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新型大豆苷元萘磺酸酯的药理性质及细胞吸收代谢研究

Study on pharmacological properties and cell absorption metabolism of novel daidzein napsylates.

作者信息

Jiao Yanxiao, Peng Jing, Ye Xinglin, Hu Huanan, Gan Lijun, Yang Jianyuan, Peng You

机构信息

Jangxi Province Engineering Research Center of Ecological Chemical Industry, Jiujiang University, Jiujiang, People's Republic of China.

College of Traditional Chinese Medicine, Inner Mongolia Medical University, Hohhot, People's Republic of China.

出版信息

R Soc Open Sci. 2021 Jan 13;8(1):201475. doi: 10.1098/rsos.201475. eCollection 2021 Jan.

Abstract

Novel daidzein napsylates (DD4 and DD5) were synthesized by microwave irradiation, according to structural modification of daidzein (DAI) using the principle of pharmacokinetic transformation. The pharmacological properties of DD4 and DD5 were evaluated via high performance liquid chromatography (HPLC) and calculated based on the drug design software ChemAxon 16.1.18. The cell uptake changes of DD4 and DD5 were investigated to analyse the structure-property relationship. The metabolisms of DD4 and DD5 were analysed by HPLC-mass spectrometry in human aortic vascular smooth muscle cells (HAVSMCs) and their possible metabolic pathways were inferred . The results showed that the solubility of DD4 and DD5 was increased by 2.79 × 10 and 2.16 × 10 times compared to that of DAI, separately, in ethyl acetate. The maximum absorption rates of DD4 and DD5 were enhanced by 4.3-4.5 times relative to DAI. Preliminary studies on metabolites of DD4 and DD5 in HAVSMCs showed that DD4 and DD5 were hydrolysed into DAI under the action of intracellular hydrolase in two ways, ester hydrolysis or ether hydrolysis. Then, DAI was combined with glucuronic acid to form daidzein monoglucuronate under the action of uridine diphosphate (UDP)-glucuronidase. Meanwhile, it was also found that metabolite M5 of DD5 could undergo glucuronidation under the action of UDP-glucuronosyltransferase and competitive sulphation under the action of sulphotransferase to produce its sulfate conjugate M7. Analysis of structure-property relationships indicated that the absorption and utilization of drugs is closely relative to the physical properties and could be improved by adjusting the liposolubility. The pharmaceutical properties were optimized comprehensively after DAI was modified by naphthalene sulphonate esterification. This indicates that this kind of derivatives may have relatively good absorption and transport characteristics and biological activities . The research on biological activities of the new derivatives (DD4 and DD5) is ongoing in our laboratory.

摘要

根据药代动力学转化原理,通过对大豆苷元(DAI)进行结构修饰,利用微波辐射合成了新型的萘磺酸大豆苷元盐(DD4和DD5)。通过高效液相色谱法(HPLC)对DD4和DD5的药理性质进行了评估,并基于药物设计软件ChemAxon 16.1.18进行了计算。研究了DD4和DD5的细胞摄取变化,以分析其构效关系。通过HPLC-质谱联用技术分析了DD4和DD5在人主动脉血管平滑肌细胞(HAVSMCs)中的代谢情况,并推断了其可能的代谢途径。结果表明,在乙酸乙酯中,DD4和DD5的溶解度分别比DAI提高了2.79×10倍和2.16×10倍。DD4和DD5的最大吸收率相对于DAI提高了4.3 - 4.5倍。对HAVSMCs中DD4和DD5代谢产物的初步研究表明,DD4和DD5在细胞内水解酶的作用下通过酯水解或醚水解两种方式水解为DAI。然后,DAI在尿苷二磷酸(UDP)-葡萄糖醛酸转移酶的作用下与葡萄糖醛酸结合形成大豆苷元单葡萄糖醛酸苷。同时,还发现DD5的代谢产物M5在UDP-葡萄糖醛酸基转移酶的作用下可进行葡萄糖醛酸化,并在硫酸转移酶的作用下进行竞争性硫酸化,生成其硫酸酯共轭物M7。构效关系分析表明,药物的吸收和利用与物理性质密切相关,可通过调节脂溶性来改善。经萘磺酸酯化修饰DAI后,其药学性质得到了全面优化。这表明这类衍生物可能具有相对良好的吸收、转运特性和生物活性。我们实验室正在对新衍生物(DD4和DD5)的生物活性进行研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f37/7890489/f5ff884fe5e6/rsos201475-g1.jpg

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