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首页> 外文期刊>Theranostics >Mild temperature photothermal assisted anti-bacterial and anti-inflammatory nanosystem for synergistic treatment of post-cataract surgery endophthalmitis
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Mild temperature photothermal assisted anti-bacterial and anti-inflammatory nanosystem for synergistic treatment of post-cataract surgery endophthalmitis

机译:温度温度光热辅助抗细菌和抗炎纳米系统,用于协同性白内障手术治疗眼镜炎

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Rationale: Endophthalmitis, which is one of the severest complications of cataract surgeries, can seriously threaten vision and even lead to irreversible blindness owing to its complicated microenvironment, including both local bacterial infection and severe inflammation. It is urgent to develop a comprehensive treatment for both anti-bacterial and anti-inflammatory effects. Methods: Herein, we developed AuAgCu 2 O-bromfenac sodium nanoparticles (AuAgCu 2 O-BS NPs), which was designed to combine anti-bacterial and anti-inflammatory effects for integrated therapy of endophthalmitis after cataract surgery. The AuAgCu 2 O-BS NPs could eradicate methicillin-resistant Staphylococcus aureus (MRSA) bacterial strain relied on their photodynamic effects and the release of metal ions (Ag and Cu ) by the hollow AuAgCu 2 O nanostructures mediated mild photothermal effects. The anti-inflammatory drug, bromfenac sodium, released from the nanoparticles were able to significantly reduce the local inflammation of the endophthalmitis and promote tissue rehabilitation. In vivo bacterial elimination and anti-inflammation were confirmed by a postcataract endophthalmitis rabbit model. Results: Excellent antibacterial ability of AuAgCu 2 O-BS NPs was verified both in vitro and in vivo. Ophthalmological clinical observation and pathologic histology analysis showed prominent treatment of inflammatory reaction. Importantly, the mild temperature photothermal effect not only promoted the release of metal ions and bromfenac sodium but also avoided the thermal damage of the surrounding tissues, which was more suitable for the practical application of ophthalmology due to the complex structure of the eyeball. Moreover, superior biocompatibility was approved by the preliminary toxicity investigations, including low cytotoxicity, negligible damage to major organs, and stable intraocular pressure. Conclusions: Our studies of nanosystem provide a promising synergic therapeutic strategy for postcataract endophthalmitis treatment with favorable prognosis and promise in clinical translations.? The author(s).
机译:理由:眼镜炎是白内障手术的最严重并发症之一,可以严重威胁视力,甚至导致由于其复杂的微环境,包括局部细菌感染和严重的炎症,导致不可逆转的失明。迫切需要为抗细菌和抗炎作用开发综合治疗方法。方法:在此,我们开发了Auagcu 2 O-Bromfenac钠纳米粒子(Auagccu 2 O-BS NPS),旨在将抗细菌和抗炎作用组合在白内障手术后对眼球炎的整合治疗结合。 AuAgCu 2 O-BS NPS可以消除耐甲氧脲的金黄色葡萄球菌(MRSA)细菌菌株依赖于其光动力学效应和通过中空AuagCu 2 O纳米结构介导的温和光热效应的金属离子(Ag和Cu)释放。从纳米颗粒释放的抗炎药溴芬酸钠能够显着降低眼球炎的局部炎症并促进组织康复。在体内细菌消除和抗炎中,通过临床眼球炎兔模型确认。结果:Auagcu 2 O-BS NPS的优异抗菌能力在体外和体内核实。眼科临床观察和病理组织学分析显示出炎症反应的突出治疗。重要的是,温和的温度光热效果不仅促进了金属离子和溴芬酸钠的释放,而且还避免了周围组织的热损伤,这更适合于眼球的复杂结构由于眼球的复杂结构的实际应用。此外,优异的生物相容性经初步毒性调查批准,包括低细胞毒性,对主要器官的损伤可忽略不计,并且稳定的眼内压力。结论:我们对纳米系统的研究为临床翻译的良好预后和承诺提供了临床眼镜炎的有前途的协同治疗策略。作者。

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