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具有可调主体-客体相互作用的机械响应药物加载系统用于眼部疾病治疗。

Mechanoresponsive Drug Loading System with Tunable Host-Guest Interactions for Ocular Disease Treatment.

机构信息

State Key Laboratory of Ophthalmology, Zhongshan Ophthalmic Center, Sun Yat-sen University, Guangzhou 510623, China.

Guangdong Engineering Technology Research Centre for Functional Biomaterials, School of Materials Science and Engineering, Sun Yat-sen University, Guangzhou 510006, China.

出版信息

ACS Biomater Sci Eng. 2022 Nov 14;8(11):4850-4862. doi: 10.1021/acsbiomaterials.2c00931. Epub 2022 Oct 10.

Abstract

Conventional administration of eye drops often requires high dosages and/or repetitive treatments to achieve therapeutic efficacy. This is inefficient and may result in side effects or even toxicity. Although many delivery systems of ophthalmic drugs have been reported, most of them work in a fixed format in which both the type and dose of the loaded drugs cannot be changed upon demand. To overcome this limitation, a hybrid double network hydrogel system composed of methacryloyl gelatin, pluronic F127 diacrylate, and β-cyclodextrin-modified oxidized dextran was developed. The hydrogels presented good mechanical strength and biocompatibility. In vitro assessments demonstrated that the hydrogels loaded with commonly used ophthalmic drugs could sustain the drug release for more than 21 days. This hydrogel system exhibited features of mechanoresponsive drug loading, and the capacity of drug loading could be significantly enhanced by macroscopically mechanical compression. Further in vivo evaluation of the drug delivery capacity showed that a dexamethasone-loaded hydrogel as a fornix insert effectively suppressed upregulation of proangiogenic factors and suture-induced corneal neovascularization in rats. This novel hydrogel system represents a promising drug delivery platform, which could potentially improve the treatments of ocular surface and other diseases.

摘要

传统的眼药水给药方式常常需要高剂量和/或重复治疗才能达到治疗效果。这种方式效率低下,并且可能导致副作用,甚至毒性。尽管已经报道了许多眼科药物的传递系统,但它们中的大多数都以固定的格式工作,其中加载药物的类型和剂量不能按需改变。为了克服这一限制,开发了一种由甲基丙烯酰化明胶、泊洛沙姆 F127 二丙烯酸酯和 β-环糊精修饰的氧化葡聚糖组成的混合双网络水凝胶系统。该水凝胶具有良好的机械强度和生物相容性。体外评估表明,负载常用眼科药物的水凝胶可以持续释放药物超过 21 天。该水凝胶系统具有机械响应性药物加载的特点,通过宏观机械压缩可以显著增强药物加载能力。进一步的体内药物输送能力评估表明,作为穹窿植入物的地塞米松水凝胶有效抑制了大鼠缝线诱导的角膜新生血管形成相关的促血管生成因子的上调。这种新型水凝胶系统代表了一种有前途的药物输送平台,可能会改善眼表面和其他疾病的治疗效果。

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