Hubei Key Laboratory of Radiation Chemistry and Functional Materials, School of Nuclear Technology and Chemistry & Biology, Hubei University of Science and Technology, Xianning 437100, China.
Hubei Key Laboratory of Radiation Chemistry and Functional Materials, School of Nuclear Technology and Chemistry & Biology, Hubei University of Science and Technology, Xianning 437100, China.
Int J Biol Macromol. 2024 May;267(Pt 1):131447. doi: 10.1016/j.ijbiomac.2024.131447. Epub 2024 Apr 6.
The drug encapsulation efficiency, release rate and time, sustained release, and stimulus-response of carriers are very important for drug delivery. However, these always cannot obtained for the carrier with a single component. To improve the comprehensive performance of chitosan-based carriers for 5-Fu delivery, diatomite-incorporated hydroxypropyl cellulose/chitosan (DE/HPC/CS) composite aerogel microspheres were fabricated for the release of 5-fluorouracil (5-Fu), and the release performance was regulated with the content of diatomite, pH value, and external coating material. Firstly, the 5-Fu loaded DE/HPC/CS composite aerogel microspheres and Eudragit L100 coated microspheres were prepared with cross-linking followed by freeze-drying, and characterized by SEM, EDS, FTIR, XRD, DSC, TG, and swelling. The obtained aerogel microspheres have a diameter of about 0.5 mm, the weight percentage of F and Si elements on the surface are 0.55 % and 0.78 % respectively. The glass transition temperature increased from 179 °C to 181 °C and 185 °C with the incorporation of DE and coating of Eudragit, and the equilibrium swelling percentage of DE/HPC/CS (1.5:3:2) carriers are 101.52 %, 45.27 %, 67.32 % at pH 1.2, 5.0, 7.4, respectively. Then, the effect of DE content on the drug loading efficiency of DE/HPC/CS@5-Fu was investigated, with the increase of DE content, the highest encapsulation efficiency was 82.6 %. Finally, the release behavior of DE incorporated and Eudragit L100 Coated microspheres were investigated under different pH values, and evaluated with four kinetic models. The results revealed that the release rate of 5-Fu decreased with the increase of DE content, sustained release with extending time and pH-responsive were observed for the Eudragit-coated aerogel microspheres.
药物包封效率、释放速率和时间、缓释以及载体的刺激响应对于药物输送非常重要。然而,对于单一成分的载体,这些性能往往无法同时获得。为了提高壳聚糖基载体用于 5-氟尿嘧啶(5-Fu)输送的综合性能,本文制备了硅藻土掺入的羟丙基纤维素/壳聚糖(DE/HPC/CS)复合气凝胶微球,用于 5-氟尿嘧啶(5-Fu)的释放,并通过硅藻土含量、pH 值和外部包覆材料来调节释放性能。首先,通过交联后冷冻干燥制备了载有 5-Fu 的 DE/HPC/CS 复合气凝胶微球和 Eudragit L100 包覆的微球,并通过 SEM、EDS、FTIR、XRD、DSC、TG 和溶胀进行了表征。得到的气凝胶微球的直径约为 0.5mm,表面的 F 和 Si 元素的重量百分比分别为 0.55%和 0.78%。随着 DE 的掺入和 Eudragit 的包覆,玻璃化转变温度从 179°C 分别升高到 181°C 和 185°C,DE/HPC/CS(1.5:3:2)载体的平衡溶胀率分别为在 pH 1.2、5.0 和 7.4 时为 101.52%、45.27%和 67.32%。然后,考察了 DE 含量对 DE/HPC/CS@5-Fu 载药效率的影响,随着 DE 含量的增加,最高包封效率为 82.6%。最后,考察了不同 pH 值下掺入 DE 和包覆 Eudragit L100 的微球的释放行为,并采用四个动力学模型进行评价。结果表明,随着 DE 含量的增加,5-Fu 的释放速率降低,包覆的气凝胶微球具有缓释和 pH 响应性。