作为新型阿莫西林给药系统的聚丙烯酰胺/淀粉/明胶复合水凝胶

IF 5 3区 化学 Q1 POLYMER SCIENCE Gels Pub Date : 2024-09-29 DOI:10.3390/gels10100625
Yağmur Poyraz, Nisa Baltacı, Gana Hassan, Oubadah Alayoubi, Bengü Özuğur Uysal, Önder Pekcan
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引用次数: 0

摘要

本研究探讨了由聚丙烯酰胺(PAAm)、淀粉和明胶组成的新型复合水凝胶作为阿莫西林给药系统的开发和表征。研究了复合水凝胶的光学特性、溶胀行为和药物释放曲线,以评估其功效和潜在应用。研究采用了紫外可见光谱来测定其光学特性,结果表明其在可见光范围内具有显著的透明度,而这正是生物医学应用所必需的。在聚丙烯酰胺基质中加入淀粉和明胶可显著提高水凝胶的溶胀能力和生物相容性。给药研究表明,阿莫西林在模拟胃肠液中具有持续释放特性,这对于长时间维持治疗水平至关重要。研究结果表明,PAAm/淀粉/明胶复合水凝胶具有良好的溶胀性能、诱人的光学特性和可控的药物释放机制。这些结果表明,这种水凝胶作为一种给药方法具有相当大的潜力,为提高阿莫西林和其他药物的药效提供了一条可行的途径。
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Composite Hydrogel of Polyacrylamide/Starch/Gelatin as a Novel Amoxicillin Delivery System.

This study investigates the development and characterization of a novel composite hydrogel composed of polyacrylamide (PAAm), starch, and gelatin for use as an amoxicillin delivery system. The optical properties, swelling behavior, and drug release profile of the composite hydrogel's were studied to evaluate its efficacy and potential applications. UV-visible spectroscopy was employed to determine the optical properties, revealing significant transparency in the visible range, which is essential for biomedical applications. The incorporation of starch and gelatin into the polyacrylamide matrix significantly enhanced the hydrogel's swelling capacity and biocompatibility. Studies on drug delivery demonstrated a sustained release profile of amoxicillin in simulated gastrointestinal fluids, which is essential for maintaining therapeutic levels for a prolonged amount of time. The results indicate that the composite hydrogel of PAAm/starch/gelatin has good swelling behavior, appealing optical characteristics, and a promising controlled drug release mechanism. These results point to this hydrogel's considerable potential as a drug delivery method, providing a viable path toward enhancing the medicinal effectiveness of amoxicillin and maybe other medications.

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来源期刊
Gels
Gels POLYMER SCIENCE-
CiteScore
4.70
自引率
19.60%
发文量
707
审稿时长
11 weeks
期刊介绍: The journal Gels (ISSN 2310-2861) is an international, open access journal on physical (supramolecular) and chemical gel-based materials. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the maximum length of the papers, and full experimental details must be provided so that the results can be reproduced. Short communications, full research papers and review papers are accepted formats for the preparation of the manuscripts. Gels aims to serve as a reference journal with a focus on gel materials for researchers working in both academia and industry. Therefore, papers demonstrating practical applications of these materials are particularly welcome. Occasionally, invited contributions (i.e., original research and review articles) on emerging issues and high-tech applications of gels are published as special issues.
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