In Vitro and In Vivo Profiles and Characterization of Insulin Nanocarriers Based in Flexible Liposomes Designed for Oral Administration

脂质体 化学 体内 PEG比率 分散性 胰岛素 聚乙二醇 纳米载体 药理学 色谱法 药物输送 剂型 生物医学工程 生物利用度 生物化学 医学 内科学 有机化学 生物技术 经济 生物 财务
作者
Sara Arciniegas Ruiz,María Josefa Bernad‐Bernad,Raquel López‐Arellano,Roberto Díaz‐Torres,Sara del Carmen Caballero Chacón,Dinorah Vargas Estrada
出处
期刊:Letters in Drug Design & Discovery [Bentham Science Publishers]
卷期号:16 (8): 948-960 被引量:6
标识
DOI:10.2174/1570180816666190110112929
摘要

Background: Alternatives routes of delivery for Insulin have been evaluated to improve treatment for Diabetes Mellitus. The oral route is the most convenient physiologically; it releases in a similar way to endogenous secretion. Flexible liposomes have deformable abilities to pass through membranes with adequate therapeutic effects, but they have been tested only dermally. Objective: Our aim was to develop an oral nanocarrier based on flexible liposomes for insulin with polymer addition to reduce gastrointestinal degradation. Methods: Different percentages of polyethylene glycol were added to a conventional formulation of flexible liposomes. The manufacturing procedure was the heating method. Z potential, size particle, polydispersity index and encapsulation percentage were evaluated. A release profile was performed in the stomach and intestinal pH mediums by two-stage reverse dialysis method. The in-vivo test was performed in experimental diabetic rats by oral, transdermal and subcutaneous routes. Results: All the formulations showed polydispersity but adequate Z potential. The 10% PEG formulation obtained the best insulin enclosure with 81.9%. The insulin integrity after preparation was confirmed by polyacrylamide gel electrophoresis. PEG and non-PEG formulations showed similar behavior in acid release profile but the release and stability of lipid structures were better and longer in intestinal pH conditions. In vivo tests showed a reduction to normal glucose levels only in subcutaneous route. Conclusion: The polymer inclusion in flexible liposomes generates an adequate nanocarrier for proteins in terms of stability and composition; although its in-vivo use reduces glucose levels in subcutaneous route, the effect was not adequate in oral route.
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