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通过纳米膜电子技术实时功能测定容积性肌肉损失损伤的小鼠咬肌。

Real-Time Functional Assay of Volumetric Muscle Loss Injured Mouse Masseter Muscles via Nanomembrane Electronics.

机构信息

George W. Woodruff School of Mechanical Engineering, College of Engineering, Georgia Institute of Technology, Atlanta, GA, 30332, USA.

Center for Human-Centric Interfaces and Engineering, Institute for Electronics and Nanotechnology, Georgia Institute of Technology, Atlanta, GA, 30332, USA.

出版信息

Adv Sci (Weinh). 2021 Sep;8(17):e2101037. doi: 10.1002/advs.202101037. Epub 2021 Jul 3.

Abstract

Skeletal muscle has a remarkable regeneration capacity to recover its structure and function after injury, except for the traumatic loss of critical muscle volume, called volumetric muscle loss (VML). Although many extremity VML models have been conducted, craniofacial VML has not been well-studied due to unavailable in vivo assay tools. Here, this paper reports a wireless, noninvasive nanomembrane system that integrates skin-wearable printed sensors and electronics for real-time, continuous monitoring of VML on craniofacial muscles. The craniofacial VML model, using biopsy punch-induced masseter muscle injury, shows impaired muscle regeneration. To measure the electrophysiology of small and round masseter muscles of active mice during mastication, a wearable nanomembrane system with stretchable graphene sensors that can be laminated to the skin over target muscles is utilized. The noninvasive system provides highly sensitive electromyogram detection on masseter muscles with or without VML injury. Furthermore, it is demonstrated that the wireless sensor can monitor the recovery after transplantation surgery for craniofacial VML. Overall, the presented study shows the enormous potential of the masseter muscle VML injury model and wearable assay tool for the mechanism study and the therapeutic development of craniofacial VML.

摘要

骨骼肌具有显著的再生能力,可以在受伤后恢复其结构和功能,但对于关键肌肉体积的创伤性损失(称为体积性肌肉损失,VML)除外。尽管已经进行了许多肢体 VML 模型的研究,但由于缺乏体内检测工具,颅面 VML 尚未得到很好的研究。本文报道了一种无线、非侵入性的纳米膜系统,该系统集成了可穿戴式印刷传感器和电子设备,用于实时、连续监测颅面肌肉的 VML。使用活检打孔诱导咬肌损伤的颅面 VML 模型显示肌肉再生受损。为了测量咀嚼过程中小而圆的咬肌的电生理,使用了一种带有可拉伸石墨烯传感器的可穿戴纳米膜系统,该系统可以层压到目标肌肉上的皮肤。该非侵入性系统可以对有或没有 VML 损伤的咬肌进行高度敏感的肌电图检测。此外,研究表明,无线传感器可监测颅面 VML 移植手术后的恢复情况。总体而言,本研究表明,咬肌 VML 损伤模型和可穿戴检测工具具有巨大的潜力,可用于颅面 VML 的机制研究和治疗开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9dd3/8425913/c33f849911c8/ADVS-8-2101037-g004.jpg

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