Dept of Biology, Ecology and Earth Sciences (BEST), University of Calabria, 87030, Arcavacata di Rende, CS, Italy.
Gen Comp Endocrinol. 2019 Nov 1;283:113236. doi: 10.1016/j.ygcen.2019.113236. Epub 2019 Jul 29.
The fish heart represents an established natural model for evaluating basic mechanisms of the coordinated physiological reactions which maintain cardiac steady-state. This is due to its relatively simple design, but also to its multilevel morpho-functional flexibility which allows adequate responses to a variety of intrinsic (body size and shape, swimming performance, etc.), and extrinsic (temperature, salinity, oxygen level, water chemistry, etc.) factors related to the animal life style. Nowadays, although many gaps are still present, a huge literature is available about the mechanisms that fine-tune fish cardiac performance, particularly in relation to the influence exerted by substances possessing cardio-modulatory properties. Based on these premises, this review will provide an overview of the existing current knowledge regarding the humoral control of cardiac performance in fish. The role of both classic (i.e. catecholamines, angiotensin II and natriuretic peptides), and emerging cardioactive substances (i.e. the chromogranin-A-derived peptides vasostatins, catestatin and serpinin) will be illustrated and discussed. Moreover, an example of cardiomodulation elicited by peptides (e.g., nesfatin-1) associated to the regulation of feeding and metabolism will be provided. The picture will hopefully emphasize the complex circuits that sustain fish cardiac performance, also highliting the power of the teleost heart as an experimental model to deciphering mechanisms that could be difficult to explore in more elaborated cardiac morpho-functional designs.
鱼心脏是评估维持心脏稳态的协调生理反应基本机制的既定天然模型。这是由于它相对简单的设计,也由于它的多层次形态功能灵活性,允许对与动物生活方式相关的各种内在(体型和形状、游泳性能等)和外在(温度、盐度、氧气水平、水化学等)因素做出充分的反应。如今,尽管仍存在许多差距,但关于微调鱼类心脏性能的机制的大量文献已经存在,特别是与具有心脏调节特性的物质的影响有关的机制。基于这些前提,本综述将概述鱼类心脏性能的体液控制的现有知识。将说明和讨论经典物质(即儿茶酚胺、血管紧张素 II 和利钠肽)和新兴的心脏活性物质(即源自嗜铬粒蛋白-A 的血管抑肽、卡肽和丝氨酸)的作用。此外,还将提供一个由肽(例如 nesfatin-1)引起的心脏调节的示例,这些肽与进食和代谢的调节有关。该图有望强调维持鱼类心脏性能的复杂回路,同时突出硬骨鱼心脏作为实验模型的强大功能,以阐明在更复杂的心脏形态功能设计中难以探索的机制。