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编码结构色微针贴片用于伤口中小分子的多重筛选。

Encoded Structural Color Microneedle Patches for Multiple Screening of Wound Small Molecules.

机构信息

Department of Rheumatology and Immunology, Nanjing Drum Tower Hospital, School of Biological Science and Medical Engineering, Southeast University, Nanjing, 210096, P. R. China.

Oujiang Laboratory (Zhejiang Lab for Regenerative Medicine, Vision and Brain Health), Wenzhou Institute, University of Chinese Academy of Sciences, Wenzhou, Zhejiang, 325001, P. R. China.

出版信息

Adv Mater. 2023 May;35(19):e2211330. doi: 10.1002/adma.202211330. Epub 2023 Mar 25.

Abstract

Detection of biomarkers associated with wound conditions provides in-depth healthcare information and benefits wound healing treatment. The current aim of wound detection is to achieve in situ multiple detections. Novel encoded structural color microneedle patches (EMNs) combining photonic crystals (PhCs) and microneedle arrays (MNs) for multiple wound biomarker detection in situ are described here. Using a partitioned and layered casting strategy, the EMNs can be divided into different modules and each serves for the detection of small molecules , including pH, glucose, and histamine. pH sensing is based on the interaction between hydrogen ions and carboxyl groups from hydrolyzed polyacrylamide (PAM); glucose sensing is achieved with the help of glucose-responsive fluorophenylboronic acid (FPBA); while histamine sensing relies on specific recognition of aptamers and target molecules. Owing to the responsive volume change of these three modules in the presence of target molecules, the EMNs can create structural color change and characteristic peak shift of the PhCs, thus realizing the qualitative measurement of target molecules with a spectrum analyzer. It is further demonstrated that the EMNs behave well in the multivariate detection of rat wound molecules. These features indicate that the EMNs can be valuable smart detection systems for wound status screening.

摘要

检测与伤口状况相关的生物标志物可提供深入的医疗保健信息,并有益于伤口愈合治疗。目前,伤口检测的目标是实现原位的多重检测。这里描述了一种新型编码结构色微针贴片(EMN),它结合了光子晶体(PhC)和微针阵列(MN),可用于原位检测多种伤口生物标志物。使用分区和分层浇铸策略,可将 EMN 分为不同的模块,每个模块用于检测小分子,包括 pH 值、葡萄糖和组氨酸。pH 值感应基于氢离子与水解聚丙烯酰胺(PAM)中的羧基之间的相互作用;葡萄糖感应是在葡萄糖响应性氟苯硼酸(FPBA)的帮助下实现的;而组氨酸感应则依赖于适体和靶分子的特异性识别。由于这三个模块在存在靶分子时的响应体积变化,EMN 可以产生 PhC 的结构颜色变化和特征峰位移,从而使用光谱分析仪实现对靶分子的定性测量。进一步证明,EMN 在大鼠伤口分子的多元检测中表现良好。这些特征表明,EMN 可以成为用于伤口状况筛选的有价值的智能检测系统。

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