Bioinspired Engineering and Biomechanics Center, The Key Laboratory of Biomedical Information Engineering of Ministry of Education, School of Life Science and Technology, Xi'an Jiaotong University, Xi'an 710049, P. R. China; Advanced Interdisciplinary Research Center for Flexible Electronics, School of Microelectronics, Academy of Advanced Interdisciplinary Research, Xidian University, Xi'an 710071, P. R. China.
Shaanxi Key Laboratory of Degradable Biomedical Materials, School of Chemical Engineering, Northwest University, Xi'an 710069, P. R. China.
Biomater Adv. 2022 Dec;143:213172. doi: 10.1016/j.bioadv.2022.213172. Epub 2022 Oct 30.
Deep skin wound needs a long wound healing process, in which external force on skin around wound can result in a sharp pain, wound re-damage and interstitial fluid flowing out, increasing the risk of deterioration and even amputation. While the conventional wound dressings cannot provide timely feedback of abnormal wound status and lose best time for wound treatment, real-time monitoring wound status is thus urgently needed for wound management. In this work, a breathable and stretchable electronic skin (i.e., e-skin) named CNTs/graphene/GelMA mat has been developed through electrospinning, ice-templating and in-situ loading method for evaluating wound status. The obtained porosity, swelling ratio and vapor transmission rate of the CNTs/graphene/GelMA mat are 55 %, 180 % and 3378.2 h day, respectively. And owing to the good porous, nanofibrous architecture and excellent breathability of the mat, L929 cells grow and well spread on the CNTs/graphene/GelMA mat. In addition, the gauge factors of the prepared conductive CNTs/graphene/GelMA mat as a strain sensor are 15.4 and 72.9 in the strain ranges of 0-70 % and 70-85 %, respectively, matching the mechanical performance of human skin. The sensitivity coefficient of the mat for moisture sensing is 12.05, indicating its high efficiency for monitoring and warning interstitial fluid outflow from wound. Furthermore, the integration of CNTs/graphene/GelMA mat with a portable device is feasible to monitor strain and moisture on a rat model with abdominal wound. The healing process of the wounds treated with CNTs/graphene/GelMA mat is similar to that of GelMA mat, indicating that the dosage of CNTs and graphene in the CNTs/graphene/GelMA mat has negligible effect on the mat histocompatibility. The CNTs/graphene/GelMA mat demonstrates the application potential in wound management, home medical diagnosis and human-machine interactions.
深度皮肤伤口需要一个漫长的伤口愈合过程,在此过程中,伤口周围的外力会导致剧烈疼痛,伤口再次受损,间质液流出,增加恶化甚至截肢的风险。而传统的伤口敷料不能及时反馈异常伤口状况,错失伤口治疗的最佳时机,因此迫切需要实时监测伤口状况,进行伤口管理。在这项工作中,通过静电纺丝、冰模板和原位加载的方法,开发了一种透气、可拉伸的电子皮肤(即电子皮肤) CNTs/graphene/GelMA 垫,用于评估伤口状况。所得 CNTs/graphene/GelMA 垫的孔隙率、溶胀比和蒸汽透过率分别为 55%、180%和 3378.2 h·day。由于垫子具有良好的多孔性、纳米纤维结构和优异的透气性,L929 细胞在 CNTs/graphene/GelMA 垫上生长并良好扩散。此外,作为应变传感器制备的导电 CNTs/graphene/GelMA 垫的应变系数在 0-70%和 70-85%的应变范围内分别为 15.4 和 72.9,与人体皮肤的机械性能相匹配。垫子对水分感应的灵敏度系数为 12.05,表明其对监测和警告伤口间质液流出具有高效率。此外,将 CNTs/graphene/GelMA 垫与便携式设备集成,可实现对腹部伤口大鼠模型的应变和水分的监测。用 CNTs/graphene/GelMA 垫处理的伤口的愈合过程与 GelMA 垫相似,表明 CNTs/graphene/GelMA 垫中 CNTs 和石墨烯的用量对垫的组织相容性几乎没有影响。CNTs/graphene/GelMA 垫在伤口管理、家庭医疗诊断和人机交互方面具有应用潜力。