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首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis and structure-activity relationship study of antidiabetic penta-O-galloyl-D-glucopyranose and its analogues
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Synthesis and structure-activity relationship study of antidiabetic penta-O-galloyl-D-glucopyranose and its analogues

机译:抗糖尿病五-O-galloyl-D-吡喃葡萄糖及其类似物的合成及构效关系研究

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The rapid increase of obesity-associated diabetes has created urgent demands for more effective antidiabetic therapies and pharmaceuticals that are able to address the problems of hyperglycemia and weight gain simultaneously. Our previous studies indicated that the alpha- and beta-anomers of penta-O-galloyl-D-glucopyranose (PGG), 2 and 3, act as insulin mimetics that bind to and activate the insulin receptor, stimulate glucose transport in adipocytes, and reduce blood glucose and insulin levels in diabetic and obese animals. In addition, they inhibit differentiation of preadipocytes into adipocytes. These activities suggest that 2 and 3 may reduce blood glucose without increasing adiposity. To investigate the structure-activity relationship of 2 and 3, four series of novel compounds were prepared and their glucose transport stimulatory activities were measured using a radioactive glucose uptake bioassay. The assay results indicate that both the glucose and the galloyl groups are critical to the activity of 2 and 3. It appears that the glucose core provides an optimal scaffold to present the galloyl groups with the correct spatial orientation to induce activity. Moreover, the galloyl groups linked to the 1, 2, 3, and 4 positions of glucose are essential, while the galloyl group connected to the 6 position of 2 is unnecessary for the induction of activity. The discovery that two related novel compounds, 6-deoxytetra-O-galloyl-alpha-D-glucopyranose (43) and tetra-O-galloyl-alpha-D-xylopyranose (59), also possess glucose transport stimulatory activity suggests that 2 may be further modified around position 6 to modulate and enhance its efficacy. To test this hypothesis, we developed a new synthetic method that allows for the stereoselective preparation of derivatives of 2 that are modified on C-6. We found that 6-chloro-6-deoxy- 1,2,3,4-tetra-O-galloyl-alpha-D-glucopyranose (80) exhibits a significantly higher glucose transport stimulatory activity than 2. Its activity is comparable to that of insulin.
机译:肥胖症相关性糖尿病的迅速增加,提出了对更有效的抗糖尿病疗法和药物的迫切需求,这些疗法和药物能够同时解决高血糖和体重增加的问题。我们以前的研究表明,五-O-galloyl-D-葡萄糖吡喃糖(PGG)的α-和β-端基异构体2和3充当胰岛素模拟物,结合并激活胰岛素受体,刺激脂肪细胞中的葡萄糖转运,并且降低糖尿病和肥胖动物的血糖和胰岛素水平。另外,它们抑制前脂肪细胞分化为脂肪细胞。这些活动表明2和3可以降低血糖而不增加肥胖。为了研究2和3的结构-活性关系,制备了四个系列的新化合物,并使用放射性葡萄糖吸收生物测定法测量了它们的葡萄糖转运刺激活性。测定结果表明,葡萄糖和没食子酰基均对2和3的活性至关重要。看来,葡萄糖核心提供了最佳的支架以使没食子酰基具有正确的空间取向以诱导活性。而且,连接至葡萄糖的1、2、3和4位的没食子酰基是必需的,而连接2的6位的没食子酰基对于诱导活性是不必要的。两个相关的新型化合物6-脱氧四-O-galloyl-α-D-吡喃葡萄糖(43)和四-O-galloyl-α-D-二吡喃葡萄糖(59)的发现也具有葡萄糖转运刺激活性,这表明2在位置6附近进一步修饰,以调节和增强其功效。为了验证这一假设,我们开发了一种新的合成方法,该方法可以立体选择性地制备在C-6上修饰的2衍生物。我们发现6-氯-6-脱氧-1,2,3,4-四-O-galloyl-α-D-吡喃葡萄糖(80)表现出明显高于2的葡萄糖转运刺激活性。胰岛素。

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