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斑马鱼鳍褶再生的体内细胞和组织动态。

In vivo cell and tissue dynamics underlying zebrafish fin fold regeneration.

机构信息

Instituto de Medicina Molecular, Faculdade de Medicina de Lisboa, Lisboa, Portugal.

出版信息

PLoS One. 2012;7(12):e51766. doi: 10.1371/journal.pone.0051766. Epub 2012 Dec 20.

Abstract

BACKGROUND

Zebrafish (Danio rerio) has a remarkable capacity to regenerate many organs and tissues. During larval stages the fin fold allows the possibility of performing long time-lapse imaging making this system very appealing to study the relationships between tissue movements, cell migration and proliferation necessary for the regeneration process.

RESULTS

Through the combined use of transgenic fluorescently-labeled animals and confocal microscopy imaging, we characterized in vivo the complete fin fold regeneration process. We show, for the first time, that there is an increase in the global rate of epidermal growth as a response to tissue loss. Also enhanced significantly is cell proliferation, which upon amputation happens in a broad area concerning the amputation level and not in a blastema-restricted way. This reveals a striking difference with regard to the adult fin regeneration system. Finally, an accumulation of migratory, shape-changing fibroblasts occurs proximally to the wound area, resembling a blastemal-like structure, which may act as a signaling center for the regeneration process to proceed.

CONCLUSIONS

These findings provide a novel in vivo description of fundamental mechanisms occurring during the fin fold regeneration process, thereby contributing to a better knowledge of this regenerative system and to reveal variations in the epimorphic regeneration field.

摘要

背景

斑马鱼(Danio rerio)具有很强的再生许多器官和组织的能力。在幼虫阶段,鳍褶允许进行长时间延时成像的可能性,这使得该系统非常适合研究组织运动、细胞迁移和增殖之间的关系,这些是再生过程所必需的。

结果

通过使用转基因荧光标记动物和共聚焦显微镜成像的联合应用,我们对体内的完整鳍褶再生过程进行了特征描述。我们首次表明,在组织损失的情况下,表皮生长的整体速度会增加。细胞增殖也显著增强,在截肢时,它会在一个广泛的区域内发生,而不是局限于芽基内。这与成年鳍再生系统有显著的不同。最后,在伤口区域附近会聚集迁移、形状变化的成纤维细胞,类似于芽基样结构,它可能作为再生过程的信号中心发挥作用。

结论

这些发现为鳍褶再生过程中发生的基本机制提供了新的体内描述,从而有助于更好地了解这种再生系统,并揭示出在附肢再生领域的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a9a/3527495/0172f73a001f/pone.0051766.g001.jpg

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