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皮肤色素沉着的药理学诱导揭示了受光调节的神经内分泌回路。

Pharmacological induction of skin pigmentation unveils the neuroendocrine circuit regulated by light.

作者信息

Bertolesi Gabriel E, Vazhappilly Sherene T, Hehr Carrie L, McFarlane Sarah

机构信息

Department of Cell Biology and Anatomy, Hotchkiss Brain Institute, Alberta Children's Hospital Research Institute, University of Calgary, Calgary, AB, Canada.

出版信息

Pigment Cell Melanoma Res. 2016 Mar;29(2):186-98. doi: 10.1111/pcmr.12442.

Abstract

Light-regulated skin colour change is an important physiological process in invertebrates and lower vertebrates, and includes daily circadian variation and camouflage (i.e. background adaptation). The photoactivation of melanopsin-expressing retinal ganglion cells (mRGCs) in the eye initiates an uncharacterized neuroendocrine circuit that regulates melanin dispersion/aggregation through the secretion of alpha-melanocyte-stimulating hormone (α-MSH). We developed experimental models of normal or enucleated Xenopus embryos, as well as in situ cultures of skin of isolated dorsal head and tails, to analyse pharmacological induction of skin pigmentation and α-MSH synthesis. Both processes are triggered by a melanopsin inhibitor, AA92593, as well as chloride channel modulators. The AA9253 effect is eye-dependent, while functional data in vivo point to GABAA receptors expressed on pituitary melanotrope cells as the chloride channel blocker target. Based on the pharmacological data, we suggest a neuroendocrine circuit linking mRGCs with α-MSH secretion, which is used normally during background adaptation.

摘要

光调节的皮肤颜色变化是无脊椎动物和低等脊椎动物的一个重要生理过程,包括日常的昼夜节律变化和伪装(即背景适应)。眼睛中表达黑视蛋白的视网膜神经节细胞(mRGCs)的光激活启动了一个未被表征的神经内分泌回路,该回路通过分泌α-黑素细胞刺激激素(α-MSH)来调节黑色素的分散/聚集。我们开发了正常或摘除眼球的非洲爪蟾胚胎的实验模型,以及分离的头部和尾部皮肤的原位培养物,以分析皮肤色素沉着和α-MSH合成的药理学诱导。这两个过程都由黑视蛋白抑制剂AA92593以及氯离子通道调节剂触发。AA9253的作用依赖于眼睛,而体内功能数据表明垂体促黑素细胞上表达的GABAA受体是氯离子通道阻滞剂的作用靶点。基于药理学数据,我们提出了一个将mRGCs与α-MSH分泌联系起来的神经内分泌回路,该回路在背景适应过程中正常使用。

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