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小行星再生的综合观点:组织、细胞和分子。

An integrated view of asteroid regeneration: tissues, cells and molecules.

机构信息

Laboratory of Genetics, Biodiversity and Valorization of Bioresources, Higher Institute of Biotechnology, University of Monastir, Monastir, Tunisia.

Department of Biosciences, University of Milan, Milan, Italy.

出版信息

Cell Tissue Res. 2017 Oct;370(1):13-28. doi: 10.1007/s00441-017-2589-9. Epub 2017 Mar 22.

Abstract

The potential for repairing and replacing cells, tissues, organs and body parts is considered a primitive attribute of life shared by all the organisms, even though it may be expressed to a different extent and which is essential for the survival of both individual and whole species. The ability to regenerate is particularly evident and widespread within invertebrates. In spite of the wide availability of experimental models, regeneration has been comprehensively explored in only a few animal systems (i.e., hydrozoans, planarians, urodeles) leaving many other animal groups unexplored. The regenerative potential finds its maximum expression in echinoderms. Among echinoderm classes, asteroids offer an impressive range of experimental models in which to study arm regeneration at different levels. Many studies have been recently carried out in order to understand the regenerative mechanisms in asteroids and the overall morphological processes have been well documented in different starfish species, such as Asterias rubens, Leptasterias hexactis and Echinaster sepositus. In contrast, very little is known about the molecular mechanisms that control regeneration development and patterning in these models. The origin and the fate of cells involved in the regenerative process remain a matter of debate and clear insights will require the use of complementary molecular and proteomic approaches to study this problem. Here, we review the current knowledge regarding the cellular, proteomic and molecular aspects of asteroid regeneration.

摘要

修复和替换细胞、组织、器官和身体部位的潜力被认为是所有生物体共有的原始属性,尽管它可能在不同程度上表达,并且对个体和整个物种的生存都是必不可少的。再生能力在无脊椎动物中尤为明显和广泛。尽管实验模型广泛可用,但仅在少数动物系统(即水螅、扁形虫、蝾螈)中全面探索了再生,而许多其他动物群体则未被探索。再生潜力在棘皮动物中得到了最大的表达。在棘皮动物中,海星类提供了令人印象深刻的实验模型范围,可在不同水平上研究臂再生。最近进行了许多研究以了解海星类的再生机制,并且不同海星物种(例如红砂海星、六腕海星和海盘车)的整体形态过程已经得到很好的记录。相比之下,对于控制这些模型中再生发育和模式形成的分子机制知之甚少。参与再生过程的细胞的起源和命运仍然存在争议,要清楚地了解这一问题,需要使用互补的分子和蛋白质组学方法来研究。在这里,我们回顾了关于海星再生的细胞、蛋白质组学和分子方面的最新知识。

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