Luo Rui, Xu Huihui, Lin Qiaoni, Chi Jiaying, Liu Tingzhi, Jin Bingrui, Ou Jiayu, Xu Zejun, Peng Tingting, Quan Guilan, Lu Chao
State Key Laboratory of Bioactive Molecules and Druggability Assessment, Department of Pharmacy, Jinan University, Guangzhou 511436, China.
Department of Pharmacy, College of Pharmacy, Jinan University, Guangzhou 511436, China.
Pharmaceutics. 2024 Sep 8;16(9):1188. doi: 10.3390/pharmaceutics16091188.
Skin and soft-tissue infections require significant consideration because of their prolonged treatment duration and propensity to rapidly progress, resulting in severe complications. The primary challenge in their treatment stems from the involvement of drug-resistant microorganisms that can form impermeable biofilms, as well as the possibility of infection extending deep into tissues, thereby complicating drug delivery. Dissolving microneedle patches are an innovative transdermal drug-delivery system that effectively enhances drug penetration through the stratum corneum barrier, thereby increasing drug concentration at the site of infection. They offer highly efficient, safe, and patient-friendly alternatives to conventional topical formulations. This comprehensive review focuses on recent advances and emerging trends in dissolving-microneedle technology for antimicrobial skin-infection therapy. Conventional antibiotic microneedles are compared with those based on emerging antimicrobial agents, such as quorum-sensing inhibitors, antimicrobial peptides, and antimicrobial-matrix materials. The review also highlights the potential of innovative microneedles incorporating chemodynamic, nanoenzyme antimicrobial, photodynamic, and photothermal antibacterial therapies. This review explores the advantages of various antimicrobial therapies and emphasizes the potential of their combined application to improve the efficacy of microneedles. Finally, this review analyzes the druggability of different antimicrobial microneedles and discusses possible future developments.
皮肤和软组织感染需要引起高度重视,因为其治疗周期长且有迅速进展的倾向,会导致严重并发症。其治疗的主要挑战源于耐药微生物的参与,这些微生物可形成不可渗透的生物膜,以及感染可能深入组织,从而使药物递送变得复杂。溶蚀性微针贴片是一种创新的透皮给药系统,可有效增强药物透过角质层屏障的渗透能力,从而提高感染部位的药物浓度。它们为传统局部制剂提供了高效、安全且对患者友好的替代方案。这篇综述全面聚焦于溶蚀性微针技术在抗微生物皮肤感染治疗方面的最新进展和新趋势。将传统抗生素微针与基于群体感应抑制剂、抗菌肽和抗菌基质材料等新型抗微生物剂的微针进行了比较。该综述还强调了结合化学动力学、纳米酶抗菌、光动力和光热抗菌疗法的创新微针的潜力。这篇综述探讨了各种抗微生物疗法的优势,并强调了它们联合应用以提高微针疗效的潜力。最后,这篇综述分析了不同抗微生物微针的成药性,并讨论了未来可能的发展方向。