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基于顺序互穿聚合物网络的纳米复合水凝胶薄膜作为药物递送平台

Nanocomposite Hydrogel Films Based on Sequential Interpenetrating Polymeric Networks as Drug Delivery Platforms.

作者信息

Toader Gabriela, Podaru Alice Ionela, Diacon Aurel, Rusen Edina, Mocanu Alexandra, Brincoveanu Oana, Alexandru Mioara, Zorila Florina Lucica, Bacalum Mihaela, Albota Florin, Gavrila Ana Mihaela, Trica Bogdan, Rotariu Traian, Ionita Mariana, Istrate Marcel

机构信息

Military Technical Academy "Ferdinand I", 39-49 G. Cosbuc Blvd., 050141 Bucharest, Romania.

Faculty of Chemical Engineering and Biotechnologies, University Politehnica of Bucharest, 1-7 Gheorghe Polizu Street, 011061 Bucharest, Romania.

出版信息

Polymers (Basel). 2023 Jul 26;15(15):3176. doi: 10.3390/polym15153176.

Abstract

In this study, novel materials have been obtained via a dual covalent and ionic crosslinking strategies, leading to the formation of a fully interpenetrated polymeric network with remarkable mechanical performances as drug delivery platforms for dermal patches. The polymeric network was obtained by the free-radical photopolymerization of N-vinylpyrrolidone using tri(ethylene glycol) divinyl ether as crosslinker in the presence of sodium alginate (1%, weight%). The ionic crosslinking was achieved by the addition of Zn, ions which were coordinated by the alginate chains. Bentonite nanoclay was incorporated in hydrogel formulations to capitalize on its mechanical reinforcement and adsorptive capacity. TiO and ZnO nanoparticles were also included in two of the samples to evaluate their influence on the morphology, mechanical properties and/or the antimicrobial activity of the hydrogels. The double-crosslinked nanocomposite hydrogels presented a good tensile resistance (1.5 MPa at 70% strain) and compression resistance (12.5 MPa at a strain of 70%). Nafcillin was loaded into nanocomposite hydrogel films with a loading efficiency of up to 30%. The drug release characteristics were evaluated, and the profile was fitted by mathematical models that describe the physical processes taking place during the drug transfer from the polymer to a PBS (phosphate-buffered saline) solution. Depending on the design of the polymeric network and the nanofillers included, it was demonstrated that the nafcillin loaded into the nanocomposite hydrogel films ensured a high to moderate activity against and and no activity against . Furthermore, it was demonstrated that the presence of zinc ions in these polymeric matrices can be correlated with the inactivation of .

摘要

在本研究中,通过双共价和离子交联策略获得了新型材料,从而形成了具有卓越机械性能的完全互穿聚合物网络,作为用于皮肤贴片的药物递送平台。该聚合物网络是在海藻酸钠(1%,重量)存在下,以三(乙二醇)二乙烯基醚为交联剂,通过N-乙烯基吡咯烷酮的自由基光聚合反应得到的。离子交联是通过添加与海藻酸链配位的锌离子来实现的。将膨润土纳米粘土掺入水凝胶配方中,以利用其机械增强和吸附能力。在两个样品中还加入了TiO和ZnO纳米颗粒,以评估它们对水凝胶的形态、机械性能和/或抗菌活性的影响。双交联纳米复合水凝胶具有良好的拉伸抗性(在70%应变下为1.5 MPa)和压缩抗性(在70%应变下为12.5 MPa)。将萘夫西林负载到纳米复合水凝胶薄膜中,负载效率高达30%。对药物释放特性进行了评估,并通过数学模型拟合了描述药物从聚合物转移到PBS(磷酸盐缓冲盐水)溶液过程中发生的物理过程的曲线。根据聚合物网络的设计和所包含的纳米填料,证明负载在纳米复合水凝胶薄膜中的萘夫西林对[具体菌种1]和[具体菌种2]具有高到中等的活性,对[具体菌种3]无活性。此外,证明了这些聚合物基质中锌离子的存在与[具体菌种4]的失活有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06b1/10420953/9bf6aa6dc463/polymers-15-03176-g001.jpg

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