有21%(较早的研究表明,隔室培养物中AChE与ChAT共定位)。其次,在低平板密度培养物中,NGF处理增加并且抗NGF处理减少了AChE阳性神经元的数量,这表明NGF促进了这些培养物中间隔胆碱能神经元的存活。在高接种密度的培养物中,NGF增加了NGF-R和ChAT阳性神经元的数量,而不会影响这些培养物中AChE阳性神经元的数量。这些结果表明,在高密度培养物中胆碱能神经元的存活并不需要外源性NGF,而是刺激ChAT和NGF-R的表达。第三,如通过AChE阳性神经元的计算机图像分析所评估,NGF刺激间隔胆碱能神经元的纤维生长。第四,NGF会特别增加间隔培养物中的ChAT和AChE活性。当神经元与神经胶质细胞一起生长时,这些NGF介导的酶活性增加更为明显。在纯神经元培养物中,NGF将ChAT和AChE活性分别提高101%和16%,在混合神经元-神经胶质培养物中分别提高318和87%。抗-NGF阻断了NGF的作用,但在高平板密度培养物中未能将ChAT和AChE活性降低到控制水平以下。第五,在缺乏NGF的情况下,星形胶质细胞减弱了间隔神经元ChAT和AChE的表达。(摘要截短了400字)

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