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Synergy of Physico-chemical and Biological Experiments for Developing a Cyclooxygenase-2 Inhibitor

机译:用于开发环氧化酶-2抑制剂的物理化学和生物实验的协同作用

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The physiological consequences of COX-2 overexpression in the development of cancer, diabetes and neurodegenerative diseases have made this enzyme a promising therapeutic target. Herein, COX-2 active site was analyzed and new molecules were designed. We identified a highly potent molecule (S)-3a with IC50 value and the selectivity for COX-2 0.6?nM and 1666, respectively. The MTD of (S)-3a was 2000 mg kg?1 and its pharmacokinetic studies in rat showed t1/2 7.5?h. This compound reversed acetic acid induced analgesia and carragennan induced inflammation by 50% and 25% in rat when used at a dose 10?mg?kg?1. Mechanistically, it was found that compound (S)-3a inhibits COX-2. Overall, the combination of physico-chemical and biological experiments facilitated the development of a new lead molecule to anti-inflammatory drug.
机译:Cox-2过表达在癌症,糖尿病和神经变性疾病发展中的生理结果使得该酶成为有前途的治疗靶标。在此,分析了COX-2活性位点,设计了新的分子。我们鉴定了具有IC 50值的高效分子-3a,分别具有COX-20.6≤nm和1666的选择性。 (S)-3A的MTD为2000mg kgα1,其在大鼠中的药代动力学研究显示出T1 / 2 7.5℃。当使用时,该化合物逆转乙酸诱导的镇痛和CarrAgennan诱导炎症,当时10μmg≤kg≤1。机械地,发现化合物-3a抑制COX-2。总体而言,物理化学和生物实验的组合促进了一种新的铅分子对抗炎药的发展。

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