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Synthesis and evaluation of cyclohexane carboxylic acid head group containing isoxazole and thiazole analogs as DGAT1 inhibitors

机译:含异恶唑和噻唑类似物作为DGAT1抑制剂的环己烷羧酸头基的合成与评价

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Diacylglycerol acyltransferase 1 (DGAT1) is known to play an important catalytic role in the final step of triglyceride biosynthesis. High fat diet fed DGAT1 knockout mice were resistant to weight gain and exhibited increased insulin and leptin sensitivity thereby indicating a plausible role for DGAT1 inhibitors in the treatment of obesity. 4-Phenylpiperidine-l-carbonyl cyclohexanecarboxylic acid (compound 6, DGAT1 IC_(50) = 57 nM) has been lately reported as a potent DGAT1 inhibitor. In our search for newer scaffolds possessing potent DGAT1 activity we undertook a systematic diversification of compound 6 to identify a 4-(5-phenylthiazole-2-carboxamido)cyclohexanecarboxylic acid scaffold. Further linker optimization of this scaffold identified compound 9e (DGAT1 IC_(50) = 14.8 nM) as a potent DGAT1 inhibitor. Coupled with its in vitro potency, compound 9e also exhibited 112 percent plasma triglyceride reduction at a 3 mpk dose in an oral fat tolerance test (FIT) when studied in Swiss mice.
机译:已知甘油二酰基酰基转移酶1(DGAT1)在甘油三酸酯生物合成的最终步骤中起重要的催化作用。高脂肪饮食喂养的DGAT1基因敲除小鼠对体重增加有抵抗力,并表现出胰岛素和瘦素敏感性增强,从而表明DGAT1抑制剂在肥胖症治疗中的合理作用。最近已经报道了4-苯基哌啶-1-羰基环己烷羧酸(化合物6,DGAT1 IC_(50)= 57nM)作为有效的DGAT1抑制剂。在寻找具有强DGAT1活性的新型支架时,我们对化合物6进行了系统的多样化研究,以鉴定出4-(5-苯基噻唑-2-羧酰胺基)环己烷羧酸支架。该支架的进一步接头优化确定化合物9e(DGAT1 IC_(50)= 14.8 nM)为有效的DGAT1抑制剂。结合其体外功效,当在瑞士小鼠中进行研究时,在口服脂肪耐受性测试(FIT)中,化合物3e在3 mpk剂量下还显示出112%的血浆甘油三酸酯降低。

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