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作为智能药物递送系统的无热溶剂交联pH/热敏水凝胶

Thermally Solvent-Free Cross-Linked pH/Thermosensitive Hydrogels as Smart Drug Delivery Systems.

作者信息

Bucatariu Sanda, Cosman Bogdan, Constantin Marieta, Ailiesei Gabriela Liliana, Rusu Daniela, Fundueanu Gheorghe

机构信息

"Petru Poni" Institute of Macromolecular Chemistry, Grigore Ghica Voda Alley 41A, 700487 Iasi, Romania.

Stem Cell Biology Laboratory, Institute of Cellular Biology and Pathology "Nicolae Simionescu" of the Romanian Academy, 8 B. P. Hasdeu Street, District 5, 050568 Bucharest, Romania.

出版信息

Gels. 2024 Dec 18;10(12):834. doi: 10.3390/gels10120834.

Abstract

An imbalance in the body's pH or temperature may modify the immune response and result in ailments such as autoimmune disorders, infectious diseases, cancer, or diabetes. Dual pH- and thermo-responsive carriers are being evaluated as advanced drug delivery microdevices designed to release pharmaceuticals in response to external or internal stimuli. A novel drug delivery system formulated as hydrogel was developed by combining a pH-sensitive polymer (the "biosensor") with a thermosensitive polymer (the delivery component). Thus, the hydrogel was created by cross-linking, using a solvent-free thermal approach, of poly(N-isopropylacrylamide-co-N-hydroyethyl acrylamide), P(NIPAAm-co-HEAAm), and poly(methylvinylether-alt-maleic acid), P(MVE/MA). The chemical structure of the polymers and hydrogels was analyzed using Fourier-transform infrared (FTIR) and proton nuclear magnetic resonance (H NMR) spectroscopies. The pH/thermosensitive hydrogel loses its thermosensitivity under physiological conditions but, remarkably, can recover the thermosensitive capabilities when certain physiologically active biomolecules, acting as triggering agents, electrostatically interact with pH-sensitive units. Our research aimed to develop a drug delivery system that could identify the disturbance of normal physiological parameters and instantaneously send a signal to thermosensitive units, which would collapse and modulate the release profiles of the drug.

摘要

人体pH值或温度的失衡可能会改变免疫反应,并导致自身免疫性疾病、传染病、癌症或糖尿病等疾病。双pH和热响应载体正在作为先进的药物递送微器件进行评估,这些微器件旨在响应外部或内部刺激释放药物。通过将pH敏感聚合物(“生物传感器”)与热敏聚合物(递送成分)相结合,开发了一种配制为水凝胶的新型药物递送系统。因此,水凝胶是通过无溶剂热交联方法,由聚(N-异丙基丙烯酰胺-co-N-羟乙基丙烯酰胺)P(NIPAAm-co-HEAAm)和聚(甲基乙烯基醚-alt-马来酸)P(MVE/MA)交联而成。使用傅里叶变换红外(FTIR)光谱和质子核磁共振(H NMR)光谱分析了聚合物和水凝胶的化学结构。pH/热敏水凝胶在生理条件下失去其热敏性,但值得注意的是,当某些作为触发剂的生理活性生物分子与pH敏感单元发生静电相互作用时,它可以恢复热敏能力。我们的研究旨在开发一种药物递送系统,该系统能够识别正常生理参数的紊乱,并立即向热敏单元发送信号,热敏单元将解体并调节药物的释放曲线。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c932/11675986/ca012568c551/gels-10-00834-g001.jpg

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