Department of Clinical Sciences, Anesthesiology and Equine Surgery, Faculty of Veterinary Medicine, B 41, University of Liege, Sart Tilman, Liège, Belgium; Centre of Oxygen, Research and Development-CIRM, Institute of Chemistry B 6a, University of Liege, Sart Tilman, Liège, Belgium.
Laboratory of Pharmaceutical Chemistry & Analytical Platform of the Faculty of Pharmacy, Faculty of Pharmacy, Université Libre de Bruxelles, Brussels, Belgium.
Chem Biol Interact. 2019 Jan 5;297:34-43. doi: 10.1016/j.cbi.2018.10.008. Epub 2018 Oct 18.
A water-soluble curcumin lysinate incorporated into hydroxypropyl-β-cyclodextrin (NDS27) has been developed and shown anti-inflammatory properties but no comparative study has been made in parallel with its parent molecule, curcumin on polymorphonuclear neutrophils (PMNs) and myeloperoxidase (MPO) involved in inflammation. The effect of NDS27, its excipients (hydroxypropyl-β-cyclodextrin and lysine), curcumin lysinate and curcumin were compared on the release of superoxide anion by PMNs using a chemiluminescence assay and on the enzymatic activity of MPO. It was shown that curcumin and NDS27 exhibit similar inhibition activities on superoxide anion release by stimulated PMNs but also on MPO peroxidase and halogenation activities. The action mechanism of curcumin and NDS27 on the MPO activity was refined by stopped-flow and docking analyses. We demonstrate that both curcumin and NDS27 are reversible inhibitors of MPO by acting as excellent electron donors for redox intermediate Compound I (∼10 M s) but not for Compound II (∼10 M s) in the peroxidase cycle of the enzyme, thereby trapping the enzyme in the Compound II state. Docking calculations show that curcumin is able to enter the enzymatic pocket of MPO and bind to the heme cavity by π-stacking and formation of hydrogen bonds involving substituents from both aromatic rings. Hydroxypropyl-β-cyclodextrin is too bulky to enter MPO channel leading to the binding site suggesting a full release of curcumin from the cyclodextrin thereby allowing its full access to the active site of MPO. In conclusion, the hydroxypropyl-β-cyclodextrin of NDS27 enhances curcumin solubilization without affecting its antioxidant capacity and inhibitory activity on MPO.
已开发出一种水溶性姜黄素赖氨酸盐,将其掺入羟丙基-β-环糊精(NDS27)中,具有抗炎特性,但尚未对其母体分子姜黄素在参与炎症的多形核粒细胞(PMN)和髓过氧化物酶(MPO)上进行平行比较研究。使用化学发光测定法比较了 NDS27、其赋形剂(羟丙基-β-环糊精和赖氨酸)、姜黄素赖氨酸盐和姜黄素对PMN 中超氧阴离子释放的影响,以及 MPO 的酶活性。结果表明,姜黄素和 NDS27 对刺激的 PMN 中超氧阴离子的释放以及 MPO 过氧化物酶和卤化活性均具有相似的抑制作用。通过停流和对接分析对姜黄素和 NDS27 对 MPO 活性的作用机制进行了细化。我们证明,姜黄素和 NDS27 都是 MPO 的可逆抑制剂,它们通过作为氧化还原中间体化合物 I(∼10 M s)的良好电子供体起作用(∼10 M s)而不是酶的过氧化物酶循环中的化合物 II(∼10 M s),从而将酶捕获在化合物 II 状态。对接计算表明,姜黄素能够进入 MPO 的酶口袋,并通过π堆积和涉及两个芳环取代基的氢键形成与血红素腔结合。羟丙基-β-环糊精太大而无法进入 MPO 通道,从而导致结合位点表明姜黄素从环糊精中完全释放,从而使其能够充分进入 MPO 的活性部位。总之,NDS27 的羟丙基-β-环糊精增强了姜黄素的溶解度,而不会影响其抗氧化能力和对 MPO 的抑制活性。