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Skin too thin? The developing utility of zebrafish skin (neuro)pharmacology for CNS drug discovery research

机译:皮肤太薄了?斑马鱼皮肤(神经)药理学在中枢神经系统药物发现研究中的开发应用

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摘要

Skin coloration can be affected by many genetic, environmental and pharmacological factors. Zebrafish (Danio rerio) are a useful and versatile model organism in biomedical research due to their genetic tractability, physiological homology to mammals, low cost, reproducibility and high throughput. Zebrafish coloration is mediated by chromatophores - the skin color pigment cells largely controlled by endocrine and neural mechanisms. The characteristic darkening of zebrafish skin is caused by the dispersion (and paling - by aggregation) of melanosomes (pigment-containing organelles), which show high homology to mammalian structures. Various pharmacological agents potently affect zebrafish coloration - the phenotype that often accompanies behavioral effects of the drugs, and may be used for drug discovery. Although zebrafish behavior and skin responses are usually not directly related, they share common regulatory (neural, endocrine) mechanisms, and therefore may be assessed in parallel during psychotropic drug screening. For example, some psychoactive drugs can potently affect zebrafish skin coloration. Can we use this knowledge to refine phenotype-driven psychotropic drug discovery? Here, we present current models using zebrafish skin coloration assays, and discuss how these models may be applied to enhance in vivo CNS drug discovery.
机译:皮肤颜色会受到许多遗传,环境和药理因素的影响。斑马鱼(Danio rerio)的遗传易处理性,与哺乳动物的生理同源性,低成本,可重复性和高通量,在生物医学研究中是一种有用且用途广泛的模型生物。斑马鱼的着色是由染色体介导的-皮肤色素细胞主要受内分泌和神经机制控制。斑马鱼皮肤的特征性变黑是由黑素体(含色素的细胞器)的分散(和呈团状)引起的,该黑素体与哺乳动物的结构具有高度的同源性。各种药理学试剂会有效地影响斑马鱼的颜色-斑马鱼的颜色通常伴随着药物的行为效应,可用于药物开发。尽管斑马鱼的行为和皮肤反应通常并不直接相关,但它们具有共同的调节(神经,内分泌)机制,因此可以在精神药物筛查中同时进行评估。例如,某些精神药物可以有效影响斑马鱼的皮肤着色。我们可以利用这些知识来完善表型驱动的精神药物发现吗?在这里,我们介绍使用斑马鱼皮肤着色测定法的当前模型,并讨论如何将这些模型应用于增强体内CNS药物发现。

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