School of Environmental and Chemical Engineering, Xi'an Key Laboratory of Textile Chemical Engineering Auxiliaries, Xi'an Polytechnic University, Xi'an 710048, PR China.
Yangling Vocational and Technical College, Yangling, Shaanxi 712100, PR China.
Int J Biol Macromol. 2024 May;267(Pt 2):131487. doi: 10.1016/j.ijbiomac.2024.131487. Epub 2024 Apr 9.
Oral absorption of ginsenoside Rb1 (Rb1) is often hindered by the gastrointestinal tract. Carboxymethyl chitosan deoxycholic acid loaded with ginsenoside Rb1 nanoparticles (CMDA@Rb1-NPs), were prepared as a delivery system using a self-assembly technique with amphipathic deoxycholic acid grafted carboxymethyl chitosan as the carrier, which improved the stability and embedding rate of Rb1. In addition, the CMDA@Rb1-NPs was encapsulated with sodium alginate by ion crosslinking method with additional layer (CMDAlg@Rb1-NPs). Scanning electron microscopy showed that the nanoparticles were spherical, evenly distributed, smooth and without obvious adhesion. By evaluating drug loading, entrapment efficiency, the encapsulation efficiency of Rb1 increased from 60.07 % to 72.14 % after grafting deoxycholic acid improvement and optimization. In vitro release results showed that the cumulative release of Rb1 by CMDAlg-NPs showed a pH dependent effect, which was <10 % in simulated gastric juice with pH 1.2, completely released with pH 7.4 for about 48 h. In addition, Rb1 and CMDAlg@Rb1-NPs had inhibitory effects on A549 cells, and the inhibitory effect of CMDAlg@Rb1-NPs was better. Therefore, all results indicated that CMDA/Alg@Rb1 nanoparticles might be a novel drug delivery system to improve the stability and embedding rate of Rb1, and has the potential to be applied in oral pharmaceutical preparations.
口服人参皂苷 Rb1(Rb1)常受到胃肠道的阻碍。羧甲基壳聚糖去氧胆酸载人参皂苷 Rb1 纳米粒(CMDA@Rb1-NPs)被制备为一种递送系统,使用自组装技术,将两亲性去氧胆酸接枝羧甲基壳聚糖作为载体,提高了 Rb1 的稳定性和包封率。此外,CMDA@Rb1-NPs 被海藻酸钠通过离子交联方法进行额外层包封(CMDAlg@Rb1-NPs)。扫描电子显微镜显示,纳米粒为球形,分布均匀,光滑,无明显粘连。通过评价载药量、包封率,接枝去氧胆酸后 Rb1 的包封率从 60.07%提高到 72.14%。体外释放结果表明,CMDAlg-NPs 中 Rb1 的累积释放呈现 pH 依赖性,在 pH 1.2 的模拟胃液中<10%,在 pH 7.4 下约 48h 完全释放。此外,Rb1 和 CMDAlg@Rb1-NPs 对 A549 细胞具有抑制作用,CMDAlg@Rb1-NPs 的抑制作用更好。因此,所有结果表明,CMDA/Alg@Rb1 纳米粒可能是一种提高 Rb1 的稳定性和包封率的新型药物递送系统,具有应用于口服药物制剂的潜力。