Nonaggregating Insulin Solutions for Long-Term Glucose Control in Experimental and Human Diabetes

Author:

Albisser A Michael1,Lougheed William1,Perlman Kusiel1,Bahoric Andrej1

Affiliation:

1. Hospital for Sick Children Toronto, Canada

Abstract

A physiologic additive for dissolving insulin crystals for parenteral application has been found. Insulin crystals are relatively insoluble in simple aqueous solutions. They will dissolve, however, in highly acidic solutions, but these are not suitable for parenteral use. Both neutral and acid pH insulin solutions have a tendency for the dissolved hormone to reaggregate. Notwithstanding possible changes in biologic activity, such formed aggregates must be prevented because they interfere with the flow in portable insulin delivery devices and result in the loss of glycemic control. The addition of 1.5% autologous serum to the aqueous diluent for insulin has eliminated these difficulties and increased by 37% the apparent biologic activity of insulin solutions prepared in this way. With this additive, continuous uninterrupted intravenous insulin infusion has provided near ideal blood glucose control in four pancreatectomized dogs for 5 mo and four patients with juvenile-onset diabetes for 18–23 days. Serum apparently contains factor(s) that promote the dissolution of insulin and prevent the formation of peptide aggregates in dilute solutions.

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

Cited by 14 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Proteins: Association, Adsorption, and Aggregation;Encyclopedia of Surface and Colloid Science, Third Edition;2015-12-04

2. Assessment of a New Insulin Preparation for Implanted Pumps Used in the Treatment of Type 1 Diabetes;Diabetes Technology & Therapeutics;2014-09

3. Insulin Formulation and Delivery;Pharmaceutical Biotechnology;2002

4. Computer control systems and pharmacological drug administration: a survey;Journal of Medical Engineering & Technology;1990-01

5. Chemical stability of insulin in a delivery system environment;Diabetologia;1985-07

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