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用于靶向根除糖尿病伤口感染中多药耐药生物膜里革兰氏阳性菌的包埋光敏剂的溶蚀性微针

Dissolving Microneedles Embedded with Photosensitizers for Targeted Eradication of Gram-Positive Bacteria in Multidrug-Resistant Biofilms in Diabetic Wound Infections.

作者信息

Xie Ruyan, Fan Duoyang, Fang Yanpeng, Zhu Tianyu, Li Haohan, Yin Ying, Liu Xiaohui, Ma Yeshuo, Chen Fei, Zeng Wenbin

机构信息

Xiangya School of Pharmaceutical Sciences, Central South University, Changsha, 410013, P. R. China.

Hunan Key Laboratory of Diagnostic and Therapeutic Drug Research for Chronic Diseases, Changsha, 410078, P. R. China.

出版信息

Adv Healthc Mater. 2025 Jun;14(15):e2405190. doi: 10.1002/adhm.202405190. Epub 2025 Apr 10.

Abstract

Chronic nonhealing wounds, common in diabetic patients, represent a major clinical challenge, causing significant morbidity and healthcare costs. Persistent bacterial biofilms are a critical obstacle to wound healing, necessitating their effective elimination to promote rapid recovery. In photodynamic antimicrobial therapy (PDAT), enhancing the interaction between the photosensitizer and bacterial biofilms is key to achieving efficient antimicrobial and antibiofilm effects. Here, a novel dissolvable microneedle patch containing a benzoxaborole (BOB)-functionalized photosensitizer is designed, TPI-BOB, for bacteria-specific targeting and localized PDAT of multidrug-resistant biofilm infections in diabetic wounds. TPI-BOB integrates a BOB moiety for selective bacterial binding and a pyridine-based cationic group to enhance electrostatic interactions, showing superior antimicrobial activity in Gram-positive bacteria, particularly MRSA. To further optimize therapeutic delivery and combat biofilm-associated infections, TPI-BOB is incorporated into dissolvable microneedles, which rapidly disintegrate upon application to wound sites. This microneedle system facilitates localized, efficient delivery of TPI-BOB to bacterial biofilms, where it triggers photodynamic action under white-light irradiation. This treatment eradicates the biofilm, initiating tissue repair that reduces inflammation, promotes collagen deposition, and stimulates angiogenesis, accelerating healing. This work presents a novel strategy combining PDAT with microneedle-mediated drug delivery, offering a promising approach for treating diabetic wounds and other biofilm-related infections.

摘要

慢性难愈合伤口在糖尿病患者中很常见,是一个重大的临床挑战,会导致严重的发病率和医疗成本。持续存在的细菌生物膜是伤口愈合的关键障碍,必须有效清除它们以促进快速康复。在光动力抗菌疗法(PDAT)中,增强光敏剂与细菌生物膜之间的相互作用是实现高效抗菌和抗生物膜效果的关键。在此,设计了一种新型的可溶解微针贴片,其含有苯并硼氧六环(BOB)功能化的光敏剂TPI-BOB,用于糖尿病伤口中多药耐药生物膜感染的细菌特异性靶向和局部PDAT。TPI-BOB整合了用于选择性细菌结合的BOB部分和基于吡啶的阳离子基团以增强静电相互作用,在革兰氏阳性菌尤其是耐甲氧西林金黄色葡萄球菌(MRSA)中显示出优异的抗菌活性。为了进一步优化治疗递送并对抗生物膜相关感染,将TPI-BOB纳入可溶解微针中,微针在应用于伤口部位后会迅速崩解。这种微针系统有助于将TPI-BOB局部、高效地递送至细菌生物膜,在白光照射下引发光动力作用。这种治疗消除了生物膜,启动组织修复,减少炎症,促进胶原蛋白沉积,并刺激血管生成,加速愈合。这项工作提出了一种将PDAT与微针介导的药物递送相结合的新策略,为治疗糖尿病伤口和其他生物膜相关感染提供了一种有前景方法。

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