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首页> 外文期刊>Angewandte Chemie >Total Chemical Synthesis of an Intra-A-Chain Cystathionine Human Insulin Analogue with Enhanced Thermal Stability
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Total Chemical Synthesis of an Intra-A-Chain Cystathionine Human Insulin Analogue with Enhanced Thermal Stability

机译:具有增强的热稳定性的链内半胱氨酸硫代人胰岛素类似物的全化学合成

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Despite recent advances in the treatment of diabetes mellitus, storage of insulin formulations at 4 degrees C is still necessary to minimize chemical degradation. This is problematic in tropical regions where reliable refrigeration is not ubiquitous. Some degradation byproducts are caused by disulfide shuffling of cystine that leads to covalently bonded oligomers. Consequently we examined the utility of the non-reducible cystine isostere, cystathionine, within the A-chain. Reported herein is an efficient method for forming this mimic using simple monomeric building blocks. The intra-A-chain cystathionine insulin analogue was obtained in good overall yield, chemically characterized and demonstrated to possess native binding affinity for the insulin receptor isoform B. It was also shown to possess significantly enhanced thermal stability indicating potential application to next-generation insulin analogues.
机译:尽管在糖尿病的治疗方面有最新进展,但仍需要将胰岛素制剂保存在4摄氏度下以最大程度地减少化学降解。在没有可靠制冷的热带地区,这是个问题。一些降解副产物是由胱氨酸的二硫键改组导致共价键合的寡聚物引起的。因此,我们检查了A链中不可还原的胱氨酸等排物胱硫醚的效用。本文报道的是使用简单的单体结构单元形成该模拟物的有效方法。以良好的总收率获得了A链内胱硫醚胰岛素类似物,对其进行了化学表征并证明对胰岛素受体同工型B具有天然结合亲和力。还显示出其热稳定性显着增强,表明其可能应用于下一代胰岛素类似物。

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