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一种基于交联黄原胶的可灭菌平台,用于控制释放聚合物胶束:眼部应用于将神经保护化合物递送至后眼部。

A sterilizable platform based on crosslinked xanthan gum for controlled-release of polymeric micelles: Ocular application for the delivery of neuroprotective compounds to the posterior eye segment.

机构信息

ADDRes Lab, Department of Food and Drug, University of Parma, Parco Area delle Scienze 27/a, 43124 Parma, Italy.

Department of Chemistry, Life Science and Environmental Sustainability, University of Parma, Parco Area delle Scienze 17/a, 43124 Parma, Italy.

出版信息

Int J Pharm. 2024 May 25;657:124141. doi: 10.1016/j.ijpharm.2024.124141. Epub 2024 Apr 26.

Abstract

TPGS (D-α-tocopheryl polyethylene glycol 1000 succinate) polymeric micelles show interesting properties for ocular administration thanks to their solubilization capability, nanometric size and tissue penetration ability. However, micelles formulations are generally characterized by low viscosity, poor adhesion and very short retention time at the administration site. Therefore, the idea behind this work is the preparation and characterization of a crosslinked film based on xanthan gum that contains TPGS micelles and is capable of controlling their release. The system was loaded with melatonin and cyclosporin A, neuroprotective compounds to be delivered to the posterior eye segment. Citric acid and heating at different times and temperatures were exploited as crosslinking approach, giving the possibility to tune swelling, micelles release and drug release. The biocompatibility of the platform was confirmed by HET-CAM assay. Ex vivo studies on isolated porcine ocular tissues, conducted using Franz cells and two-photon microscopy, demonstrated the potential of the xanthan gum-based platform and enlightened micelles penetration mechanism. Finally, the sterilization step was approached, and a process to simultaneously crosslink and sterilize the platform was developed.

摘要

TPGS(D-α-生育酚聚乙二醇 1000 琥珀酸酯)聚合物胶束因其增溶能力、纳米尺寸和组织穿透能力,显示出用于眼部给药的有趣特性。然而,胶束制剂通常具有低粘度、差的附着力和在给药部位非常短的保留时间的特点。因此,这项工作的思路是制备和表征一种基于黄原胶的交联膜,该膜含有 TPGS 胶束,能够控制其释放。该系统负载了褪黑素和环孢素 A,这两种神经保护化合物将被递送到眼后段。使用柠檬酸和在不同时间和温度下加热作为交联方法,使体系具有可调的溶胀性、胶束释放和药物释放性能。通过 HET-CAM 试验证实了该平台的生物相容性。使用 Franz 细胞和双光子显微镜进行的离体猪眼组织的体外研究表明,基于黄原胶的平台具有潜力,并阐明了胶束穿透机制。最后,还探讨了灭菌步骤,并开发了一种同时交联和灭菌该平台的方法。

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