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Blurring the boundaries: developmental and activity-dependent determinants of neural circuits

机译:模糊边界:神经回路的发育和活动决定因素

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摘要

The human brain comprises approximately 100 billion neurons that express a diverse, and often subtype-specific, set of neurotransmitters and voltage-gated ion channels. Given this enormous complexity, a fundamental question is how is this achieved? The acquisition of neurotransmitter phenotype was viewed as being set by developmental programs ‘hard wired’ into the genome. By contrast, the expression of neuron-specific ion channels was considered to be highly dynamic (i.e., ‘soft wired’) and shaped largely by activity-dependent mechanisms. Recent evidence blurs this distinction by showing that neurotransmitter phenotype can be altered by activity and that neuron type-specific ion channel expression can be set, and perhaps limited by, developmental programs. Better understanding of these early regulatory mechanisms may offer new avenues to avert the behavioral changes that are characteristic of many mental illnesses.
机译:人脑包含大约1000亿个神经元,这些神经元表达了多种多样且通常为亚型的神经递质和电压门控离子通道。鉴于这种巨大的复杂性,一个基本问题是如何实现的?神经递质表型的获得被认为是由“硬连线”到基因组的发育程序设定的。相比之下,神经元特异性离子通道的表达被认为是高度动态的(即“软连线”),并且很大程度上受活动依赖机制的影响。最近的证据通过显示神经递质表型可以被活性改变,并且神经元类型特定的离子通道表达可以被设定,并且可能受到发育程序的限制,从而模糊了这种区别。对这些早期调节机制的更好理解可能为避免许多精神疾病所特有的行为改变提供新途径。

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