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具有延长体内作用时间和良好受体选择性的pH值偏移胰岛素类似物。

pI-shifted insulin analogs with extended in vivo time action and favorable receptor selectivity.

作者信息

Kohn Wayne D, Micanovic Radmila, Myers Sharon L, Vick Andrew M, Kahl Steven D, Zhang Lianshan, Strifler Beth A, Li Shun, Shang Jing, Beals John M, Mayer John P, DiMarchi Richard D

机构信息

Lilly Research Laboratories, Eli Lilly & Co., Lilly Corporate Center, Indianapolis, IN 46285, USA.

出版信息

Peptides. 2007 Apr;28(4):935-48. doi: 10.1016/j.peptides.2007.01.012. Epub 2007 Jan 25.

Abstract

A long-acting (basal) insulin capable of delivering flat, sustained, reproducible glycemic control with once daily administration represents an improvement in the treatment paradigm for both type 1 and type 2 diabetes. Optimization of insulin pharmacodynamics is achievable through structural modification, but often at the expense of alterations in receptor affinity and selectivity. A series of isoelectric point (pI)-shifted insulin analogs based on the human insulin sequence or the GlyA21 acid stable variant were prepared by semi-synthetic methods. The pI shift was achieved through systematic addition of one or more arginine (Arg) or lysine (Lys) residues at the N terminus of the A chain, the N terminus of the B chain, the C terminus of the B chain, or through a combination of additions at two of the three sites. The analogs were evaluated for their affinity for the insulin and IGF-1 receptors, and aqueous solubility under physiological pH conditions. Notably, the presence of positively charged amino acid residues at the N terminus of the A chain was consistently associated with an enhanced insulin to IGF-1 receptor selectivity profile. Increased IGF-1 receptor affinity that results from Arg addition to the C terminus of the B chain was attenuated by cationic extension at the N terminus of the A chain. Analogs 10, 17, and 18 displayed in vitro receptor selectivity similar to that of native insulin and solubility at physiological pH that suggested the potential for extended time action. Accordingly, the in vivo pharmacokinetic and pharmacodynamic profiles of these analogs were established in a somatostatin-induced diabetic dog model. Analog 18 (A0:Arg, A21:Gly, B31:Arg, B32:Arg human insulin) exhibited a pharmacological profile comparable to that of analog 15 (insulin glargine) but with a 4.5-fold more favorable insulin:IGF-1 receptor selectivity. These results demonstrate that the selective combination of positive charge to the N terminus of the A chain and the C terminus of the B chain generates an insulin with sustained pharmacology and a near-native receptor selectivity profile.

摘要

一种长效(基础)胰岛素,每日一次给药即可实现平稳、持续、可重复的血糖控制,这代表了1型和2型糖尿病治疗模式的改进。通过结构修饰可实现胰岛素药效学的优化,但通常会以改变受体亲和力和选择性为代价。基于人胰岛素序列或GlyA21酸稳定变体,通过半合成方法制备了一系列等电点(pI)偏移的胰岛素类似物。通过在A链N端、B链N端、B链C端系统添加一个或多个精氨酸(Arg)或赖氨酸(Lys)残基,或通过在三个位点中的两个位点进行添加组合来实现pI偏移。对这些类似物进行了胰岛素和IGF-1受体亲和力以及生理pH条件下水溶性的评估。值得注意的是,A链N端带正电荷氨基酸残基的存在始终与胰岛素对IGF-1受体的选择性增强相关。B链C端添加Arg导致的IGF-1受体亲和力增加会因A链N端的阳离子延伸而减弱。类似物10、17和18在体外显示出与天然胰岛素相似的受体选择性,以及在生理pH下的溶解性,这表明它们具有延长作用时间的潜力。因此,在生长抑素诱导的糖尿病犬模型中建立了这些类似物的体内药代动力学和药效学特征。类似物18(A0:Arg,A21:Gly,B31:Arg,B32:Arg人胰岛素)表现出与类似物15(甘精胰岛素)相当的药理学特征,但胰岛素:IGF-1受体选择性比其有利4.5倍。这些结果表明,A链N端和B链C端正电荷的选择性组合产生了一种具有持续药理学特征和接近天然受体选择性的胰岛素。

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