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nWASP 抑制通过 TrKb/PLCγ 信号通路促进伤口愈合。

nWASP Inhibition Increases Wound Healing via TrKb/PLCγ Signalling.

机构信息

Division of Cancer and Genetics, Cardiff University School of Medicine, Cardiff University, Cardiff CF14 4XN, UK.

Institute of Biomedical Science, University of Gloucestershire, Cheltenham GL50 2RH, UK.

出版信息

Biomolecules. 2023 Feb 17;13(2):379. doi: 10.3390/biom13020379.

Abstract

(1) Background: Chronic wounds represent a major burden to patients and healthcare systems and identifying new therapeutic targets to encourage wound healing is a significant challenge. This study evaluated nWASP as a new therapeutic target in human wound healing and determined how this can be regulated. (2) Methods: Clinical cohorts from patients with chronic wounds were tested for the expression of nWASP and cell models were employed to evaluate the influence of nWASP on cellular functions that are key to the healing process following knockdown and/or the use of nWASP-specific inhibitors. (3) Results: nWASP was significantly elevated at transcript levels in human non-healing chronic wounds versus healing tissues. nWASP inhibitors, wiskostatin and 187-1, along with the knockdown of nWASP, modified both HaCaT and HECV cell behaviour. We then identified two signalling pathways affected by nWASP inhibition: TrkB signalling and downstream PLCγ1 phosphorylation were impaired by nWASP inhibition in HaCaT cells. The healing of wounds in a diabetic murine model was significantly improved with an nWASP inhibitor treatment. (4) Conclusions: This study showed that nWASP activity was related to the non-healing behaviour of chronic wounds and together with the findings in the in vivo models, it strongly suggested nWASP as a therapeutic target in non-healing wounds that are regulated via TrkB and PLCγ1 signalling.

摘要

(1)背景:慢性伤口给患者和医疗系统带来了巨大负担,寻找新的治疗靶点以促进伤口愈合是一个重大挑战。本研究评估了 nWASP 作为人类伤口愈合的新治疗靶点,并确定了如何对其进行调控。(2)方法:对慢性伤口患者的临床队列进行了 nWASP 的表达检测,并利用细胞模型评估了 nWASP 对细胞功能的影响,这些细胞功能对损伤后愈合过程中的关键。(3)结果:nWASP 在人类非愈合性慢性伤口中的转录水平明显高于愈合组织。nWASP 抑制剂 wiskostatin 和 187-1 以及 nWASP 的敲低均改变了 HaCaT 和 HECV 细胞的行为。然后我们确定了受 nWASP 抑制影响的两条信号通路:在 HaCaT 细胞中,nWASP 抑制会损害 TrkB 信号和下游 PLCγ1 磷酸化。nWASP 抑制剂治疗糖尿病小鼠模型的伤口愈合明显改善。(4)结论:本研究表明,nWASP 活性与慢性伤口的非愈合行为有关,结合体内模型的研究结果,强烈表明 nWASP 是一种通过 TrkB 和 PLCγ1 信号调控的非愈合性伤口的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5abf/9953671/1748b7d11dd4/biomolecules-13-00379-g001.jpg

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