胰岛素
胰岛素类似物
血糖性
甘精胰岛素
化学
内科学
内分泌学
糖尿病
人胰岛素
基础(医学)
效力
皮下注射
药理学
医学
低血糖
体外
生物化学
作者
Thomas Kjeldsen,František Hubálek,Claudia U. Hjørringgaard,Tina M. Tagmose,Erica Nishimura,Carsten E. Stidsen,Trine Porsgaard,Christian Fledelius,Hanne H. F. Refsgaard,Sanne Gram-Nielsen,Helle Naver,Lone Pridal,Thomas Høeg-Jensen,Claus Jeppesen,Valentina Manfé,Svend Ludvigsen,Inger Lautrup-Larsen,Peter Madsen
标识
DOI:10.1021/acs.jmedchem.1c00257
摘要
Here, we describe the molecular engineering of insulin icodec to achieve a plasma half-life of 196 h in humans, suitable for once-weekly subcutaneously administration. Insulin icodec is based on re-engineering of the ultra-long oral basal insulin OI338 with a plasma half-life of 70 h in humans. This systematic re-engineering was accomplished by (1) further increasing the albumin binding by changing the fatty diacid from a 1,18-octadecanedioic acid (C18) to a 1,20-icosanedioic acid (C20) and (2) further reducing the insulin receptor affinity by the B16Tyr → His substitution. Insulin icodec was selected by screening for long intravenous plasma half-life in dogs while ensuring glucose-lowering potency following subcutaneous administration in rats. The ensuing structure–activity relationship resulted in insulin icodec. In phase-2 clinical trial, once-weekly insulin icodec provided safe and efficacious glycemic control comparable to once-daily insulin glargine in type 2 diabetes patients. The structure–activity relationship study leading to insulin icodec is presented here.
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