iMed., ULisboa, Research Institute for Medicines, Faculty of Pharmacy, Universidade de Lisboa, 1649-003 Lisboa, Portugal.
Centro de Química Estrutural, Instituto Superior Técnico, Departamento de Engenharia Química, Universidade de Lisboa, 1049-001 Lisboa, Portugal.
Int J Mol Sci. 2021 Apr 15;22(8):4087. doi: 10.3390/ijms22084087.
Insulin is a peptide hormone with many physiological functions, besides its use in diabetes treatment. An important role of insulin is related to the wound healing process-however, insulin itself is too sensitive to the external environment requiring the protective of a nanocarrier. Polymer-based nanoparticles can protect, deliver, and retain the protein in the target area. This study aims to produce and characterize a topical treatment for wound healing consisting of insulin-loaded poly-DL-lactide/glycolide (PLGA) nanoparticles. Insulin-loaded nanoparticles present a mean size of approximately 500 nm and neutral surface charge. Spherical shaped nanoparticles are observed by scanning electron microscopy and confirmed by atomic force microscopy. SDS-PAGE and circular dichroism analysis demonstrated that insulin preserved its integrity and secondary structure after the encapsulation process. In vitro release studies suggested a controlled release profile. Safety of the formulation was confirmed using cell lines, and cell viability was concentration and time-dependent. Preliminary safety in vivo assays also revealed promising results.
胰岛素是一种具有多种生理功能的肽类激素,除了用于糖尿病治疗外。胰岛素的一个重要作用与伤口愈合过程有关——然而,胰岛素本身对外界环境过于敏感,需要纳米载体的保护。基于聚合物的纳米粒子可以保护、输送和保留目标区域的蛋白质。本研究旨在制备和表征一种由胰岛素负载的聚-DL-乳酸/乙醇酸(PLGA)纳米粒子组成的局部伤口愈合治疗药物。胰岛素负载的纳米粒子的平均粒径约为 500nm,表面带中性电荷。扫描电子显微镜观察到球形纳米粒子,并通过原子力显微镜进行了确认。SDS-PAGE 和圆二色性分析表明,胰岛素在包封过程后保持其完整性和二级结构。体外释放研究表明具有控制释放的特性。使用细胞系证实了该配方的安全性,细胞活力与浓度和时间有关。体内初步安全性试验也显示出有希望的结果。