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描述非洲爪蟾尾部再生过程中起始细胞的特征。

Characterization of regeneration initiating cells during Xenopus laevis tail regeneration.

机构信息

Laboratory of Gene Expression, Institute of Biotechnology of the Czech Academy of Sciences, Vestec, 252 50, Czech Republic.

First Faculty of Medicine, Institute of Anatomy, Charles University, Prague 2, 128 00, Czech Republic.

出版信息

Genome Biol. 2024 Oct 1;25(1):251. doi: 10.1186/s13059-024-03396-3.

Abstract

BACKGROUND

Embryos are regeneration and wound healing masters. They rapidly close wounds and scarlessly remodel and regenerate injured tissue. Regeneration has been extensively studied in many animal models using new tools such as single-cell analysis. However, until now, they have been based primarily on experiments assessing from 1 day post injury.

RESULTS

In this paper, we reveal that critical steps initiating regeneration occur within hours after injury. We discovered the regeneration initiating cells (RICs) using single-cell and spatial transcriptomics of the regenerating Xenopus laevis tail. RICs are formed transiently from the basal epidermal cells, and their expression signature suggests they are important for modifying the surrounding extracellular matrix thus regulating development. The absence or deregulation of RICs leads to excessive extracellular matrix deposition and defective regeneration.

CONCLUSION

RICs represent a newly discovered transient cell state involved in the initiation of the regeneration process.

摘要

背景

胚胎是再生和伤口愈合的大师。它们能迅速闭合伤口,并无痕地重塑和再生受损组织。利用单细胞分析等新工具,已经在许多动物模型中对再生进行了广泛研究。然而,到目前为止,这些研究主要基于评估损伤后 1 天内的实验。

结果

本文揭示了损伤后数小时内就会发生启动再生的关键步骤。我们通过对再生的非洲爪蟾尾巴进行单细胞和空间转录组学分析,发现了再生起始细胞(RICs)。RICs 是从基底表皮细胞中短暂形成的,其表达特征表明它们对于修饰周围的细胞外基质从而调节发育很重要。RICs 的缺失或失调会导致细胞外基质过度沉积和再生缺陷。

结论

RICs 代表了一种新发现的参与再生过程启动的短暂细胞状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad58/11443866/5d7782f4a5b4/13059_2024_3396_Fig1_HTML.jpg

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