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基于可生物降解的果胶-Zn-藻酸盐凝胶颗粒的葡萄籽提取物递送系统。

Delivery system for grape seed extract based on biodegradable pectin-Zn-alginate gel particles.

机构信息

Institute of Physiology, Komi Science Centre, The Urals Branch of the Russian Academy of Sciences, 50, Pervomaiskaya str., Syktyvkar 167982, Russia.

Institute of Physiology, Komi Science Centre, The Urals Branch of the Russian Academy of Sciences, 50, Pervomaiskaya str., Syktyvkar 167982, Russia.

出版信息

Int J Biol Macromol. 2022 Oct 31;219:1021-1033. doi: 10.1016/j.ijbiomac.2022.08.040. Epub 2022 Aug 11.

Abstract

Pectin-Zn-alginate gel particles from callus culture pectin with increased linearity and decreased rhamnogalacturonan I branching and degree of methylesterification had a higher gel strength and encapsulation capacity. An increase of the alginate concentration led to an increase in the particle gel strength. The grape seed extract (GSE) loaded and empty particles swelled slightly in the simulated gastric fluid (SGF) and gradually in the intestinal (SIF) fluid. The swelling degrees of the GSE-loaded and empty particles in the simulated colonic fluids (SCF) were decreased in the range SCF-7.0 (pH 7.0 + pectinase) > SCF-5.3 (pH 5.3 + pectinase) > SCF-2.3 (pH 2.3 + pectinase). The FTIR spectra indicated that GSE was embedded in the composite particles. Negligible leakage of GSE in SGF was shown. The increase in GSE release in SIF was due to the decrease in particle gel strength and increased swelling degree. The GSE release in fluids simulating the colon inflammation (SCF-2.3 and SCF-5.3) was similar, and it was lower than that in the SCF-7.0 simulating a healthy colon due to the increased gel strength. The percentage release of GSE increased slightly after exposure to different pH. Pectin-Zn-alginate hydrogel systems may be promising candidates for colon-targeted GSE delivery systems.

摘要

用线性度增加、鼠李半乳糖醛酸聚糖 I 支化程度和甲氧基酯化程度降低的愈伤组织培养果胶制备的果胶-Zn-藻酸盐凝胶颗粒具有更高的凝胶强度和包封能力。藻酸钠浓度的增加导致颗粒凝胶强度增加。负载和空载葡萄籽油提取物 (GSE) 的颗粒在模拟胃液 (SGF) 中略有膨胀,在肠液 (SIF) 中逐渐膨胀。在模拟结肠液 (SCF) 中,GSE 负载和空载颗粒的膨胀度在 SCF-7.0(pH 7.0+果胶酶)>SCF-5.3(pH 5.3+果胶酶)>SCF-2.3(pH 2.3+果胶酶)范围内降低。FTIR 光谱表明 GSE 嵌入在复合颗粒中。在 SGF 中几乎没有检测到 GSE 的泄漏。在 SIF 中 GSE 释放增加是由于颗粒凝胶强度降低和膨胀度增加所致。在模拟结肠炎症的流体 (SCF-2.3 和 SCF-5.3) 中,GSE 的释放相似,由于凝胶强度增加,其释放低于模拟健康结肠的 SCF-7.0。暴露于不同 pH 值后,GSE 的释放百分比略有增加。果胶-Zn-藻酸盐水凝胶系统可能是结肠靶向 GSE 传递系统的有前途的候选物。

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