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纳他霉素双分子层离子敏感原位水凝胶增强和延长眼部药物治疗:体外渗透、细胞毒性和体内评价。

Ion-sensitive in situ hydrogels of natamycin bilosomes for enhanced and prolonged ocular pharmacotherapy: in vitro permeability, cytotoxicity and in vivo evaluation.

机构信息

a Department of Pharmaceutics and Drug Delivery, School of Pharmacy , The University of Mississippi , Oxford , MS , USA.

b Department of Ophthalmology , The University of Tennessee Health Science Center, Hamilton Eye Institute , Memphis , TN , USA.

出版信息

Artif Cells Nanomed Biotechnol. 2018;46(sup1):1039-1050. doi: 10.1080/21691401.2018.1443117. Epub 2018 Feb 23.

Abstract

Delivery of therapeutic molecules into the deeper ocular compartments is mainly hampered by short precorneal residence and limited transmembrane permeability of topically administered drugs. Hence, the current study was undertaken to fabricate the ion-sensitive in situ gels of natamycin (NT) bilosomes (NB) for efficient ocular delivery. The effect of cholesterol and sodium taurocholate proportion on the properties of the bilosomes were studied and the formulation with better physicochemical properties was optimized and utilized to derive the in situ gelling system (IG). The impact of type/composition of gelling agent on the formation and characteristics of the hydrogel was investigated. The hydrogel formed from IG with 0.3% w/v gellan gum showed optimal viscoelastic and adhesive characteristics. The ocular safety and cytocompatibility of NB and its IG was confirmed by corneal histology and in vitro cytotoxicity evaluation. A 6- to 9-fold enhancement in the transcorneal flux of NB demonstrated efficient ocular penetration of bilosomes. Moreover, the superior mean dose normalized NT levels in the ocular tissues of rabbits treated with optimized NB and IG illustrated the effectiveness of bilosomes loaded ion-sensitive in situ hydrogels as a potential platform for the improved and prolonged ocular pharmacotherapy.

摘要

将治疗分子递送到眼部深层隔室主要受到以下因素的阻碍

短暂的角膜前停留时间和局部给予药物的跨膜通透性有限。因此,本研究旨在制备那他霉素(NT)双层囊泡(NB)的离子敏感原位凝胶,以实现有效的眼部递药。研究了胆固醇和牛磺胆酸钠比例对双层囊泡性质的影响,并对具有更好理化性质的配方进行了优化,以得到原位凝胶系统(IG)。考察了不同类型/组成的凝胶剂对水凝胶形成和特性的影响。由 IG 形成的含有 0.3%w/v 结冷胶的水凝胶表现出最佳的粘弹性和粘性特征。通过角膜组织学和体外细胞毒性评价证实了 NB 及其 IG 的眼部安全性和细胞相容性。NB 的跨角膜通量增加了 6-9 倍,表明双层囊泡具有高效的眼部穿透性。此外,接受优化的 NB 和 IG 治疗的兔子眼部组织中平均剂量归一化 NT 水平显著提高,这表明负载离子敏感原位水凝胶的双层囊泡作为改善和延长眼部药物治疗的潜在平台是有效的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f4f/6148389/309fe1763bf8/nihms-1503682-f0001.jpg

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