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A Disposable Photovoltaic Patch Controlling Cellular Microenvironment for Wound Healing

机译:控制细胞微环境伤口愈合的一次性光伏补丁。

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摘要

Electrical stimulation (ES) is known to affect the wound healing process by modulating skin cell behaviors. However, the conventional clinical devices that can generate ES for promoting wound healing require patient hospitalization due to large-scale of the extracorporeal devices. Herein, we introduce a disposable photovoltaic patch that can be applied to skin wound sites to control cellular microenvironment for promoting wound healing by generating ES. In vitro experiment results show that exogenous ES could enhance cell migration, proliferation, expression of extracellular matrix proteins, and myoblast differentiation of fibroblasts which are critical for wound healing. Our disposable photovoltaic patches were attached to the back of skin wound induced mice. Our patch successfully provided ES, generated by photovoltaic energy harvested from the organic solar cell under visible light illumination. In vivo experiment results show that the patch promoted cutaneous wound healing via enhanced host-inductive cell proliferation, cytokine secretion, and protein synthesis which is critical for wound healing process. Unlike the current treatments for wound healing that engage passive healing processes and often are unsuccessful, our wearable photovoltaic patch can stimulate regenerative activities of endogenous cells and actively contribute to the wound healing processes.
机译:已知电刺激(ES)通过调节皮肤细胞行为来影响伤口愈合过程。然而,由于大规模的体外设备,能够产生ES以促进伤口愈合的常规临床设备需要患者住院治疗。在本文中,我们介绍了一种一次性光伏贴剂,该贴剂可应用于皮肤伤口部位,以控制细胞微环境,通过产生ES促进伤口愈合。体外实验结果表明,外源性ES可以增强细胞迁移,增殖,细胞外基质蛋白的表达以及成纤维细胞的成肌细胞分化,这对于伤口愈合至关重要。我们的一次性光伏贴片附着在皮肤伤口诱发小鼠的背部。我们的补丁成功提供了ES,该ES是由可见光照射下从有机太阳能电池中收集的光伏能量产生的。体内实验结果表明,该贴剂通过增强宿主诱导的细胞增殖,细胞因子分泌和蛋白质合成来促进皮肤伤口愈合,这对于伤口愈合过程至关重要。与当前涉及被动愈合过程且通常不成功的伤口愈合疗法不同,我们的可穿戴光伏贴片可以刺激内源性细胞的再生活动,并积极地促进伤口愈合过程。

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