Department of Development and Regeneration, Stem Cell Institute, KU Leuven, B-3000, Leuven, Belgium.
Human Anatomy Unit, Department of Public Health, Experimental and Forensic Medicine, University of Pavia, Pavia, Italy.
Cell Death Differ. 2020 May;27(5):1520-1538. doi: 10.1038/s41418-019-0433-3. Epub 2019 Oct 25.
Defective cell migration causes delayed wound healing (WH) and chronic skin lesions. Autologous micrograft (AMG) therapies have recently emerged as a new effective and affordable treatment able to improve wound healing capacity. However, the precise molecular mechanism through which AMG exhibits its beneficial effects remains unrevealed. Herein we show that AMG improves skin re-epithelialization by accelerating the migration of fibroblasts and keratinocytes. More specifically, AMG-treated wounds showed improvement of indispensable events associated with successful wound healing such as granulation tissue formation, organized collagen content, and newly formed blood vessels. We demonstrate that AMG is enriched with a pool of WH-associated growth factors that may provide the starting signal for a faster endogenous wound healing response. This work links the increased cell migration rate to the activation of the extracellular signal-regulated kinase (ERK) signaling pathway, which is followed by an increase in matrix metalloproteinase expression and their extracellular enzymatic activity. Overall we reveal the AMG-mediated wound healing transcriptional signature and shed light on the AMG molecular mechanism supporting its potential to trigger a highly improved wound healing process. In this way, we present a framework for future improvements in AMG therapy for skin tissue regeneration applications.
细胞迁移缺陷会导致伤口愈合延迟和慢性皮肤损伤。自体微移植 (AMG) 疗法最近作为一种新的有效且经济实惠的治疗方法出现,能够提高伤口愈合能力。然而,AMG 发挥其有益作用的确切分子机制仍未被揭示。在此,我们表明 AMG 通过加速成纤维细胞和角质细胞的迁移来改善皮肤再上皮化。更具体地说,AMG 处理的伤口显示出与成功伤口愈合相关的不可或缺事件的改善,例如肉芽组织形成、组织胶原蛋白含量和新形成的血管。我们证明 AMG 富含与伤口愈合相关的生长因子池,这些生长因子可能为更快的内源性伤口愈合反应提供起始信号。这项工作将细胞迁移率的增加与细胞外信号调节激酶 (ERK) 信号通路的激活联系起来,随后基质金属蛋白酶的表达及其细胞外酶活性增加。总的来说,我们揭示了 AMG 介导的伤口愈合转录特征,并阐明了支持 AMG 触发高度改善的伤口愈合过程的潜在机制。通过这种方式,我们为未来改进 AMG 治疗皮肤组织再生应用提供了一个框架。