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The Role of the Amadori Product in the Complications of Diabetes

机译:Amadori产品在糖尿病并发症中的作用

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Strong evidence has emerged in recent years in support of an association between advanced glycation and the complications of diabetes, whereby both glycoxidation products and oxoaldehy-des have been implicated. In contrast, except for the fact that skin collagen-linked fructosamine (Amadori product) is a strong predictor of the risk of progression of microvascular disease in humans, Amadori products have not been associated with complications in most animal experiments Below we develop the hypothesis that glucose-derived advanced glycation end products (AGEs), such as glucosepane, may inflict sustained damage to the extracellular matrix in diabetes and contribute to tissue stiffening and accelerated sclerosis in arteries, kidneys, and other organs as supported by immunochemical studies using a glucosepane antibody. We also hypothesize that many more structures derived from Amadori products with nucleophiles, such as primary amines and thiols, are expected. The selective prevention of Amadori-derived AGEs using deglycating enzymes would be desirable,. However, x-ray diffraction studies of Amadoriase I crystals show that the active site of the enzyme is deeply embedded, explaining why this approach is unlikely to succeed in vivo,. Preliminary experiments with nucleophiles show that aminoguanidine and other compounds block glucosepane in vitro.
机译:近年来,近年来出现了强有力的证据,以支持先进的糖类和糖尿病的并发症之间的关联,由此含有糖氧化产物和氧代甲基的含量。相比之下,除了皮肤胶原蛋白联系的果糖胺(Amadori产品)是人类微血管疾病进展的强烈预测因素,Amadori产品尚未与大多数动物实验中的并发症相关,我们开发了这一假设葡萄糖衍生的先进糖化末端产物(葡萄糖呤)可能对糖尿病的细胞外基质造成持续的损伤,并有助于使用葡糖烷抗体的免疫化学研究支持的动脉,肾脏和其他器官中的组织加强和加速的硬化。我们还假设预期从含有亲胺和硫醇等含有亲核试剂的Amadori产品衍生的更多结构。使用脱糖酶的选择性预防Amadori衍生的年龄是可取的。然而,AmadoriaSe I晶体的X射线衍射研究表明,酶的活性位点深深嵌入,解释了为什么这种方法不太可能在体内取得成功。初步实验与亲核试剂表明,氨基胍和其他化合物在体外嵌段葡糖烷。

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