利用秀丽隐杆线虫穿越虫脑屏障探索人类精神疾病的基本原理。

Molecular Neuropsychiatry Pub Date : 2018-02-01 Epub Date: 2018-01-11 DOI:10.1159/000485423
Donard S Dwyer
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引用次数: 19

摘要

内表型和研究领域标准(RDoC)代表了最近将精神疾病分解为与遗传影响更密切相关的基本症状群或生物标志物的努力。通过更进一步的研究,这些生物标记物可以被还原为原生表型——在进化过程中保守的内表型——在包括秀丽隐杆线虫和果蝇在内的低等生物中也有对应的表型。秀丽隐杆线虫中增加精神疾病风险的基因的惊人保守性支持了该模型系统与精神病学研究的相关性。在这里,我回顾了几种与社会性、自发性/快感缺乏、脉冲前抑制和厌食症相关的原型表型的特征。有趣的是,秀丽隐杆线虫中类似的行为缺陷也可以通过用于治疗人类相应症状的精神药物得到纠正,并且/或者是由相同的神经递质介导的。总的来说,我们可以通过研究更简单的神经系统来了解复杂的人类大脑,这些神经系统指导着进化上保守的行为。当我们开始认识到自身进化的痕迹时,从模式生物中产生重要新见解的潜力似乎是无限的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Crossing the Worm-Brain Barrier by Using <i>Caenorhabditis elegans</i> to Explore Fundamentals of Human Psychiatric Illness.

Crossing the Worm-Brain Barrier by Using <i>Caenorhabditis elegans</i> to Explore Fundamentals of Human Psychiatric Illness.

Crossing the Worm-Brain Barrier by Using Caenorhabditis elegans to Explore Fundamentals of Human Psychiatric Illness.

Endophenotypes and Research Domain Criteria (RDoC) represent recent efforts to deconvolute psychiatric illnesses into fundamental symptom clusters or biological markers more closely linked to genetic influences. By taking this one step farther, these biomarkers can be reduced to protophenotypes - endophenotypes conserved during evolution - with counterparts in lower organisms including Caenorhabditis elegans and Drosophila. Striking conservation in C. elegans of genes that increase the risk for mental illness bolsters the relevance of this model system for psychiatric research. Here, I review the characterization of several protophenotypes that are relevant for asociality, avolition/anhedonia, prepulse inhibition, and anorexia. Interestingly, the analogous behavioral defects in C. elegans are also corrected by psychotropic drugs used to treat the corresponding symptoms in man and/or are mediated by the same neurotransmitters. Overall, there is much we can learn about the complex human brain by studying simpler nervous systems directing evolutionarily conserved behaviors. The potential for generating important new insights from model organisms appears limitless when we begin to recognize the vestiges of evolution in ourselves.

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