Recent progress in polymeric non-invasive insulin delivery

胰岛素 透皮 胰岛素释放 药物输送 医学 控制释放 血糖性 毒品携带者 药理学 药品 糖尿病 1型糖尿病 内科学 纳米技术 内分泌学 材料科学
作者
Farzaneh Sabbagh,Ida Idayu Muhamad,Razieh Niazmand,Pritam Kumar Dikshit,Beom Soo Kim
出处
期刊:International Journal of Biological Macromolecules [Elsevier]
卷期号:203: 222-243 被引量:63
标识
DOI:10.1016/j.ijbiomac.2022.01.134
摘要

The design of carriers for insulin delivery has recently attracted major research attentions in the biomedical field. In general, the release of drug from polymers is driven via a variety of polymers. Several mechanisms such as matrix release, leaching of drug, swelling, and diffusion are usually adopted for the release of drug through polymers. Insulin is one of the most predominant therapeutic drugs for the treatment of both diabetes mellitus; type-I (insulin-dependent) and type II (insulin-independent). Currently, insulin is administered subcutaneously, which makes the patient feel discomfort, pain, hyperinsulinemia, allergic responses, lipodystrophy surrounding the injection area, and occurrence of miscarried glycemic control. Therefore, significant research interest has been focused on designing and developing new insulin delivery technologies to control blood glucose levels and time, which can enhance the patient compliance simultaneously through alternative routes as non-invasive insulin delivery. The aim of this review is to emphasize various non-invasive insulin delivery mechanisms including oral, transdermal, rectal, vaginal, ocular, and nasal. In addition, this review highlights different smart stimuli-responsive insulin delivery systems including glucose, pH, enzymes, near-infrared, ultrasound, magnetic and electric fields, and the application of various polymers as insulin carriers. Finally, the advantages, limitations, and the effect of each non-invasive route on insulin delivery are discussed in detail.
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