首页> 外文期刊>Journal of Neuroscience Methods >Morphological features and responses to AMPA receptor-mediated excitotoxicity of mouse motor neurons: comparison in purified, mixed anterior horn or motor neuron/glia cocultures.
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Morphological features and responses to AMPA receptor-mediated excitotoxicity of mouse motor neurons: comparison in purified, mixed anterior horn or motor neuron/glia cocultures.

机译:小鼠运动神经元的形态特征和对AMPA受体介导的兴奋性毒性的反应:纯化,混合的前角或运动神经元/神经胶质共培养物中的比较。

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摘要

Primary motor neuron cultures are widely used as in vitro model to study the early mechanisms involved in the aetiology of amyotrophic lateral sclerosis. In this study, we directly compared the morphological features and the responses to AMPA receptor (AMPAR) activation of mouse spinal cord motor neurons under different culture conditions (OptiPrep-purified, mixed anterior horn or motor neuron/glia cocultures). Motor neurons cocultured with a confluent glial layer had significant improvements in axonal length and in somata perimeter and area, compared both to mixed anterior horn cultures and to purified cultures, suggesting that the presence of more "mature" glial cells was determinant to obtain healthier motor neurons. By immuno-cytochemical assays we found that both in mixed anterior horn cultures and in cocultures, lower AMPA (0.3muM) or kainate (5muM) concentrations, but not the higher (1 or 15muM, respectively), induced classical apoptotic events such as the nuclear fragmentation, the membrane externalization of phosphatidylserine residues and the activation of caspases-9 and -3. The morphological features and the different degenerative pathways induced by AMPAR agonist concentrations suggest that the experimental conditions used for in vitro studies are key factors that should be deeply considered to obtain more valid and reproducible results.
机译:原代运动神经元培养被广泛用作体外模型,以研究肌萎缩性侧索硬化病因的早期机制。在这项研究中,我们直接比较了在不同培养条件下(OptiPrep纯化,混合的前角或运动神经元/神经胶质细胞共培养)小鼠脊髓运动神经元的形态特征和对AMPA受体(AMPAR)活化的反应。与混合的前角培养物和纯化培养物相比,与融合的神经胶质层共培养的运动神经元在轴突长度,躯体周长和面积方面都有显着改善,这表明存在更多的“成熟”神经胶质细胞是获得更健康运动的决定因素神经元。通过免疫细胞化学分析,我们发现在混合的前角培养物中和在共培养物中,较低的AMPA(0.3μM)或海藻酸盐(5μM)浓度,但不较高(分别为1或15μM),会诱导经典的凋亡事件,例如核碎裂,磷脂酰丝氨酸残基的膜外在化以及caspases-9和-3的活化。 AMPAR激动剂浓度诱导的形态学特征和不同的变性途径表明,用于体外研究的实验条件是应深入考虑以获得更有效和可再现结果的关键因素。

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