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积雪草苷聚合物纳米颗粒通过增加胶原蛋白生物合成实现有效糖尿病伤口愈合:体外和体内评价

Asiaticoside polymeric nanoparticles for effective diabetic wound healing through increased collagen biosynthesis: In-vitro and in-vivo evaluation.

作者信息

Narisepalli Saibhargav, Salunkhe Shubham A, Chitkara Deepak, Mittal Anupama

机构信息

Department of Pharmacy, Birla Institute of Technology and Science (BITS PILANI), Pilani, Rajasthan 333031, India.

Department of Pharmacy, Birla Institute of Technology and Science (BITS PILANI), Pilani, Rajasthan 333031, India; Department of Cellular and Molecular Biology, Graduate School of Biomedical & Health Sciences, Hiroshima University, Hiroshima 734-8553, Japan.

出版信息

Int J Pharm. 2023 Jan 25;631:122508. doi: 10.1016/j.ijpharm.2022.122508. Epub 2022 Dec 17.

Abstract

Asiaticoside (AST) is a naturally available phytoconstituent that enables effective wound healing mainly by promoting collagen biosynthesis. However, the physicochemical nature of AST such as high molecular weight (959.12 g/mol), poor water solubility and poor permeability limits its therapeutic effects. This study aims to develop Asiaticoside polymeric nanoparticles (AST PNP) embedded in a gelatin based biodegradable hydrogel (15 % w/v) for application in the wound cavity to enable sustained release of AST and enhance its therapeutic effects. The AST PNP were fabricated in the desired size range (168.4 nm; PDI (0.09)) and the morphology, rate of fluid uptake, rate of water loss, and water vapor transmission rate of AST PNP incorporated hydrogel were determined. AST PNP gel showed porous structural morphology and possessed ideal characteristics as a graft for wound healing. The drug release kinetics and cellular uptake of AST PNP were investigated wherein, AST PNP demonstrated sustained release profile upto 24 h in comparison to free AST (complete release within 6 h) and exhibited an enhanced intra-cellular uptake in fibroblasts within 3 h compared to the free drug. In-vitrocell culture studies also demonstrated significant proliferation and migration of fibroblasts in the presence of AST PNP. Additionally, AST PNP gel upon application to the wounds of diabetic rats depicted improved wound healing efficacy in terms of improved collagen biosynthesis, upregulated COL-1 protein level (∼1.85 fold vs free AST), and enhanced expression of α-SMA compared to control groups. Altogether, formulation of AST as polymeric nanoparticles in a gel based carrier offered significant improvement in the therapeutic properties of AST for the management of diabetic wounds.

摘要

积雪草苷(AST)是一种天然存在的植物成分,主要通过促进胶原蛋白生物合成实现有效的伤口愈合。然而,AST的物理化学性质,如高分子量(959.12 g/mol)、水溶性差和渗透性差,限制了其治疗效果。本研究旨在开发一种包埋于明胶基可生物降解水凝胶(15% w/v)中的积雪草苷聚合物纳米粒(AST PNP),用于伤口腔,以实现AST的持续释放并增强其治疗效果。制备出了所需尺寸范围(168.4 nm;PDI为0.09)的AST PNP,并测定了AST PNP包载水凝胶的形态、吸液率、失水率和水蒸气透过率。AST PNP凝胶呈现多孔结构形态,具有作为伤口愈合移植物的理想特性。研究了AST PNP的药物释放动力学和细胞摄取情况,结果显示,与游离AST(6小时内完全释放)相比,AST PNP在24小时内呈现持续释放曲线,并且与游离药物相比,在3小时内成纤维细胞内摄取增强。体外细胞培养研究还表明,在AST PNP存在下,成纤维细胞有显著的增殖和迁移。此外,将AST PNP凝胶应用于糖尿病大鼠伤口后,在改善胶原蛋白生物合成、上调COL-1蛋白水平(与游离AST相比约为1.85倍)以及增强α-SMA表达方面,伤口愈合效果优于对照组。总之,将AST制成聚合物纳米粒并负载于凝胶载体中,显著改善了AST治疗糖尿病伤口的性能。

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