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药用辅料聚乙二醇 400 通过与尿苷二磷酸葡萄糖醛酸转移酶和外排转运蛋白相互作用,影响 Caco-2 单层模型中黄芩素的吸收。

The pharmaceutical excipient PEG400 affect the absorption of baicalein in Caco-2 monolayer model by interacting with UDP-glucuronosyltransferases and efflux transport proteins.

机构信息

State Key Laboratory of Functions and Applications of Medicinal Plants and School of Pharmacy, Guizhou Medical University, Guiyang, China.

Department of Education of Guizhou, Center of Microbiology and Biochemical Pharmaceutical Engineering, Guiyang, China.

出版信息

Pharmacol Res Perspect. 2022 Feb;10(1):e00928. doi: 10.1002/prp2.928.

Abstract

The bioavailability of drugs is often related to intestinal metabolism and transport mechanisms. In previous studies, pharmaceutical excipients were recognized as inert substances in clinical safety evaluations. However, a large number of studies have shown that pharmaceutical excipients regulate the metabolism and transport of drugs in the body and improve the bioavailability. The pharmaceutical excipient polyethylene glycol 400 (PEG400) as a good solubilizer and surfactant has the potential to improve the bioavailability of drugs. The combined action of UDP-glucuronosyltransferases (UGTs) and efflux transport proteins is responsible for the intestinal disposition and poor bioavailability of baicalein. Our aim is to study the effect of PEG400 on the absorption of baicalein on the Caco-2 monolayer, and confirm the interaction of PEG400 with UGTs (UGT1A8 and UGT1A9) and efflux transports. We initially found that baicalein in the Caco-2 monolayer would be metabolized into glucuronide conjugates BG and B6G under the action of UGT1A8 and UGT1A9 on the endoplasmic reticulum membrane, and then mainly excreted to different sides by acting of MRP and BCRP. The addition of PEG400 significantly accelerated the metabolism of B in Caco-2 cells and increased the penetration of BG and B6G. Furthermore, PEG400 also significantly decreased the efflux ratio of BG and B6G, which was the evidence of the interaction with the efflux transporters. In the in vitro intestinal microsome regeneration system, low concentration PEG400 decreased the K value of UGT1A8 and UGT1A9 (key enzymes that mediate the production of BG and B6G); high concentration PEG400 enhanced the V value of UGT1A8 and UGT1A9. In conclusion, our results determined that PEG400 interacted with some UGTs and efflux transporters, which were the main factors affecting the absorption of baicalein.

摘要

药物的生物利用度通常与肠道代谢和转运机制有关。在以前的研究中,药用辅料在临床安全性评价中被认为是惰性物质。然而,大量研究表明,药用辅料调节药物在体内的代谢和转运,提高生物利用度。药用辅料聚乙二醇 400(PEG400)作为一种良好的增溶剂和表面活性剂,具有提高药物生物利用度的潜力。UDP-葡萄糖醛酸转移酶(UGTs)和外排转运蛋白的联合作用负责黄芩素在肠道中的处置和生物利用度差。我们的目的是研究 PEG400 对 Caco-2 单层黄芩素吸收的影响,并证实 PEG400 与 UGTs(UGT1A8 和 UGT1A9)和外排转运蛋白的相互作用。我们最初发现,黄芩素在 Caco-2 单层中在内质网膜上 UGT1A8 和 UGT1A9 的作用下会代谢成葡萄糖醛酸缀合物 BG 和 B6G,然后主要通过 MRP 和 BCRP 的作用排泄到不同的侧。PEG400 的添加显著加速了 B 在 Caco-2 细胞中的代谢,并增加了 BG 和 B6G 的渗透。此外,PEG400 还显著降低了 BG 和 B6G 的外排比,这是与外排转运蛋白相互作用的证据。在体外肠微粒体再生系统中,低浓度 PEG400 降低了 UGT1A8 和 UGT1A9(介导 BG 和 B6G 生成的关键酶)的 K 值;高浓度 PEG400 增强了 UGT1A8 和 UGT1A9 的 V 值。总之,我们的结果确定 PEG400 与一些 UGTs 和外排转运蛋白相互作用,这是影响黄芩素吸收的主要因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abe6/8929329/92bb9ad3b96f/PRP2-10-e00928-g009.jpg

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