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发现具有潜在镇痛和抗炎活性的新型 2-(3-(萘-2-基)-4,5-二氢-1H-吡唑-1-基)噻唑衍生物:体外、体内和计算研究。

Discovery of new 2-(3-(naphthalen-2-yl)-4,5-dihydro-1H-pyrazol-1-yl)thiazole derivatives with potential analgesic and anti-inflammatory activities: In vitro, in vivo and in silico investigations.

机构信息

Pharmaceutical Chemistry Department, Faculty of Pharmacy, Cairo University, Cairo 11562, Egypt.

Pharmaceutical Chemistry Department, Faculty of Pharmacy, Cairo University, Cairo 11562, Egypt.

出版信息

Bioorg Chem. 2024 Jun;147:107372. doi: 10.1016/j.bioorg.2024.107372. Epub 2024 Apr 17.

Abstract

Joining the global demand for the discovery of potent NSAIDs with minimized ulcerogenic effect, new pyrazole clubbed thiazole derivatives 5a-o were designed and synthesized. The new derivatives were initially evaluated for their analgesic activity. Eight compounds 5a, 5c, 5d, 5e, 5f, 5h, 5m, and 5o showed higher activity than Indomethacin (potency = 105-130 % vs. 100 %). Subsequently, they were picked for further evaluation of their anti-inflammatory activity, ulcerogenic liability as well as toxicological studies. Derivatives 5h and 5m showed a potential % edema inhibition after 3 h (79.39 % and 72.12 %, respectively), with a promising safety profile and low ulcer indices (3.80 and 3.20, respectively). The two compounds 5h and 5m were subjected to in vitro COX-1 and COX-2 inhibition assay. The candidate 5h showed nearly equipotent COX-1 inhibition (IC = 38.76 nM) compared to the non-selective reference drug Indomethacin (IC = 35.72 nM). Compound 5m expressed significant inhibitory activities and a higher COX-2 selectivity index (IC = 87.74 nM, SI = 2.05) in comparison with Indomethacin (SI = 0.52), with less selectivity than Celecoxib (SI = 8.31). Simulation docking studies were carried out to gain insights into the binding interaction of compounds 5h and 5m in the vicinity of COX-1 and COX-2 enzymes that illustrated the importance of pyrazole clubbed thiazole core in hydrogen bonding interactions. The thiazole motif of compounds 5h and 5m exhibited a well orientation toward COX-1 Arg120 key residue by hydrogen bonding interactions. Compound 5h revealed an additional arene-cation interaction with Arg120 that could rationalize its superior COX-1 inhibitory activity. Compounds 5h and 5m overlaid the co-crystallized ligand Celecoxib I differently in the active site of COX-2. Compound 5m showed an enhanced accommodation with binding energy of - 6.13 vs. - 1.70 kcal/mol of compounds 5h. The naphthalene ring of compound 5m adopted the Celecoxib I benzene sulfonamide region that is stabilized by hydrogen-arene interactions with the hydrophobic sidechains of the key residues Ser339 and Phe504. Further, the core structure of compound 5m, pyrazole clubbed thiazole, revealed deeper hydrophobic interactions with Ala513, Leu517 and Val509 residues. Finally, a sensitive and accurate UPLC-MS/MS method was developed for the simultaneous estimation of some selected promising pyrazole derivatives in rat plasma. Accordingly, compounds 5h and 5m were suggested to be promising potent analgesic and anti-inflammatory agents with improved safety profiles and a novel COX isozyme modulation activity.

摘要

为了满足全球对具有最小溃疡形成作用的强效 NSAIDs 的需求,设计并合成了新的吡唑并噻唑衍生物 5a-o。这些新衍生物最初被评估其镇痛活性。化合物 5a、5c、5d、5e、5f、5h、5m 和 5o 比吲哚美辛(效力为 105-130% 比 100%)表现出更高的活性。随后,它们被挑选出来进一步评估其抗炎活性、溃疡形成倾向以及毒理学研究。衍生物 5h 和 5m 在 3 小时后显示出潜在的 %水肿抑制作用(分别为 79.39%和 72.12%),具有良好的安全性和较低的溃疡指数(分别为 3.80 和 3.20)。这两种化合物 5h 和 5m 都进行了体外 COX-1 和 COX-2 抑制测定。候选化合物 5h 与非选择性参考药物吲哚美辛(IC=35.72 nM)相比,对 COX-1 具有几乎等效力的抑制作用(IC=38.76 nM)。与吲哚美辛(SI=0.52)相比,化合物 5m 表现出显著的抑制活性和更高的 COX-2 选择性指数(IC=87.74 nM,SI=2.05),与塞来昔布(SI=8.31)相比,选择性稍差。进行模拟对接研究以深入了解化合物 5h 和 5m 在 COX-1 和 COX-2 酶附近的结合相互作用,说明了吡唑并噻唑核心在氢键相互作用中的重要性。化合物 5h 和 5m 的噻唑基序通过氢键相互作用表现出对 COX-1 Arg120 关键残基的良好取向。化合物 5h 显示与 Arg120 的额外芳基-阳离子相互作用,这可以解释其优越的 COX-1 抑制活性。化合物 5h 和 5m 在 COX-2 的活性位点以不同的方式覆盖共晶配体塞来昔布 I。化合物 5m 与结合能的相互作用增强,为-6.13 对化合物 5h 的-1.70 kcal/mol。化合物 5m 的萘环采用塞来昔布 I 的苯磺酰胺区域,该区域通过与关键残基 Ser339 和 Phe504 的疏水性侧链的氢键-芳族相互作用得到稳定。此外,化合物 5m 的核心结构,即吡唑并噻唑,与 Ala513、Leu517 和 Val509 残基显示出更深的疏水性相互作用。最后,开发了一种灵敏和准确的 UPLC-MS/MS 方法,用于同时估计大鼠血浆中一些选定的有前途的吡唑衍生物。因此,化合物 5h 和 5m 被认为是有前途的强效镇痛和抗炎药物,具有改善的安全性和新型 COX 同工酶调节活性。

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