International Joint Research Center for Photo-responsive Molecules and Materials, School of Chemical and Material Engineering, Jiangnan University, Wuxi, 214122, P. R. China.
Small. 2023 Aug;19(31):e2207868. doi: 10.1002/smll.202207868. Epub 2023 Mar 25.
Antibacterial photodynamic therapy (aPDT) is a promising antibiotics-alternative strategy for bacterial infectious diseases, which features broad-spectrum antibacterial activity with a low risk of inducing bacterial resistance. However, clinical applications of aPDT are still hindered by the hydrophobicity-caused inadequate photodynamic activity of conventional photosensitizers and the hypoxic microenvironment of bacterial infections. To address these problems, herein, a promising strategy is developed to achieve specific chemiluminescence (CL) imaging and enhanced PDT of bacterial infections using hemin-modified carbon dots (H-CDs). The H-CDs can be facilely prepared and exhibit favorable water solubility, augmented photodynamic activity, and unique peroxidase-mimicking capacity. Compared with the free CDs, the photodynamic efficacy of H-CDs is significantly augmented due to the increased electron-hole separation efficiency. Moreover, the peroxidase catalytic performance of H-CDs enables not only infection identification via bacterial infection microenvironment-responsive CL imaging but also oxygen self-supplied aPDT with hypoxia-relief-enhanced bacteria inactivation effects. Finally, the enhanced aPDT efficiencies of H-CDs are validated in both in vivo abscess and infected wound models. This work may provide an effective antibacterial platform for the selective imaging-guided treatment of bacterial infections.
抗菌光动力疗法 (aPDT) 是一种有前途的抗生素替代策略,可用于治疗细菌感染性疾病,具有广谱抗菌活性,且诱导细菌耐药性的风险较低。然而,aPDT 的临床应用仍受到传统光敏剂的疏水性导致的光动力活性不足和细菌感染的缺氧微环境的限制。为了解决这些问题,本文提出了一种有前途的策略,即使用血红素修饰的碳点 (H-CDs) 实现细菌感染的特异性化学发光 (CL) 成像和增强的 PDT。H-CDs 可以简便地制备,具有良好的水溶性、增强的光动力活性和独特的过氧化物酶模拟能力。与游离 CDs 相比,由于电子-空穴分离效率的提高,H-CDs 的光动力效率显著提高。此外,H-CDs 的过氧化物酶催化性能不仅可以通过细菌感染微环境响应的 CL 成像进行感染识别,还可以通过缓解缺氧的氧自供应 aPDT 增强细菌失活效果。最后,在体内脓肿和感染伤口模型中验证了 H-CDs 的增强 aPDT 效率。这项工作可能为细菌感染的选择性成像引导治疗提供了一种有效的抗菌平台。