Department of Biotechnology, Guru GhasidasVishwavidyalaya (A Central University), Bilaspur, Chhattisgarh, India.
Department of Biotechnology, National Institute of Technology, Raipur, Chhattisgarh, India.
J Biomater Sci Polym Ed. 2022 Nov;33(16):2145-2164. doi: 10.1080/09205063.2022.2096527. Epub 2022 Jul 9.
Subcutaneous administration of insulin has been practiced for the clinical supervision of diabetes pathogenesis but it is often ineffective to imitate the glucose homeostasis and is always invasive. Therefore, it causes patient discomfort and infection of local tissue. These issues lead to finding an alternative route for insulin delivery that could be effective, promising, and non-invasive. However, delivery of insulin orally is the most suitable route but the rapid breakdown of insulin by the gastrointestinal enzymes becomes a major barrier to this method. Therefore, nanocarriers (which guard insulin against degradation and facilitate its uptake) are preferred for oral insulin delivery. Among various categories of nanocarriers, bio-polymeric nanocarriers draw special attention owing to their hydrophilic, non-toxic, and biodegradable nature. This review provides a detailed overview of insulin-loaded biopolymer-based nanocarriers, which give future direction in the optimization and development of a clinically functional formulation for their effective and safe delivery.
胰岛素的皮下给药已被用于糖尿病发病机制的临床监测,但它往往无法有效地模拟葡萄糖稳态,且具有侵入性。因此,它会引起患者不适和局部组织感染。这些问题促使人们寻找一种有效的、有前途的、非侵入性的胰岛素替代给药途径。然而,口服给药是最理想的途径,但胃肠道酶对胰岛素的快速降解成为该方法的主要障碍。因此,纳米载体(可防止胰岛素降解并促进其摄取)被优先用于口服胰岛素给药。在各种纳米载体中,生物聚合物纳米载体因其亲水性、无毒性和可生物降解性而受到特别关注。本综述详细概述了负载胰岛素的基于生物聚合物的纳米载体,为其有效和安全给药的临床功能性制剂的优化和开发指明了未来方向。