Zheng Yujie, Xu Guangzhi, Ni Qinxue, Wang Yan, Gao Qianxin, Zhang Youzuo
College of Food and Health, Zhejiang A&F University, Lin'an, Hangzhou 311300, China.
Zhejiang Provincial Key Laboratory of Resources Protection and Innovation of Traditional Chinese Medicine, Zhejiang A&F University, Lin'an, Hangzhou 311300, China.
Pharmaceutics. 2022 Mar 11;14(3):617. doi: 10.3390/pharmaceutics14030617.
Genipin has attracted much attention for its hepatoprotective, anti-inflammatory, and neuroprotection activities. However, poor water solubility and active chemical properties limit its application in food and pharmaceutical industries. This article aimed to develop a lipid-based microemulsion delivery system to improve the stability and bioavailability of genipin. The excipients for a genipin microemulsion (GME) preparation were screened and a pseudo-ternary phase diagram was established. The droplet size (DS), zeta potential (ZP), polydispersity index (PDI), physical and simulated gastrointestinal digestion stability, and in vitro drug release properties were characterized. Finally, the effect of the microemulsion on its cellular uptake by Caco-2 cells and the protective effect on PC12 cells were investigated. The prepared GME had a transparent appearance with a DS of 16.17 ± 0.27 nm, ZP of -8.11 ± 0.77 mV, and PDI of 0.183 ± 0.013. It exhibited good temperature, pH, ionic strength, and simulated gastrointestinal digestion stability. The in vitro release and cellular uptake data showed that the GME had a lower release rate and better bioavailability compared with that of free genipin. Interestingly, the GME showed a significantly better protective effect against amyloid-β (Aβ1-42)-induced PC12 cell cytotoxicity than that of the unencapsulated genipin. These findings suggest that the lipid-based microemulsion delivery system could serve as a promising approach to improve the application of genipin.
京尼平因其保肝、抗炎和神经保护活性而备受关注。然而,其水溶性差和化学性质活泼限制了它在食品和制药工业中的应用。本文旨在开发一种基于脂质的微乳递送系统,以提高京尼平的稳定性和生物利用度。筛选了制备京尼平微乳(GME)的辅料并建立了伪三元相图。对液滴大小(DS)、ζ电位(ZP)、多分散指数(PDI)、物理和模拟胃肠道消化稳定性以及体外药物释放特性进行了表征。最后,研究了微乳对其被Caco-2细胞摄取的影响以及对PC12细胞的保护作用。制备的GME外观透明,DS为16.17±0.27nm,ZP为-8.11±0.77mV,PDI为0.183±0.013。它表现出良好的温度、pH、离子强度和模拟胃肠道消化稳定性。体外释放和细胞摄取数据表明,与游离京尼平相比,GME具有较低的释放速率和更好的生物利用度。有趣的是,GME对淀粉样β蛋白(Aβ1-42)诱导的PC12细胞毒性的保护作用明显优于未包封的京尼平。这些发现表明,基于脂质的微乳递送系统可能是一种改善京尼平应用前景的方法。