Yang Zhiyou, Deng Jiahang, Liu Mingxin, He Chuantong, Feng Xinyue, Liu Shucheng, Wei Shuai
Guangdong Provincial Key Laboratory of Aquatic Product Processing and Safety, Guangdong Province Engineering Laboratory for Marine Biological Products, Key Laboratory of Advanced Processing of Aquatic Product of Guangdong Higher Education Institution, Guangdong Provincial Engineering Technology Research Center of Seafood, College of Food Science and Technology, Guangdong Ocean University, Zhanjiang, China.
Collaborative Innovation Centre of Seafood Deep Processing, Dalian Polytechnic University, Dalian, China.
Front Pharmacol. 2022 Aug 1;13:972813. doi: 10.3389/fphar.2022.972813. eCollection 2022.
L. has attracted extensive attention worldwide because of its prominent pharmacological properties on type 2 diabetes, cancers, central nervous system, and cardiovascular diseases. Ginsenosides are active phytochemicals of , which can be classified as propanaxdiol (PPD)-type, propanaxtriol (PPT)-type, oleanane-type, and ocotillol-type oligo-glycosides depending on the skeleton of aglycone. Recently, advanced analytical and isolated methods including ultra-performance liquid chromatography tandem with mass detector, preparative high-performance liquid chromatography, and high speed counter-current chromatography have been used to isolate and identify minor components in , which accelerates the clarification of the material basis. However, the poor bioavailability and undetermined bio-metabolism of most saponins have greatly hindered both the development of medicines and the identification of their real active constituents. Thus, it is essential to consider the bio-metabolism of constituents before and after absorption. In this review, we described the structures of minor ginsenosides in , including naturally occurring protype compounds and their metabolites. The preclinical and clinical pharmacological studies of the ginsenosides in the past few years were also summarized. The review will promote the reacquaint of minor saponins on the growing appreciation of their biological role in .
由于其在2型糖尿病、癌症、中枢神经系统和心血管疾病方面突出的药理特性,人参已在全球引起广泛关注。人参皂苷是人参的活性植物化学物质,根据苷元骨架可分为原人参二醇(PPD)型、原人参三醇(PPT)型、齐墩果烷型和奥克梯隆型寡糖苷。最近,包括超高效液相色谱串联质谱检测器、制备型高效液相色谱和高速逆流色谱在内的先进分析和分离方法已被用于分离和鉴定人参中的微量成分,这加速了物质基础的阐明。然而,大多数皂苷的低生物利用度和未确定的生物代谢极大地阻碍了药物的开发及其真正活性成分的鉴定。因此,在吸收前后考虑成分的生物代谢至关重要。在这篇综述中,我们描述了人参中微量人参皂苷的结构,包括天然存在的原型化合物及其代谢产物。还总结了过去几年人参皂苷的临床前和临床药理学研究。这篇综述将促进对微量皂苷的重新认识,加深对其在人参中生物学作用的认识。