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姜黄素-可变形脂质体-壳聚糖水凝胶作为一种新型伤口敷料

Curcumin-In-Deformable Liposomes-In-Chitosan-Hydrogel as a Novel Wound Dressing.

作者信息

Ternullo Selenia, Schulte Werning Laura Victoria, Holsæter Ann Mari, Škalko-Basnet Nataša

机构信息

Drug Transport and Delivery Research Group, Department of Pharmacy, University of Tromsø The Arctic University of Norway, Universitetsveien 57, 9037 Tromsø, Norway.

出版信息

Pharmaceutics. 2019 Dec 20;12(1):8. doi: 10.3390/pharmaceutics12010008.

Abstract

A liposomes-in-hydrogel system as an advanced wound dressing for dermal delivery of curcumin was proposed for improved chronic wound therapy. Curcumin, a multitargeting poorly soluble active substance with known beneficial properties for improved wound healing, was incorporated in deformable liposomes to overcome its poor solubility. Chitosan hydrogel served as a vehicle providing superior wound healing properties. The novel system should assure sustained skin delivery of curcumin, and increase its retention at the skin site, utilizing both curcumin and chitosan to improve the therapy outcome. To optimize the properties of the formulation and determine the effect of the liposomal charge on the hydrogel properties, curcumin-containing deformable liposomes (DLs) with neutral (NDLs), cationic (CDLs), and anionic (ADLs) surface properties were incorporated in chitosan hydrogel. The charged DLs affected the hydrogel's hardness, cohesiveness, and adhesiveness. Importantly, the incorporation of DLs, regardless of their surface charge, in chitosan hydrogel did not decrease the system's bioadhesion to human skin. Stability testing revealed that the incorporation of CDLs in hydrogel preserved hydrogel´s bioadhesiveness to a higher degree than both NDLs and ADLs. In addition, CDLs-in-hydrogel enabled the most sustained skin penetration of curcumin. The proposed formulation should be further evaluated in a chronic wound model.

摘要

一种用于姜黄素经皮递送的水凝胶包载脂质体系统被提出用于改善慢性伤口治疗。姜黄素是一种多靶点、难溶性的活性物质,已知对促进伤口愈合有益,它被包裹在可变形脂质体中以克服其低溶解性。壳聚糖水凝胶作为载体具有优异的伤口愈合特性。该新型系统应能确保姜黄素在皮肤中的持续递送,并增加其在皮肤部位的滞留,利用姜黄素和壳聚糖两者来改善治疗效果。为了优化制剂性能并确定脂质体电荷对水凝胶性能的影响,将具有中性(NDLs)、阳离子(CDLs)和阴离子(ADLs)表面性质的含姜黄素可变形脂质体(DLs)掺入壳聚糖水凝胶中。带电的DLs影响水凝胶的硬度、内聚性和粘附性。重要的是,无论其表面电荷如何,将DLs掺入壳聚糖水凝胶中均不会降低该系统对人体皮肤的生物粘附性。稳定性测试表明,将CDLs掺入水凝胶中比NDLs和ADLs能更好地保持水凝胶的生物粘附性。此外,水凝胶包载CDLs能使姜黄素在皮肤中的渗透最为持久。所提出的制剂应在慢性伤口模型中进一步评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/481d/7022996/388a78f30eb4/pharmaceutics-12-00008-g001.jpg

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