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一种细菌触发的可穿戴比色创可贴,用于实时监测和治疗伤口愈合。

A bacteria-triggered wearable colorimetric band-aid for real-time monitoring and treating of wound healing.

机构信息

College of Food Science and Engineering, Northwest A&F University, Yangling, Shaanxi 712100, PR China.

College of Food Science and Engineering, Northwest A&F University, Yangling, Shaanxi 712100, PR China.

出版信息

J Colloid Interface Sci. 2022 Mar 15;610:913-922. doi: 10.1016/j.jcis.2021.11.146. Epub 2021 Nov 26.

Abstract

Early diagnosis of bacterial infection and tracking of treatment effect are of great importance for developing a "sense-and-treat" integrated system. Herein, we developed a bacteria-triggered, portable, wearable and colorimetric film-based band-aid (FBA) for closed-loop monitoring and light-controlled therapy of wound infection. FBA with high photothermal conversion efficiency of 52.56% was prepared by wrapping BiS nanoflowers (BS NFs) loaded with rhodium nanoparticles (Rh NPs) and bromothymol blue (BTB) into LB agar film, integrating bacteria-triggered color change, photothermal/photodynamic therapy (PTT/PDT) synergistic bactericidal therapy and agar-based band aid in one intelligent system. Initially, FBA effectively simulates the pH sensing mechanism, and monitors the occurrence of bacterial infections within 5 min through color changes of Staphylococcus aureus (S. aureus) from blue to yellow and Escherichia coli (E. coli) from yellow to blue. Additionally, the short-term and controlled antibacterial strategy of "one light dual-mode responses" (photothermal and photodynamic responses) was implemented with the introduce of near-infrared (NIR). Ultimately, the effectiveness of FBA was fully validated in the monitoring and treating of S. aureus-infected mouse wounds. Notably, the designed FBA decisively abandoned off-target side effects maximizing the treatment effect and nakedly tracking therapeutic situation in real time, contributing an effective antibacterial alternative strategy for reducing the use of antibiotics. To the best of our knowledge, such integrated system is still unreported on film-fixed model. In view of the advantages of the low cost and convenience of the simple device, the integrated design is expected to provide a solution for the development of a closed-loop biomedical system combining diagnosis and treatment.

摘要

早期诊断细菌感染并跟踪治疗效果对于开发“感测-治疗”一体化系统至关重要。在此,我们开发了一种细菌触发、便携式、可穿戴和比色膜基创可贴(FBA),用于闭环监测和光控治疗伤口感染。通过将负载纳米粒子的 BiS 纳米花(BS NFs)和溴百里酚蓝(BTB)包裹在 LB 琼脂膜中,制备出具有 52.56%高光热转换效率的 FBA,该 FBA集成了细菌触发的颜色变化、光热/光动力治疗(PTT/PDT)协同杀菌治疗和琼脂基创可贴于一体的智能系统。最初,FBA 有效地模拟了 pH 传感机制,并通过金黄色葡萄球菌(S. aureus)从蓝色变为黄色和大肠杆菌(E. coli)从黄色变为蓝色的颜色变化,在 5 分钟内有效监测细菌感染的发生。此外,通过引入近红外(NIR),实现了“一光双模响应”(光热和光动力响应)的短期和可控抗菌策略。最终,FBA 在监测和治疗金黄色葡萄球菌感染的小鼠伤口方面的有效性得到了充分验证。值得注意的是,所设计的 FBA 果断地摒弃了非靶向的副作用,最大限度地提高了治疗效果,并实时跟踪治疗情况,为减少抗生素的使用提供了一种有效的抗菌替代策略。据我们所知,这种集成系统在膜固定模型上仍未见报道。鉴于该简单装置成本低且使用方便的优势,这种集成设计有望为开发结合诊断和治疗的闭环生物医学系统提供一种解决方案。

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