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首页> 外文期刊>Developmental biology >Fundamental aspects of arm repair phase in two echinoderm models
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Fundamental aspects of arm repair phase in two echinoderm models

机译:两个棘皮形模型的ARM修复阶段的基本方面

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Abstract Regeneration is a post-embryonic developmental process that ensures complete morphological and functional restoration of lost body parts. The repair phase is a key step for the effectiveness of the subsequent regenerative process: in vertebrates, efficient re-epithelialisation, rapid inflammatory/immune response and post-injury tissue remodelling are fundamental aspects for the success of this phase, their impairment leading to an inhibition or total prevention of regeneration. Among deuterostomes, echinoderms display a unique combination of striking regenerative abilities and diversity of useful experimental models, although still largely unexplored. Therefore, the brittle star Amphiura filiformis and the starfish Echinaster sepositus were here used to comparatively investigate the main repair phase events after injury as well as the presence and expression of immune system and extracellular matrix ( i.e. collagen) molecules using both microscopy and molecular tools. Our results showed that emergency reaction and re-epithelialisation are similar in both echinoderm models, being faster and more effective than in mammals. Moreover, in comparison to the latter, both echinoderms showed delayed and less abundant collagen deposition at the wound site (absence of fibrosis). The gene expression patterns of molecules related to the immune response, such as Ese-fib-like (starfishes) and Afi-ficolin (brittle stars), were described for the first time during echinoderm regeneration providing promising starting points to investigate the immune system role in these regeneration models. Overall, the similarities in repair events and timing within the echinoderms and the differences with what has been reported in mammals suggest that effective repair processes in echinoderms play an important role for their subsequent ability to regenerate. Targeted molecular and functional analyses will shed light on the evolution of these abilities in the deuterostomian lineage. Highlights ? Echinoderms are valid models to study repair phase and regeneration post-amputation. ? Quick re-epithelialisation and wound contraction characterise echinoderm wound healing. ? Echinoderm epidermis has a multi-functional role during the repair phase. ? Delayed collagen deposition and no fibrosis differentiate echinoderms from mammals.
机译:摘要再生是胚胎后发育过程,可确保丢失的身体部位的完全形态和功能恢复。修复阶段是随后的再生过程有效性的关键步骤:在脊椎动物中,有效的再上皮,快速炎症/免疫应答和损伤后组织重塑是本阶段成功的基本方面,他们的损伤导致了抑制或预防再生。在氘前诱惑中,棘突术语显示出醒目的再生能力和有用的实验模型的多样性的独特组合,尽管仍然很大程度上是未开发的。因此,脆性星形Amphiura Filiformis和海星echInaster海膜素在此用于相对调查损伤后的主要修复阶段事件以及使用扫描和分子工具的免疫系统和细胞外基质(即胶原蛋白)分子的存在和表达。我们的研究结果表明,呼吸胚胎模型中的应急反应和重新上皮相似,比哺乳动物更快,更有效。此外,与后者相比,两个棘突在伤口部位(不存在纤维化)时显示出延迟且较少丰富的胶原沉积。分子的基因表达模式有关的免疫应答,如ESE-FIB样(海星)和,分别在棘皮动物再生提供有前途的起点,以调查对免疫系统的作用的第一次描述阿菲纤维胶凝蛋白(脆星)在这些再生模型中。总体而言,棘突内修复事件和时序的相似性以及与哺乳动物报告的差异表明,Echinoderms中有效的修复过程对其随后的再生能力发挥着重要作用。有针对性的分子和功能分析将阐明德图斯托斯族血统中这些能力的演变。强调 ? Echinoderms是学习修复阶段和再生后截肢的有效模型。还是快速重新上皮和伤口收缩表征Echinoderm伤口愈合。还是Echinoderm表皮在修复阶段期间具有多功能作用。还是延迟胶原沉积,无纤维化与哺乳动物分化棘鱼。

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