Department of Biology, Ecology and Earth Sciences (BEST), University of Calabria, Italy.
J Exp Biol. 2013 Oct 1;216(Pt 19):3575-86. doi: 10.1242/jeb.089292.
The remarkable functional homogeneity of the heart as an organ requires a well-coordinated myocardial heterogeneity. An example is represented by the selective sensitivity of the different cardiac cells to physical (i.e. shear stress and/or stretch) or chemical stimuli (e.g. catecholamines, angiotensin II, natriuretic peptides, etc.), and the cell-specific synthesis and release of these substances. The biological significance of the cardiac heterogeneity has recently received great attention in attempts to dissect the complexity of the mechanisms that control the cardiac form and function. A useful approach in this regard is to identify natural models of cardiac plasticity. Among fishes, eels (genus Anguilla), for their adaptive and acclimatory abilities, represent a group of animals so far largely used to explore the structural and ultrastructural myoarchitecture organization, as well as the complex molecular networks involved in the modulation of the heart function, such as those converting environmental signals into physiological responses. However, an overview on the existing current knowledge of eel cardiac form and function is not yet available. In this context, this review will illustrate major features of eel cardiac organization and pumping performance. Aspects of autocrine-paracrine modulation and the influence of factors such as body growth, exercise, hypoxia and temperature will highlight the power of the eel heart as an experimental model useful to decipher how the cardiac morpho-functional heterogeneities may support the uniformity of the whole-organ mechanics.
作为一个器官,心脏具有显著的功能均一性,这需要心肌的高度协调异质性。一个例子是不同的心脏细胞对物理(如切应力和/或拉伸)或化学刺激(如儿茶酚胺、血管紧张素 II、利钠肽等)的选择性敏感性,以及这些物质的细胞特异性合成和释放。心脏异质性的生物学意义最近在试图剖析控制心脏形态和功能的机制的复杂性方面受到了极大的关注。在这方面,一个有用的方法是确定心脏可塑性的自然模型。在鱼类中,鳗鱼(属 Anguilla)因其适应性和适应性能力,是一组迄今为止被广泛用于探索结构和超微结构肌节组织,以及涉及调节心脏功能的复杂分子网络的动物,例如将环境信号转化为生理反应的网络。然而,目前还没有关于鳗鱼心脏形态和功能的现有知识的概述。在这种情况下,本文将阐述鳗鱼心脏组织和泵血性能的主要特征。自分泌-旁分泌调节以及诸如身体生长、运动、缺氧和温度等因素的影响方面,将突出鳗鱼心脏作为一种实验模型的强大功能,有助于阐明心脏形态-功能异质性如何支持整个器官力学的均一性。