Discovery of polymethoxyflavones as potential cyclooxygenase-2 (COX-2), 5-lipoxygenase (5-LOX) and phosphodiesterase 4B (PDE4B) inhibitors.

IF 2.6 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Receptors and Signal Transduction Pub Date : 2022-08-01 Epub Date: 2021-07-29 DOI:10.1080/10799893.2021.1951756
Muhd Hanis Md Idris, Siti Norhidayah Mohd Amin, Siti Norhidayu Mohd Amin, Agustono Wibowo, Zainul Amiruddin Zakaria, Zurina Shaameri, Ahmad Sazali Hamzah, Manikandan Selvaraj, Lay Kek Teh, Mohd Zaki Salleh
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引用次数: 4

Abstract

Non-steroidal anti-inflammatory drugs (NSAIDs) are widely prescribed to treat inflammatory-related diseases, pain and fever. However, the prolong use of traditional NSAIDs leads to undesirable side effects such as gastric, ulceration, and renal toxicity due to lack of selectivity toward respective targets for COX-2, 5-LOX, and PDE4B. Thus, targeting multiple sites can reduce these adverse effects of the drugs and increase its potency. A series of methoxyflavones (F1-F5) were synthesized and investigated for their anti-inflammatory properties through molecular docking and inhibition assays. Among these flavones, only F2 exhibited selectivity toward COX-2 (Selectivity Index, SI: 3.90, COX-2 inhibition: 98.96 ± 1.47%) in comparison with celecoxib (SI: 7.54, COX-2 inhibition: 98.20 ± 2.55%). For PDEs, F3 possessed better selectivity to PDE4B (SI: 4.67) than rolipram (SI: 0.78). F5 had the best 5-LOX inhibitory activity among the flavones (33.65 ± 4.74%) but less than zileuton (90.81 ± 0.19%). Docking analysis indicated that the position of methoxy group and the substitution of halogen play role in determining the bioactivities of flavones. Interestingly, F1-F5 displayed favorable pharmacokinetic profiles and acceptable range of toxicity (IC50>70 µM) in cell lines with the exception for F1 (IC50: 16.02 ± 1.165 µM). This study generated valuable insight in designing new anti-inflammatory drug based on flavone scaffold. The newly synthesized flavones can be further developed as future therapeutic agents against inflammation.

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发现多甲氧基黄酮作为潜在的环氧化酶-2 (COX-2)、5-脂氧化酶(5-LOX)和磷酸二酯酶4B (PDE4B)抑制剂。
非甾体抗炎药(NSAIDs)被广泛用于治疗炎症相关疾病、疼痛和发烧。然而,由于缺乏对COX-2、5-LOX和PDE4B各自靶点的选择性,传统非甾体抗炎药的长期使用会导致不良的副作用,如胃、溃疡和肾毒性。因此,靶向多个位点可以减少药物的这些不良反应并增加其效力。合成了一系列甲氧基黄酮(F1-F5),并通过分子对接和抑制实验研究了它们的抗炎性能。与塞来昔布(SI: 7.54, COX-2抑制率98.20±2.55%)相比,F2对COX-2具有选择性(选择性指数,SI: 3.90, COX-2抑制率98.96±1.47%)。对于PDEs, F3对PDE4B的选择性(SI: 4.67)优于罗利普兰(SI: 0.78)。F5对5-LOX的抑制活性最高(33.65±4.74%),低于zileuton(90.81±0.19%)。对接分析表明,甲氧基的位置和卤素的取代对黄酮类化合物的生物活性起决定作用。有趣的是,F1- f5在细胞系中表现出良好的药代动力学特征和可接受的毒性范围(IC50>70µM), F1除外(IC50: 16.02±1.165µM)。本研究为设计基于黄酮支架的新型抗炎药物提供了有价值的见解。新合成的黄酮类化合物可作为抗炎症药物进一步开发。
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来源期刊
Journal of Receptors and Signal Transduction
Journal of Receptors and Signal Transduction 生物-生化与分子生物学
CiteScore
6.60
自引率
0.00%
发文量
19
审稿时长
>12 weeks
期刊介绍: Journal of Receptors and Signal Tranduction is included in the following abstracting and indexing services: BIOBASE; Biochemistry and Biophysics Citation Index; Biological Abstracts; BIOSIS Full Coverage Shared; BIOSIS Previews; Biotechnology Abstracts; Current Contents/Life Sciences; Derwent Chimera; Derwent Drug File; EMBASE; EMBIOLOGY; Journal Citation Reports/ Science Edition; PubMed/MedLine; Science Citation Index; SciSearch; SCOPUS; SIIC.
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