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多孔壳聚糖中磷酸地塞米松的释放动力学:气凝胶与冷冻凝胶的比较。

Release Kinetics of Dexamethasone Phosphate from Porous Chitosan: Comparison of Aerogels and Cryogels.

机构信息

MINES Paris, PSL University, Center for Materials Forming (CEMEF), UMR CNRS 7635, CS 10207, 06904 Sophia Antipolis, France.

Department of Polymers for Health and Biomaterials, IBMM, Univ. Montpellier, CNRS, ENSCM, 34090 Montpellier, France.

出版信息

Biomacromolecules. 2023 Oct 9;24(10):4494-4501. doi: 10.1021/acs.biomac.2c01408. Epub 2023 Mar 23.

Abstract

Porous chitosan materials as potential wound dressings were prepared via dissolution of chitosan, nonsolvent-induced phase separation in NaOH-water, formation of a hydrogel, and either freeze-drying or supercritical CO drying, leading to "cryogels" and "aerogels", respectively. The hydrophilic drug dexamethasone sodium phosphate was loaded by impregnation of chitosan hydrogel, and the release from cryogel or aerogel was monitored at two pH values relevant for wound healing. The goal was to compare the drug-loading efficiency and release behavior from aerogels and cryogels as a function of the drying method, the materials' physicochemical properties (density, morphology), and the pH of the release medium. Cryogels exhibited a higher loading efficiency and a faster release in comparison with aerogels. A higher sample density and lower pH value of the release medium resulted in a more sustained release in the case of aerogels. In contrast, for cryogels, the density and pH of the release medium did not noticeably influence release kinetics. The Korsmeyer-Peppas model showed the best fit to describe the release from the porous chitosan materials into the different media.

摘要

通过溶解壳聚糖、在 NaOH 水溶液中进行非溶剂诱导相分离、形成水凝胶,然后分别进行冷冻干燥或超临界 CO2 干燥,制备了用作潜在伤口敷料的多孔壳聚糖材料,分别得到“冷冻凝胶”和“气凝胶”。将亲水性药物磷酸地塞米松钠通过壳聚糖水凝胶的浸渍进行负载,并在与伤口愈合相关的两个 pH 值下监测从冷冻凝胶和气凝胶中的释放。目的是比较作为干燥方法、材料的物理化学性质(密度、形态)和释放介质 pH 值函数的气凝胶和冷冻凝胶的药物负载效率和释放行为。与气凝胶相比,冷冻凝胶表现出更高的负载效率和更快的释放速度。在气凝胶的情况下,较高的样品密度和较低的释放介质 pH 值导致更持续的释放。相比之下,对于冷冻凝胶,释放介质的密度和 pH 值并没有明显影响释放动力学。Korsmeyer-Peppas 模型最适合描述多孔壳聚糖材料在不同介质中的释放情况。

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