Suppr超能文献

基于壳聚糖-石墨烯量子点的奥沙利铂分子印迹聚合物的释放。

Chitosan-graphene quantum dot-based molecular imprinted polymer for oxaliplatin release.

机构信息

Department of Chemistry, Faculty of Basic Sciences, Azarbaijan Shahid Madani University, Tabriz, Iran.

出版信息

J Biomater Sci Polym Ed. 2024 Oct;35(14):2115-2136. doi: 10.1080/09205063.2024.2366645. Epub 2024 Jun 17.

Abstract

Molecularly imprinted polymers (MIPs) have garnered the interest of researchers in the drug delivery due to their advantages, such as exceptional durability, stability, and selectivity. In this study, a biocompatible MIP drug adsorption and delivery system with high loading capacity and controlled release, was prepared based on chitosan (CS) and graphene quantum dots (GQDs) as the matrix, and the anticancer drug oxaliplatin (OXAL) as the template. Additionally, samples without the drug (non-imprinted polymers, NIPs) were created for comparison. GQDs were produced using the hydrothermal method, and samples underwent characterization through FTIR, XRD, FESEM, and TGA. Various experiments were conducted to determine the optimal pH for drug adsorption, along with kinetic and isotherm studies, selectivity assessments, drug release and kinetic evaluations. The highest drug binding capacity was observed at pH 6.5. The results indicated the Lagergren-first-order kinetic model (with rate constant of 0.038 min) and the Langmuir isotherm (with maximum adsorption capacity of 17.15 mg g) exhibited better alignment with the experimental data. The developed MIPs displayed significant selectivity towards OXAL, by an imprinting factor of 2.88, in comparison to two similar drugs (cisplatin and carboplatin). Furthermore, the analysis of the drug release profile showed a burst release for CS-Drug (87% within 3 h) at pH 7.4, where the release from the CS-GQD-Drug did not occur at pH 7.4 and 10; instead, the release was observed at pH 1.2 in a controlled manner (100% within 28 h). Consequently, this specific OXAL adsorption and delivery system holds promise for cancer treatment.

摘要

分子印迹聚合物(MIPs)因其具有卓越的耐用性、稳定性和选择性等优点,引起了药物输送领域研究人员的关注。在这项研究中,基于壳聚糖(CS)和石墨烯量子点(GQDs)作为基质,制备了一种具有高负载能力和控制释放的生物相容性 MIP 药物吸附和输送系统,以抗癌药物奥沙利铂(OXAL)为模板。此外,还制备了不含药物的样品(非印迹聚合物,NIPs)作为对照。通过水热法制备了 GQDs,通过 FTIR、XRD、FESEM 和 TGA 对样品进行了表征。进行了各种实验来确定药物吸附的最佳 pH 值,以及动力学和等温线研究、选择性评估、药物释放和动力学评估。在 pH 6.5 时观察到最高的药物结合能力。结果表明,Lagergren 一级动力学模型(速率常数为 0.038 min)和 Langmuir 等温线(最大吸附容量为 17.15 mg g)与实验数据更吻合。与两种类似药物(顺铂和卡铂)相比,所开发的 MIPs 对 OXAL 表现出显著的选择性,印迹因子为 2.88。此外,药物释放曲线分析表明,在 pH 7.4 时 CS-Drug(3 小时内 87%释放)会发生突释,而在 pH 7.4 和 10 时 CS-GQD-Drug 不会发生释放;相反,在 pH 1.2 时以受控方式(28 小时内 100%释放)释放。因此,这种特定的 OXAL 吸附和输送系统有望用于癌症治疗。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验