苯并吡嗪:醛糖还原酶抑制剂的合成、表征和评价

Huma Bhatti, Q. Zaheer, Yildiz Tehseen, Zahid Shaiq, K. M. Khan, A. Hameed, J. Iqbal
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引用次数: 0

摘要

醛糖还原酶(ALR2)在糖尿病并发症如视网膜病变、肾病、神经病变、白内障等中的作用是很明显的。多元醇途径的第一步ALR2将葡萄糖降低为山梨醇,山梨醇水平升高导致糖尿病性白内障,其特征是眼睛晶状体混浊,影响视力。用小分子抑制剂抑制ALR2酶是治疗糖尿病的一种快速方法。本研究筛选了具有醛糖还原酶活性的16种甲基苯并吡嗪类化合物的合成路线和文库。从生物活性结果来看,3′-羟基苯基苯并吡嗪6l的活性最高(IC50 = 1.34±0.07µM),而3′-溴苯基类似物6i对ALR2的活性与标准山梨醇(IC50 = 3.14±0.02µM)相当(IC50 = 3.48±0.66µM)。两种化合物(6l和6i)对醛还原酶(ALR1)表现出良好的选择性,醛还原酶(ALR1)在有毒醛解毒中起重要作用。两个区域异构体的结构通过1H和13C NMR二维NMR技术(COSY、NOESY、HSQC和HMBC)进行了全面表征。在不同的溶剂体系中,区域异构体的分离是困难的。仅分离到3'-溴苯并吡嗪6i'的一个同分异构体,有助于从核磁共振数据中确定区域异构体的结构。采用1H、13C NMR、IR、质谱等不同的光谱技术对所有苯并吡嗪进行了表征。
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Benzopyrazines: Synthesis, Characterization and Evaluation as Aldose Reductase Inhibitors
Role of aldose reductase (ALR2) in diabetic complications such as retinopathy, nephropathy, neuropathy, and cataract etc. is well-evident. ALR2 in the first step of polyol pathway reduces glucose to sorbitol whose elevated level leads to diabetic cataract, characterize by clouding of the lens in the eye that affects vision. Inhibition of ALR2 enzyme with small molecules as inhibitor is a rapid approach for diabetic management. In the present study the synthetic route to synthesize desired benzopyrazines and a library of sixteen (16) methyl benzopyrazines were screened against aldose reductase. From the bioactivity results, the 3'-hydroxyphenyl benzopyrazine 6l was found most active (IC50 = 1.34 ± 0.07 µM) while 3'-bromophenyl analogue 6i showed comparable activity for ALR2 (IC50 = 3.48 ± 0.66 µM) as compared to standard sorbinil (IC50 = 3.14 ± 0.02 µM). Both compounds (6l and 6i) showed excellent selectivity for ALR2 over aldehyde reductase (ALR1) which has important role in detoxification of toxic aldehydes. The structure of two regio-isomers were fully characterize by 1H and 13C NMR two dimensional NMR techniques including COSY, NOESY, HSQC, and HMBC. Regio-isomers separation was proved to be difficult in different solvent systems. Only an isomer of 3'-bromo benzopyrazine 6i' was isolated that help to assign the structure of regioisomers from NMR data. All the benzopyrazines were fully characterized by using different spectral techniques including 1H, 13C NMR, IR spectroscopy, and mass spectrometry.
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