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杠柳叶灌胶/聚丙烯酸水凝胶靶向缓解肝肾纤维化的治疗功效:一种多方面的生物材料方法。

Therapeutic efficacy of Strobilanthes urticifolia-infused pectin/polyacrylic acid hydrogel for targeted hepatorenal fibrosis mitigation: A multifaceted biomaterial approach.

机构信息

Department of Biotechnology, Faculty of Science, Mirpur University of Science and Technology, Mirpur, AJK, Pakistan.

School of Biomedical Engineering, Health Science Centre, Shenzhen University, Shenzhen, People's Republic of China.

出版信息

Microsc Res Tech. 2024 Dec;87(12):2974-2988. doi: 10.1002/jemt.24667. Epub 2024 Jul 30.

Abstract

Pectin/polyacrylic acid (PPAA) hydrogel is a unique and versatile biomaterial with applications in drug delivery, wound healing, tissue engineering, and agriculture, owing to its tailored properties and multifunctional attributes. This study aims to harness the therapeutic potential of Strobilanthes urticifolia extract within a PPAA hydrogel matrix to attenuate liver and kidney fibrosis through targeted and sustained delivery of biologically active substances. PPAA hydrogel was prepared by free radical polymerization, followed by its porosity and swelling determination. The results depicted the porous nature of PPAA hydrogel and improved swelling properties at pH 7.4, confirming its drug delivery promise. The polyphenolic-enriched S. urticifolia extracts of leaf and flower were loaded onto PPAA hydrogel, and the loading efficiency was 87% (leaf) and 62.5% (flower). Moreover, slow-release studies showed controlled and prolonged release of polyphenols for 7 days. The polyphenolic-enriched hydrogel's microstructure was characterized using SEM, FTIR, and thermogravimetric analysis (TGA). SEM results revealed a highly porous structure of polyphenol enriched PPAA hydrogel, while FTIR analysis confirmed the presence of functional groups such as OH group of carboxylic acid, aliphatic CH stretching due to acrylic acid grafting with pectin, CO stretching due to acid linkage with pectin, CH of aromatic ring, and CH of carboxylate salt in PPAA hydrogel. TGA of PPAA hydrogel showed its stability up to 488°C. Additionally, the S. urticifolia extract loaded PPAA hydrogel displayed significant antibacterial properties and minimum inhibitory concentrations against both Gram-positive and Gram-negative bacteria. In vivo studies carried out on rats demonstrated that polyphenolic enriched PPAA hydrogel significantly attenuates liver and kidney fibrosis. Therefore, it is concluded from the present study that loading of polyphenolic enriched extract from leaves and flower of S. urticifolia enhanced the biomedical applications of PPAA hydrogel. RESEARCH HIGHLIGHTS: The PPAA hydrogel developed in this study exhibits a highly porous structure and improved swelling properties at physiological pH (7.4), making it an excellent candidate for drug delivery systems. S. urticifolia extracts, rich in polyphenols, were successfully incorporated into the PPAA hydrogel with high loading efficiencies of 87% for leaf and 62.5% for flower extracts. Loading of polyphenolic enriched extracts of S. urticifolia onto PPAA enhanced its biological activities such as antibacterial, hepatoprotective, and reno-protective activities as depicted by in vitro and in vivo studies.

摘要

黄药子聚丙交酯/聚丙烯酸(PPAA)水凝胶是一种独特且多功能的生物材料,具有药物输送、伤口愈合、组织工程和农业等方面的应用潜力,这要归功于其可定制的特性和多功能属性。本研究旨在利用黄药子提取物的治疗潜力,将其负载到 PPAA 水凝胶基质中,通过生物活性物质的靶向和持续输送来减轻肝和肾纤维化。通过自由基聚合制备了 PPAA 水凝胶,随后对其孔隙率和溶胀性进行了测定。结果描绘了 PPAA 水凝胶的多孔性质和在 pH7.4 时改善的溶胀性能,证实了其作为药物输送载体的潜力。将富含多酚的黄药子叶和花提取物负载到 PPAA 水凝胶上,负载效率分别为 87%(叶)和 62.5%(花)。此外,缓控释研究表明多酚可以在 7 天内持续释放。采用扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)和热重分析(TGA)对富含多酚的水凝胶的微观结构进行了表征。SEM 结果显示,多酚富集的 PPAA 水凝胶具有高度多孔的结构,而 FTIR 分析证实了存在功能基团,如羧酸的 OH 基团、由于与果胶接枝的丙烯酸的脂肪族 CH 伸缩、由于与果胶的酸键合的 CO 伸缩、芳环的 CH 和羧酸盐的 CH 在 PPAA 水凝胶中。PPAA 水凝胶的 TGA 表明其在 488°C 下稳定。此外,负载黄药子提取物的 PPAA 水凝胶表现出对革兰氏阳性和革兰氏阴性细菌的显著抗菌性能和最小抑菌浓度。在大鼠体内研究中,多酚富集的 PPAA 水凝胶显著减轻了肝和肾纤维化。因此,本研究得出结论,负载黄药子叶和花中的多酚富集提取物增强了 PPAA 水凝胶的生物医学应用。研究亮点:本研究开发的 PPAA 水凝胶具有高度多孔的结构和在生理 pH(7.4)下改善的溶胀性能,使其成为药物输送系统的优秀候选物。黄药子提取物,富含多酚,成功地与 PPAA 水凝胶结合,叶提取物的负载效率为 87%,花提取物的负载效率为 62.5%。负载黄药子多酚富集提取物增强了其生物活性,如抗菌、保肝和肾保护活性,这通过体外和体内研究得到了证明。

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