氯化锂通过抑制 CXCL9 和 IGF2 促进小鼠皮肤伤口愈合中的间充质-上皮转化

IF 3.5 3区 医学 Q1 DERMATOLOGY
Chong Zhang, Xiao Luo, Mianxing Wei, Bingshuai Jing, Jue Wang, Lanling Lin, Bing Shi, Qian Zheng, Chenghao Li
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引用次数: 0

摘要

皮肤伤口愈合是整形和重建外科的一项挑战。理论上,在伤口愈合的末期,进行间质转化的细胞会通过间质-上皮转化实现再上皮化。但事实上,一些病理刺激会抑制这一生物过程,导致疤痕形成。如果能在相应阶段激活间充质-上皮转化,就能实现理想的伤口愈合。本研究利用两种体内皮肤缺损小鼠模型和真皮间充质细胞来评估氯化锂对伤口愈合的影响。通过免疫组化染色检测间充质-上皮转化。通过转录组分析对体内差异表达基因进行了分析,并进行了后续测试。我们发现,氯化锂能促进小鼠皮肤伤口愈合,并在体内和体外促进间充质-上皮转化。氯化锂组的疤痕面积较小,胶原纤维也排列有序。干预后,与间质相关的基因下调,而上皮标志基因被激活。此外,转录组分析表明,这种效应可能与抑制 CXCL9 和 IGF2 有关,随后的实验也证明了这一点。氯化锂能通过下调 CXCL9 和 IGF2 促进小鼠皮肤伤口愈合的间充质-上皮转化,而 IGF2 的表达受 β-catenin调控。IGF2 的表达受 β-catenin 的调控,它可能是一种潜在的治疗药物,有望在未来缓解术后疤痕和促进再上皮化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lithium chloride promotes mesenchymal-epithelial transition in murine cutaneous wound healing via inhibiting CXCL9 and IGF2

Cutaneous wound healing is a challenge in plastic and reconstructive surgery. In theory, cells undergoing mesenchymal transition will achieve re-epithelialization through mesenchymal-epithelial transition at the end of wound healing. But in fact, some pathological stimuli will inhibit this biological process and result in scar formation. If mesenchymal-epithelial transition can be activated at the corresponding stage, the ideal wound healing may be accomplished. Two in vivo skin defect mouse models and dermal-derived mesenchymal cells were used to evaluate the effect of lithium chloride in wound healing. The mesenchymal-epithelial transition was detected by immunohistochemistry staining. In vivo, differentially expressed genes were analysed by transcriptome analyses and the subsequent testing was carried out. We found that lithium chloride could promote murine cutaneous wound healing and facilitate mesenchymal-epithelial transition in vivo and in vitro. In lithium chloride group, scar area was smaller and the collagen fibres are also orderly arranged. The genes related to mesenchyme were downregulated and epithelial mark genes were activated after intervention. Moreover, transcriptome analyses suggested that this effect might be related to the inhibition of CXCL9 and IGF2, subsequent assays demonstrated it. Lithium chloride can promote mesenchymal-epithelial transition via downregulating CXCL9 and IGF2 in murine cutaneous wound healing, the expression of IGF2 is regulated by β-catenin. It may be a potential promising therapeutic drug for alleviating postoperative scar and promoting re-epithelialization in future.

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来源期刊
Experimental Dermatology
Experimental Dermatology 医学-皮肤病学
CiteScore
6.70
自引率
5.60%
发文量
201
审稿时长
2 months
期刊介绍: Experimental Dermatology provides a vehicle for the rapid publication of innovative and definitive reports, letters to the editor and review articles covering all aspects of experimental dermatology. Preference is given to papers of immediate importance to other investigators, either by virtue of their new methodology, experimental data or new ideas. The essential criteria for publication are clarity, experimental soundness and novelty. Letters to the editor related to published reports may also be accepted, provided that they are short and scientifically relevant to the reports mentioned, in order to provide a continuing forum for discussion. Review articles represent a state-of-the-art overview and are invited by the editors.
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