Burn & Trauma Treatment Center, The Affiliated Hospital of Jiangnan University, Wuxi 214000, China; Wuxi School of Medicine, Jiangnan University, Wuxi 214000, China.
Department of Mechanical Engineering, University of Manitoba, Winnipeg, R3T 2N2, Canada.
Biomaterials. 2025 Mar;314:122813. doi: 10.1016/j.biomaterials.2024.122813. Epub 2024 Sep 5.
Wound healing concerns almost all bed-side related diseases. With our increasing comprehension of healing nature, the physical and chemical natures behind the wound microenvironment have been decoupled. Wound care demands timely screening and prompt diagnosis of wound complications such as infection and inflammation. Biosensor by the way of exhaustive collection, delivery, and analysis of data, becomes indispensable to arrive at an ideal healing upshot and controlling complications by capturing in-situ wound status. Electrochemical based sensors carry some potential unstable performance subjected to the electrical circuitry and power access and contamination. The colorimetric sensors are free from those concerns. We report that microsensors designed from O/W/O of capillary fluids can continuously monitor wound temperature, pH and glucose concentration. We combined three different types of microgels to encapsulate liquid crystals of cholesterol, nontoxic fuel litmus and two glucose-sensitizing enzymes. A smartphone applet was then developed to convert wound healing images to RGB of digitalizing data. The microgel dressing effectively demonstrates the local temperature change, pH and glucose levels of the wound in high resolution where a microgel is a 'pixel'. They are highly responsive, reversible and accurate. Monitoring multiple physicochemical and physiological indicators provides tremendous potential with insight into healing processing.
创伤愈合几乎涉及所有与病床相关的疾病。随着我们对愈合本质认识的不断加深,伤口微环境背后的物理和化学性质已经被分离。伤口护理需要及时筛选和迅速诊断伤口并发症,如感染和炎症。生物传感器通过详尽地收集、传递和分析数据,对于达到理想的愈合效果和控制并发症至关重要,它可以通过捕捉原位伤口状态来实现。基于电化学的传感器由于电路和电源接入以及污染等问题,存在一些不稳定的性能。比色传感器则没有这些问题。我们报告了一种由 O/W/O 型毛细流体设计的微传感器,可以持续监测伤口温度、pH 值和葡萄糖浓度。我们将三种不同类型的微凝胶结合起来,封装胆固醇、无毒燃料石蕊和两种葡萄糖敏感酶的液晶。然后,我们开发了一个智能手机小程序,将伤口愈合图像转换为数字化数据的 RGB。微凝胶敷料可以在高分辨率下有效地显示伤口的局部温度变化、pH 值和葡萄糖水平,其中一个微凝胶就是一个“像素”。它们反应迅速、可逆且准确。监测多个物理化学和生理指标提供了巨大的潜力,可以深入了解愈合过程。