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首页> 外文期刊>Beilstein journal of organic chemistry. >Synthesis and glycosidase inhibitory activity of new hexa-substituted C8-glycomimetics
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Synthesis and glycosidase inhibitory activity of new hexa-substituted C8-glycomimetics

机译:新型六取代的C8-糖模拟物的合成及其糖苷酶抑制活性

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BackgroundGlycosidases are involved in several metabolic pathways and the development of inhibitors is an important challenge towards the treatment of diseases, such as diabetes, cancer and viral infections including AIDS. Thus, inhibition of intestinal α-glucosidases can be used to treat diabetes through the lowering of blood glucose levels, and α-glucosidase inhibitors are being marketed against type 2 (non-insulinodependent mellitus) diabetes (i.e.: Glyset? or Diastabol?, Basen? and Glucor? or Precose?).ResultsIn that context, new C8-carbasugars and related aminocyclitols have been targeted in order to study the effect of the enhanced flexibility and of the new spatial distribution displayed by these structures on their adaptability in the active site of the enzymes. The synthesis of these new C8-glycomimetics is described from enantiomerically pure C2-symmetrical polyhydroxylated cyclooctenes. Their obtention notably involved a syn-dihydroxylation, and more extended functionalization through formation of a cis-cyclic sulfate followed by amination and subsequent reductive amination. This strategy involving the nucleophilic opening of a cis-cyclic sulfate by sodium azide is to our knowledge the first example in C8-series. It revealead to be an efficient alternative to the nucleoplilic opening of an epoxide moiety which proved unsuccessful in this particular case, due to the hindered conformation of such epoxides as demonstrated by X-ray cristallographic analysis.ConclusionThe biological activity of the synthesized glycomimetics has been evaluated towards 24 commercially available glycosidases. The weak observed activities can probably be related to the spatial disposition of the hydroxy and amino groups which depart too much from that realized in glycomimetics such as valiolamine, voglibose and valienamine. Nevertheless, the synthetic strategy described here is efficient and general, and could be extended to increase the diversity of the glycosidase inhibitors obtained since this diversity is introduced in an ultimate step of the synthesis.
机译:背景技术糖苷酶参与多种代谢途径,抑制剂的开发是治疗疾病的重要挑战,例如糖尿病,癌症和包括艾滋病在内的病毒感染。因此,可以通过降低血糖水平来抑制肠道中的α-葡萄糖苷酶来治疗糖尿病,并且α-葡萄糖苷酶抑制剂正在针对2型(非胰岛素依赖型)糖尿病(即,Glyset?或Diastabol?,Basen)上市结果在此背景下,针对新的C8-碳糖和相关的氨基环糖醇进行了研究,以研究这些结构增强的柔韧性和新的空间分布对其在活动部位的适应性的影响。的酶。从对映体纯的C2对称多羟基化环辛烯中描述了这些新的C8糖基模拟物的合成。它们的存在特别涉及同二羟基化,以及通过形成顺式环硫酸盐,随后进行胺化和随后的还原性胺化而进行的更广泛的官能化。据我们所知,这种涉及通过叠氮化钠亲核打开顺式环硫酸盐的策略是C8系列的第一个例子。它证明是一种有效的替代方法,可替代环氧化物部分的核苷酸多聚体开口,在这种特殊情况下,由于X射线晶体衍射分析表明这种环氧化物的构象受阻,证明在这种特殊情况下是不成功的。结论已评估了合成糖模拟物的生物学活性朝向24种市售糖苷酶。观察到的弱活性可能与羟基和氨基的空间分布有关,而羟基和氨基的空间分布与诸如拟苯丙醇胺,伏格列波糖和缬草胺等糖模拟物所实现的分布相去甚远。然而,这里描述的合成策略是有效且通用的,并且可以扩展以增加所获得的糖苷酶抑制剂的多样性,因为这种多样性是在合成的最终步骤中引入的。

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