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Antibiotic-free ocular sterilization while suppressing immune response to protect corneal transparency in infectious keratitis treatment

JOURNAL OF CONTROLLED RELEASE [2024]
Yaou Peng, Shuaiyue Pang, Yanlin Zeng, Jiayi Wei, Jinda Lu, Yangfan Ruan, Xinyu Hong, Xiuhui He, Xiaoying Chu, Yishun Guo, Hanwen Guo, Siyuan Qian, Zipei Jiang, Zhengxuan Jiang, Bailiang Wang
ABSTRACT

Clinical guidelines for infectious keratitis treatment require that anti-inflammatory drugs can only be used after infection elimination, which causes irreversible inflammatory damage to the cornea. In this work, photodynamic metal organic frameworks (PCN-224) were used as drug carrier to load Pt NPs with catalase-like activity and anti-inflammatory drug (Dexamethasone, DXMS) for endogenous oxygen generation and reduced corneal damage, respectively. The photodynamic therapy (PDT) effect was greatly enhanced in bacteria elimination and bacterial biofilms removal through catalysis of overexpressed hydrogen peroxide (H 2 O 2 , ∼8.0 and 31.0 μM in bacterial solution and biofilms, respectively) into oxygen by Pt NPs. More importantly, the cationic liposome modified PCN-224@Pt@DXMS@Liposomes (PPDL NPs) greatly enhanced the adhesion to negatively charged ocular surface and penetration into corneal barrier and bacterial biofilms. Both in vitro cell viability test and in vivo eye irritation tests proved good biocompatibility of PPDL NPs under 660 nm laser irradiation. Furthermore, PDT of PPDL NPs in rapid bacteria killing was verified through infectious keratitis animal model. The superior bactericidal effect of antibacterial materials could largely replace the bactericidal effect of the immune system. It is worth mentioning that this simultaneous sterilization and anti-inflammation treatment mode is a new exploration against the clinical treatment guidelines.

MATERIALS

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