Institute of Molecular and Cell Biology, Agency for Science, Technology, and Research (A*STAR), 61 Biopolis Drive, Proteos, Singapore, 138673, Singapore.
Department of Biomedical Engineering, National University of Singapore, 4 Engineering Drive 3, Singapore, 117583, Singapore.
Nat Commun. 2021 Nov 3;12(1):6349. doi: 10.1038/s41467-021-26717-7.
An orchestrated wound healing program drives skin repair via collective epidermal cell proliferation and migration. However, the molecular determinants of the tissue microenvironment supporting wound healing remain poorly understood. Herein we discover that proteoglycan Agrin is enriched within the early wound-microenvironment and is indispensable for efficient healing. Agrin enhances the mechanoperception of keratinocytes by augmenting their stiffness, traction stress and fluidic velocity fields in retaliation to bulk substrate rigidity. Importantly, Agrin overhauls cytoskeletal architecture via enhancing actomyosin cables upon sensing geometric stress and force following an injury. Moreover, we identify Matrix Metalloproteinase-12 (MMP12) as a downstream effector of Agrin's mechanoperception. We also reveal a promising potential of a recombinant Agrin fragment as a bio-additive material that assimilates optimal mechanobiological and pro-angiogenic parameters by engaging MMP12 in accelerated wound healing. Together, we propose that Agrin-MMP12 pathway integrates a broad range of mechanical stimuli to coordinate a competent skin wound healing niche.
一个协调的伤口愈合程序通过集体表皮细胞增殖和迁移来驱动皮肤修复。然而,支持伤口愈合的组织微环境的分子决定因素仍知之甚少。在此,我们发现蛋白聚糖 Agrin 在早期伤口微环境中富集,对于有效愈合是不可或缺的。Agrin 通过增加其刚度、牵引力和流体速度场来增强角质形成细胞的机械感受,以应对基质刚性的变化。重要的是,Agrin 通过在受伤后感知几何应力和力来增强肌动球蛋白电缆,从而重塑细胞骨架结构。此外,我们确定基质金属蛋白酶 12(MMP12)是 Agrin 机械感受的下游效应物。我们还揭示了一种重组 Agrin 片段作为生物添加剂材料的有希望的潜力,该材料通过结合 MMP12 来加速伤口愈合,从而具有最佳的机械生物学和促血管生成参数。总之,我们提出 Agrin-MMP12 途径整合了广泛的机械刺激来协调有效的皮肤伤口愈合龛。