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通过田口法优化载阿霉素海藻酸钠微球的球形完整性的持续释放。

Optimization of the spherical integrity for sustained-release alginate microcarriers-encapsulated doxorubicin by the Taguchi method.

机构信息

Department of Mechanical and Electro-Mechanical Engineering, National Sun Yat-Sen University, Kaohsiung, Taiwan.

Institute of Medical Science and Technology, National Sun Yat-Sen University, Kaohsiung, Taiwan.

出版信息

Sci Rep. 2020 Dec 10;10(1):21758. doi: 10.1038/s41598-020-78813-1.

Abstract

This study aimed to develop biodegradable calcium alginate microcarriers with uniform particle size and spherical integrity for sustained-release targeting transarterial chemoembolization. To determine related parameters including the ratio of cross-linking volume (sodium alginate: CaCl), concentrations of sodium alginate and CaCl solutions, collection distance, flow rate, stirring speed, syringe needle diameter and hardening time to fabricate the microcarriers, the Taguchi method was applied. Using different conditions, a total of 18 groups were prepared. The average size of microspheres from different groups was estimated as ~ 2 mm (range 1.1 to 1.6 mm). Signal-to-noise ratio analysis showed the optimal spherical integrity (F1) achieved when the above parameters were designed as 0.1, 2.5 wt%, 6 wt%, 8 cm, 30 mL/h, 150 rpm, 0.25 mm and 2 h, respectively. The best (F1), middle (F2) and worst (F3) groups were used for further experiments. Fourier-transform infrared spectroscopy spectrum showed that F1, F2 and F3 conformations were distinct from original sodium alginate. Drug-loaded calcium alginate microcarriers demonstrated rougher surfaces compared to microspheres without drug under transmission electron microscopy. Compared to pH 7.4, swelling rates in PBS were decreased at pH 6.5. Encapsulation and loaded efficiencies of the Dox-loaded microcarriers were estimated as ~ 40.617% and ~ 3.517%. In vitro experiments indicated that the F1 Dox-loaded microcarriers provide a well sustained-release efficacy for about two weeks at 37 °C in PBS. Treatments of calcium alginate microcarriers without the Dox in two distinct hepatocellular carcinoma-derived cell lines, Huh-7 and Hep-3B, indicated that these microcarriers were non-toxic. The Dox-loaded microcarriers displayed sustained-release capacity and reduced cell viabilities to ~ 30% in both cell lines on Day 12.

摘要

本研究旨在开发具有均匀粒径和完整球形的可生物降解的海藻酸钠微球,用于靶向经动脉化疗栓塞的持续释放。为了确定与交联体积比(海藻酸钠:CaCl)、海藻酸钠和 CaCl 溶液浓度、收集距离、流速、搅拌速度、注射器针头直径和硬化时间相关的参数,以制备微球,采用了田口法。使用不同的条件共制备了 18 组。不同组别的微球平均粒径约为 2mm(范围 1.1-1.6mm)。信噪比分析表明,当上述参数分别设计为 0.1、2.5wt%、6wt%、8cm、30ml/h、150rpm、0.25mm 和 2h 时,可获得最佳的球形完整性(F1)。最佳(F1)、中等(F2)和最差(F3)组用于进一步实验。傅里叶变换红外光谱显示,F1、F2 和 F3 构象与原始海藻酸钠明显不同。药物负载的海藻酸钠微球在透射电子显微镜下显示出比无药物的微球更粗糙的表面。与 pH7.4 相比,在 pH6.5 时,PBS 中的溶胀率降低。载药海藻酸钠微球的包封率和载药量估计分别约为 40.617%和 3.517%。体外实验表明,在 37°C 的 PBS 中,F1 载药微球可提供约两周的良好持续释放效果。在两种不同的肝癌衍生细胞系 Huh-7 和 Hep-3B 中,未载药的海藻酸钠微球处理表明这些微球是无毒的。载药微球在两种细胞系中均表现出持续释放能力,在第 12 天降低细胞活力至约 30%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b862/7729399/4d9cb1cf97b5/41598_2020_78813_Fig1a_HTML.jpg

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