Key Laboratory of Molecular Target and Clinical Pharmacology, State Key Laboratory of Respiratory Disease, School of Pharmaceutical Sciences and Fifth Affiliated Hospital , Guangzhou Medical University , Guangzhou 511436 , China.
State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics & Center for Molecular Imaging and Translational Medicine, School of Public Health , Xiamen University , Xiamen 361102 , China.
ACS Nano. 2019 Feb 26;13(2):2427-2438. doi: 10.1021/acsnano.8b09336. Epub 2019 Jan 24.
Rapid emergence of multidrug resistant (MDR) "superbugs" poses a severe threat to global health. Notably, undeveloped diagnosis and concomitant treatment failure remain highly challenging. Herein, we report a sonotheranostic strategy to achieve bacteria-specific labeling and visualized sonodynamic therapy (SDT). Using maltohexaose-decorated cholesterol and bacteria-responsive lipid compositions, a smart nanoliposomes platform (MLP18) was developed for precise delivery of purpurin 18, a potent sonosensitizer proved in this study. Taking advantage of the bacteria-specific maltodextrin transport pathway, the prepared MLP18 can specifically target the bacterial infection site and accurately distinguish the foci from sterile inflammation or cancer with a highly selective fluorescence/photoacoustic signal on the bacteria-infected site of mice. Moreover, the bacteria-responsive feature of MLP18 activated an efficient release and internalization of high concentration sonosensitizer into bacterial cells, resulting in effective sonodynamic elimination of MDR bacteria. In situ MRI monitoring visualized such potent sonodynamic activity and indicated that MLP18-mediated SDT could successfully eradicate inflammation and abscess from mice with bacterial myositis. In view of the above advantages, the developed nanoliposomes may serve as a promising sonotheranostic platform against MDR bacteria in the areas of healthcare.
耐药性“超级细菌”的迅速出现对全球健康构成了严重威胁。值得注意的是,欠发达的诊断和伴随的治疗失败仍然是极具挑战性的。在此,我们报告了一种声疗策略,以实现细菌特异性标记和可视化声动力学治疗(SDT)。利用麦芽六糖修饰的胆固醇和细菌响应性脂质组成,开发了一种智能纳米脂质体平台(MLP18),用于精确递送电激活剂卟啉 18,在本研究中已证明其为有效的声敏剂。利用细菌特异性麦芽糊精转运途径,制备的 MLP18 可以特异性地靶向细菌感染部位,并通过在小鼠细菌感染部位具有高度选择性的荧光/光声信号,准确地区分焦点与无菌炎症或癌症。此外,MLP18 的细菌响应特性激活了高效释放和高浓度声敏剂进入细菌细胞的内化,从而有效消除了 MDR 细菌。原位 MRI 监测可视化了这种强大的声动力学活性,并表明 MLP18 介导的 SDT 可成功消除患有细菌性肌炎的小鼠的炎症和脓肿。鉴于上述优势,所开发的纳米脂质体可作为一种有前途的针对医疗保健领域中 MDR 细菌的声疗策略。