Patil Vaishali M, Das Sukanya, Balasubramanian Krishnan
School of Pharmacy, Bharat Institute of Technology , Partapur, Meerut 250 103, Uttar Pradesh, India.
Discipline of Pharmacology, School of Medicine, The University of Adelaide , Adelaide, South Australia 5005, Australia.
J Phys Chem A. 2016 May 26;120(20):3643-53. doi: 10.1021/acs.jpca.6b01434. Epub 2016 May 4.
We combine quantum chemical and molecular docking techniques to provide new insights into how piperine molecule in various forms of pepper enhances bioavailability of a number of drugs including curcumin in turmeric for which it increases its bioavailability by a 20-fold. We have carried out docking studies of quantum chemically optimized piperine structure binding to curcumin, CYP3A4 in cytochrome P450, p-Glycoprotein and UDP-glucuronosyltransferase (UGT), the enzyme responsible for glucuronosylation, which increases the solubility of curcumin. All of these studies establish that piperine binds to multiple sites on the enzymes and also intercalates with curcumin forming a hydrogen bonded complex with curcumin. The conjugated network of double bonds and the presence of multiple charge centers of piperine offer optimal binding sites for piperine to bind to enzymes such as UDP-GDH, UGT, and CYP3A4. Piperine competes for curcumin's intermolecular hydrogen bonding and its stacking propensity by hydrogen bonding with enolic proton of curcumin. This facilitates its metabolic transport, thereby increasing its bioavailability both through intercalation into curcumin layers through intermolecular hydrogen bonding, and by inhibiting enzymes that cause glucuronosylation of curcumin.
我们结合量子化学和分子对接技术,以深入了解各种胡椒中的胡椒碱分子如何提高多种药物的生物利用度,包括姜黄中的姜黄素,胡椒碱可使其生物利用度提高20倍。我们对量子化学优化的胡椒碱结构与姜黄素、细胞色素P450中的CYP3A4、P-糖蛋白和UDP-葡萄糖醛酸转移酶(UGT,负责葡萄糖醛酸化的酶,可增加姜黄素的溶解度)进行了对接研究。所有这些研究表明,胡椒碱与这些酶的多个位点结合,还与姜黄素插入形成氢键复合物。胡椒碱的共轭双键网络和多个电荷中心为胡椒碱与UDP-GDH、UGT和CYP3A4等酶结合提供了最佳结合位点。胡椒碱通过与姜黄素的烯醇质子形成氢键,竞争姜黄素的分子间氢键及其堆积倾向。这促进了其代谢转运,从而通过分子间氢键插入姜黄素层以及抑制导致姜黄素葡萄糖醛酸化的酶来提高其生物利用度。