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多功能 Janus 膜用于糖尿病创面愈合和智能监测。

Multifunctional Janus Membrane for Diabetic Wound Healing and Intelligent Monitoring.

机构信息

School of Materials Science and Engineering, Tiangong University, Tianjin 300387, PR China.

State Key Laboratory of Separation Membranes & Membrane Process, Tiangong University, Tianjin 300387, PR China.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 14;16(32):41927-41938. doi: 10.1021/acsami.4c09353. Epub 2024 Aug 1.

Abstract

The complex microenvironment of diabetic wounds often hinders the healing process, ultimately leading to the formation of diabetic foot ulcers and even death. Dual monitoring and treatment of wounds can significantly reduce the incidence of such cases. Herein, a multifunctional Janus membrane (3D chitosan sponge-ZE/polycaprolactone nanofibers-ZP) was developed by incorporating the zinc metal-organic framework, europium metal-organic framework, and phenol red into nanofibers for diabetic wound monitoring and treatment. The directional water transport capacity of the resulting Janus membrane allows for unidirectional and irreversible drainage of wound exudate, and the multifunctional Janus membrane creates up to a 99% antibacterial environment, both of which can treat wounds. Moreover, the pH (5-8) and HO (0.00-0.80 μM) levels of the wound can be monitored using the color-changing property of phenol red and the fluorescence characteristic of Eu-MOF on the obtained membrane, respectively. The healing stages of the wound can also be monitored by analyzing the RGB values of the targeted membrane images. This design can more accurately reflect the wound state and treat the wound to reduce bacterial infection and accelerate wound healing, which has been demonstrated in in vivo experiments. The results provide an important basis for early intervention in diabetic patients.

摘要

糖尿病伤口的复杂微环境常常阻碍愈合过程,最终导致糖尿病足溃疡的形成,甚至死亡。对伤口进行双重监测和治疗可以显著降低此类病例的发生率。本文通过将锌基金属有机骨架、铕基金属有机骨架和酚红掺入纳米纤维中,开发了一种多功能的 Janus 膜(3D 壳聚糖海绵-ZE/聚己内酯纳米纤维-ZP),用于糖尿病伤口监测和治疗。所得 Janus 膜具有定向输水能力,可单向且不可逆地排出伤口渗出液,同时多功能 Janus 膜可创造高达 99%的抗菌环境,两者均可治疗伤口。此外,还可以分别利用酚红的变色性质和 Eu-MOF 的荧光特性来监测伤口的 pH 值(5-8)和 HO 浓度(0.00-0.80 μM)。通过分析目标膜图像的 RGB 值,还可以监测伤口的愈合阶段。这种设计可以更准确地反映伤口状态并进行治疗,以减少细菌感染并加速伤口愈合,在体内实验中得到了验证。该结果为糖尿病患者的早期干预提供了重要依据。

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