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时空响应级联双层微针整合局部葡萄糖消耗和持续一氧化氮释放以加速糖尿病伤口愈合。

Spatiotemporally responsive cascade bilayer microneedles integrating local glucose depletion and sustained nitric oxide release for accelerated diabetic wound healing.

作者信息

Zeng Yongnian, Wang Chenyuan, Lei Jiapeng, Jiang Xue, Lei Kai, Jin Yinli, Hao Tianshu, Zhang Wen, Huang Jianying, Li Wei

机构信息

Department of Thyroid and Breast Surgery, Zhongnan Hospital of Wuhan University, School of Pharmaceutical Sciences, Wuhan University, Wuhan 430071, China.

Clinical Trial Center of Zhongnan Hospital, Wuhan University, Wuhan 430071, China.

出版信息

Acta Pharm Sin B. 2024 Nov;14(11):5037-5052. doi: 10.1016/j.apsb.2024.06.014. Epub 2024 Jun 24.

Abstract

High glucose level, bacterial infection, and persistent inflammation within the microenvironment are key factors contributing to the delay of diabetic ulcers healing, while traditional therapeutic methods generally fail to address these issues simultaneously. Here, we present a spatiotemporally responsive cascade bilayer microneedle (MN) patch for accelerating diabetic wound healing local glucose depletion and sustained nitric oxide (NO) release for long-term antibacterial and anti-inflammatory effects. The MN patch (G/AZ-MNs) possesses a degradable tip layer loading glucose oxidase (GOx), as well as a dissolvable base layer encapsulating l-arginine (Arg)-loaded nanoparticles (NPs). After wound administration, the base part rapidly dissolved, resulting in prompt separation of the MN tip within the wound tissue, which subsequently responded to the overexpressed matrix metalloproteinase-9 (MMP-9) in diabetic lesions, leading to the responsive release of GOx. The released enzyme catalyzed glucose into gluconic acid and hydrogen peroxide (HO), which not only reduced glucose level within the diabetic wound, but also initiated the cascade reaction between HO with the Arg that was released from NPs, thereby achieving continuous production of NO for 7 days. Our findings demonstrate that a single administration of the MN patch could effectively heal non-infected or biofilm-infected diabetic wounds with the multifunctional properties.

摘要

高血糖水平、细菌感染以及微环境中的持续炎症是导致糖尿病溃疡愈合延迟的关键因素,而传统治疗方法通常无法同时解决这些问题。在此,我们展示了一种具有时空响应性的级联双层微针(MN)贴片,用于加速糖尿病伤口愈合,通过局部葡萄糖消耗和持续释放一氧化氮(NO)来实现长期抗菌和抗炎效果。MN贴片(G/AZ-MNs)具有一个可降解的尖端层,负载葡萄糖氧化酶(GOx),以及一个可溶解的基部层,包裹着负载L-精氨酸(Arg)的纳米颗粒(NPs)。伤口给药后,基部迅速溶解,导致MN尖端在伤口组织内迅速分离,随后其对糖尿病病变中过表达的基质金属蛋白酶-9(MMP-9)做出反应,从而使GOx响应性释放。释放的酶将葡萄糖催化为葡萄糖酸和过氧化氢(HO),这不仅降低了糖尿病伤口内的葡萄糖水平,还引发了HO与从NPs释放的Arg之间的级联反应,从而实现了连续7天的NO产生。我们的研究结果表明,单次施用MN贴片能够有效治愈未感染或生物膜感染的具有多功能特性的糖尿病伤口。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e0c/11628847/a38574ee615e/ga1.jpg

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