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经微针贴片式自供电经皮电刺激提高表皮生长因子的药效动力学

Improved pharmacodynamics of epidermal growth factor via microneedles-based self-powered transcutaneous electrical stimulation.

机构信息

Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing, 101400, China.

Department of Plastic Surgery, State Key Laboratory of Trauma, Burns and Combined Injury, Southwest Hospital, Third Military Medical University (Army Medical University), Chongqing, 400038, China.

出版信息

Nat Commun. 2022 Nov 14;13(1):6908. doi: 10.1038/s41467-022-34716-5.

Abstract

Epidermal growth factor is an excellent drug for promoting wound healing; however, its conventional administration strategies are associated with pharmacodynamic challenges, such as low transdermal permeability, reduction, and receptor desensitization. Here, we develop a microneedle-based self-powered transcutaneous electrical stimulation system (mn-STESS) by integrating a sliding free-standing triboelectric nanogenerator with a microneedle patch to achieve improved epidermal growth factor pharmacodynamics. We show that the mn-STESS facilitates drug penetration and utilization by using microneedles to pierce the stratum corneum. More importantly, we find that it converts the mechanical energy of finger sliding into electricity and mediates transcutaneous electrical stimulation through microneedles. We demonstrate that the electrical stimulation applied by mn-STESS acts as an "adjuvant" that suppresses the reduction of epidermal growth factor by glutathione and upregulates its receptor expression in keratinocyte cells, successfully compensating for receptor desensitization. Collectively, this work highlights the promise of self-powered electrical adjuvants in improving drug pharmacodynamics, creating combinatorial therapeutic strategies for traditional drugs.

摘要

表皮生长因子是一种促进伤口愈合的优秀药物;然而,其常规给药策略存在药效学挑战,如低透皮渗透性、减少和受体脱敏。在这里,我们通过将滑动式独立式摩擦纳米发电机与微针贴片集成,开发了一种基于微针的自供电经皮电刺激系统 (mn-STESS),以实现表皮生长因子药效学的改善。我们表明,mn-STESS 通过使用微针刺穿角质层来促进药物渗透和利用。更重要的是,我们发现它将手指滑动的机械能转化为电能,并通过微针介导经皮电刺激。我们证明,mn-STESS 施加的电刺激作为一种“佐剂”,抑制了谷胱甘肽对表皮生长因子的还原,并在上皮细胞中上调其受体表达,成功补偿了受体脱敏。总的来说,这项工作突出了自供电电佐剂在改善药物药效学方面的潜力,为传统药物创造了组合治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d889/9663450/981e88c1457a/41467_2022_34716_Fig1_HTML.jpg

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