利用天然材料原位合成并表征具有磁核壳结构的 Fe@Si/zeolite Na 复合材料,提高姜黄素负载能力

Munasir Nasir, Nuhaa Faaizatunnisa, M. N. Ariesta, Lydia Rohmawati, Rifqi Aulia Nurazizah
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摘要

姜黄素是一种天然多酚,被用于多种传统药物中。然而,姜黄素的固有特性,如降解和代谢快、生物利用率低、半衰期短等,都是亟待解决的严重问题。为此,我们开发了一种在沸石框架中加入天然磁芯的药物载体,并将其应用于姜黄素在乙醇溶液中的负载。在这一系统中,姜黄素被包裹在沸石 Na(ZNA)磁芯壳结构(Fe@Si/ZNA)中,而这种磁芯壳结构可以通过原位法轻松合成。利用共沉淀法从天然材料中合成了 Fe3O4 纳米粒子。利用振动样品磁强计、傅立叶变换红外光谱、透射电子显微镜和 X 射线衍射对制备的磁性核壳结构和复合材料进行了分析。结果发现,在含有 9% 纳米颗粒的 ZNA 复合材料中,姜黄素的累积负载量达到了 90.70%,半衰期相对较长,为 32.49 分钟。对复合材料中姜黄素负载量的稳定性测试表明,在沸石框架中添加磁性颗粒也提高了复合材料结构的稳定性。吸附动力学和等温线研究还发现,该系统遵循伪二阶和朗缪尔等温线模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Facile in situ synthesis and characterization of Fe@Si/zeolite Na composites with magnetic core–shell structures from natural materials for enhanced curcumin loading capacity
Curcumin is a natural polyphenol that is used in various traditional medicines. However, its inherent properties, such as its rapid degradation and metabolism, low bioavailability, and short half-life, are serious problems that must be resolved. To this end, a drug carrier incorporating natural magnetic cores in a zeolite framework was developed and applied to the loading of curcumin in ethanol solutions. In this system, curcumin is encapsulated in a zeolite Na (ZNA) magnetic core–shell structure (Fe@Si/ZNA), which can be easily synthesized using an in situ method. Synthesis of Fe3O4 nanoparticles was carried out from natural materials using a co-precipitation method. Analysis of the prepared magnetic core–shell structures and composites was carried out using vibrating-sample magnetometery, Fourier transform infrared spectroscopy, transmission electron microscopy, and x-ray diffraction. The cumulative loading of curcumin in the ZNA composite with 9% nanoparticles was found to reach 90.70% with a relatively long half-life of 32.49 min. Stability tests of curcumin loading in the composite showed that adding magnetic particles to the zeolite framework also increased the stability of the composite structure. Adsorption kinetics and isotherm studies also found that the system follows the pseudo-second-order and Langmuir isotherm models.
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