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首页> 外文期刊>Journal of Medicinal Chemistry >Discovery of potent, nonsystemic apical sodium-codependent bile acid transporter inhibitors (Part 1)
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Discovery of potent, nonsystemic apical sodium-codependent bile acid transporter inhibitors (Part 1)

机译:发现有效的,非全身性的根尖钠依赖性胆汁酸转运蛋白抑制剂(第1部分)

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Elevated plasma levels of low-density lipoprotein (LDL) cholesterol are a major risk factor for atherosclerosis leading to coronary artery disease (CAD), which remains the main cause of mortality in Western society. We believe that by preventing the reabsorption of bile acids, a minimally absorbed apical sodium-codependent bile acid transporter (ASBT) inhibitor would lower the serum cholesterol without the potential systemic side effects of an absorbed drug. A series of novel benzothiepines (3R,3R'-2,3,4,5-tetrahydro-5-aryl-l-benzothiepin-4-ol 1,1-dioxides) were synthesized and tested for their ability to inhibit the apical sodium dependent bile acid transport (ASBT)-mediated uptake of [C-14]taurocholate (TC) in H14 cells. A 3R,4.R,5R13S,4S,5S racemate was found to have greater potency than the other three possible racemates. Addition of electron-donating groups such as a dimethylamino substituent at the 7 position greatly enhanced potency, and incorporation of a long-chain quaternary ammonium substituent on the 5-phenyl ring was useful in minimizing systemic exposure of this locally active ASBT inhibitor while also increasing water solubility and maintaining potency. The reported results describe the synthesis and SAR development of this benzothiepine class of ASBT inhibitors resulting in an 6000-fold improvement in ASBT inhibition with desired minimal systemic exposure of this locally acting drug candidate.
机译:血浆低密度脂蛋白(LDL)胆固醇水平升高是导致冠状动脉疾病(CAD)的动脉粥样硬化的主要危险因素,而冠状动脉疾病仍然是西方社会死亡的主要原因。我们认为,通过防止胆汁酸的重吸收,最小吸收的心尖钠依赖性胆汁酸转运蛋白(ASBT)抑制剂将降低血清胆固醇,而不会产生被吸收药物的潜在全身性副作用。合成了一系列新颖的苯并硫庚因(3R,3R'-2,3,4,5-四氢-5-芳基-1-苯并噻吩-4-醇1,1-二氧化物)并测试了其抑制根尖钠的能力依赖胆汁酸运输(ASBT)介导的H14细胞摄取[C-14]牛磺胆酸盐(TC)。发现3R,4.R,5R13S,4S,5S外消旋体比其他三种可能的外消旋体具有更高的效力。在7位上添加供电子基团(例如二甲基氨基取代基)大大增强了效能,在5-苯环上引入长链季铵取代基可最大程度地减少这种局部活性ASBT抑制剂的全身暴露,同时还可以增加水溶性和保持效力。报道的结果描述了这种苯并噻庚因类ASBT抑制剂的合成和合成孔径雷达的发展,导致ASBT抑制作用提高了6000倍,而这种局部作用药物候选物的所需的最低系统暴露量也是如此。

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