Lu Zhouyu, Fan Wenjie, Ye Yang, Huang Yue, Zhou Xianchi, Zhang Yin, Cui Wenyu, Ji Jian, Yao Ke, Han Haijie
Eye Center, the Second Affiliated Hospital, School of Medicine, Zhejiang University, Zhejiang Provincial Key Laboratory of Ophthalmology, Zhejiang Provincial Clinical Research Center for Eye Diseases, Zhejiang Provincial Engineering Institute on Eye Diseases, Hangzhou 310009, P. R. China.
MOE Key Laboratory of Macromolecule Synthesis and Functionalization of Ministry of Education, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310058, P. R. China.
ACS Nano. 2025 Jan 21;19(2):2268-2285. doi: 10.1021/acsnano.4c12195. Epub 2025 Jan 7.
Biofilm-related bacterial keratitis is a severe ocular infection that can result in drastic vision impairment and even blindness. However, the therapeutic efficiency of clinical antibiotic eyedrops is often compromised because the bacteria in the biofilms resist bactericide the community genetic regulation, namely, bacterial quorum sensing. Herein, quercetin (QCT)-loaded star-shaped antibacterial peptide polymer (SAPP), QCT@SAPP, is developed based on a "drug" in a "drug" strategy for inhibiting and eradicating biofilms on the cornea. The natural antibacterial peptide-mimic SAPP with the positively charged amphipathic structure not only enables QCT@SAPP to penetrate the biofilms readily but also selectively adheres to the highly negatively charged , releasing the loaded QCT into the bacteria to regulate quorum sensing by inhibiting , , , and . Thanks to its robust bactericidal ability from SAPP, QCT@SAPP can eliminate more than 99.99% of biofilms. Additionally, QCT@SAPP displayed outstanding performance in relieving ocular inflammation by significantly downregulating pro-inflammatory cytokines and profiting from scavenging reactive oxygen species by releasing QCT, which finally helps to restore visual function. In conclusion, QCT@SAPP, with good compatibility, exerts excellent therapeutic effects in a bacterial keratitis mice model, making it a promising candidate for controlling bacterial biofilm-induced infections, including bacterial keratitis.
生物膜相关的细菌性角膜炎是一种严重的眼部感染,可导致严重的视力损害甚至失明。然而,临床抗生素眼药水的治疗效果往往受到影响,因为生物膜中的细菌对杀菌剂具有抗性,这与群体遗传调控即细菌群体感应有关。在此,基于“药”中载“药”策略,开发了载有槲皮素(QCT)的星形抗菌肽聚合物(SAPP),即QCT@SAPP,用于抑制和根除角膜上的生物膜。具有带正电荷的两亲结构的天然抗菌肽模拟物SAPP不仅使QCT@SAPP能够轻易穿透生物膜,还能选择性地粘附在带高度负电荷的[具体部位未明确]上,将负载的QCT释放到细菌中,通过抑制[相关基因或蛋白未明确]来调节群体感应。由于SAPP具有强大的杀菌能力,QCT@SAPP能够消除超过99.99%的生物膜。此外,QCT@SAPP通过显著下调促炎细胞因子以及通过释放QCT清除活性氧来减轻眼部炎症,表现出出色的性能,最终有助于恢复视觉功能。总之,具有良好相容性的QCT@SAPP在细菌性角膜炎小鼠模型中发挥了优异的治疗效果,使其成为控制包括细菌性角膜炎在内的细菌生物膜引起的感染的有前途的候选药物。