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聚合物纳米胶囊:角膜伤口愈合的一种潜在新疗法。

Polymeric nanocapsules: a potential new therapy for corneal wound healing.

作者信息

Reimondez-Troitiño Sonia, Alcalde Ignacio, Csaba Noemi, Íñigo-Portugués Almudena, de la Fuente María, Bech Federico, Riestra Ana C, Merayo-Lloves Jesús, Alonso María J

机构信息

Nanobiofar Group, Center for Research in Molecular Medicine and Chronic Diseases (CIMUS), Health Research Institute of Santiago de Compostela (IDIS), Department of Pharmacy and Pharmaceutical Technology, School of Pharmacy, University of Santiago de Compostela, Campus Vida, Santiago de Compostela, Spain.

Translational Medical Oncology Group, Health Research Institute of Santiago de Compostela (IDIS), Clinical University Hospital of Santiago de Compostela (CHUS), Santiago de Compostela, Spain.

出版信息

Drug Deliv Transl Res. 2016 Dec;6(6):708-721. doi: 10.1007/s13346-016-0312-0.

Abstract

Corneal injuries are one of the most frequently observed ocular diseases, leading to permanent damage and impaired vision if they are not treated properly. In this sense, adequate wound healing after injury is critical for keeping the integrity and structure of the cornea. The goal of this work was to assess the potential of polymeric nanocapsules, either unloaded or loaded with cyclosporine A or vitamin A, alone or in combination with mitomycin C, for the treatment of corneal injuries induced by photorefractive keratectomy surgery. The biopolymers selected for the formation of the nanocapsules were polyarginine and protamine, which are known for their penetration enhancement effect. The results showed that, following topical instillation to a mouse model of corneal injury, all the nanocapsule formulations, either unloaded or loaded with cyclosporine A or vitamin A, were able to stimulate corneal wound healing. In addition, the healing rate observed for the combination of unloaded protamine nanocapsules with mitomycin C was comparable to the one observed for the positive control Cacicol®, a biopolymer known as a corneal wound healing enhancer. Regarding the corneal opacity, the initial grade of corneal haze (>3) induced by the photorefractive keratectomy was more rapidly reduced in the case of the positive control, Cacicol®, than in corneas treated with the nanocapsules. In conclusion, this work shows that drug-free arginine-rich (polyarginine, protamine) nanocapsules exhibit a positive behavior with regard to their potential use for corneal wound healing.

摘要

角膜损伤是最常见的眼部疾病之一,如果治疗不当会导致永久性损伤和视力受损。从这个意义上说,损伤后适当的伤口愈合对于维持角膜的完整性和结构至关重要。这项工作的目的是评估聚合物纳米胶囊的潜力,这些纳米胶囊未负载或负载环孢素A或维生素A,单独或与丝裂霉素C联合使用,用于治疗准分子激光原位角膜磨镶术手术引起的角膜损伤。选择用于形成纳米胶囊的生物聚合物是聚精氨酸和鱼精蛋白,它们以增强渗透作用而闻名。结果表明,在对角膜损伤小鼠模型进行局部滴注后,所有纳米胶囊制剂,无论是未负载还是负载环孢素A或维生素A,都能够刺激角膜伤口愈合。此外,未负载的鱼精蛋白纳米胶囊与丝裂霉素C联合使用时观察到的愈合率与阳性对照Cacicol®(一种已知的角膜伤口愈合增强剂生物聚合物)观察到的愈合率相当。关于角膜混浊,准分子激光原位角膜磨镶术引起的初始角膜混浊等级(>3)在阳性对照Cacicol®的情况下比用纳米胶囊治疗的角膜更快降低。总之,这项工作表明,不含药物的富含精氨酸的(聚精氨酸、鱼精蛋白)纳米胶囊在其用于角膜伤口愈合的潜在用途方面表现出积极的行为。

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