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富马酸掺杂的 Ag/琼脂混合水凝胶:解决伤口愈合问题的多功能途径。

Fumaric acid incorporated Ag/agar-agar hybrid hydrogel: A multifunctional avenue to tackle wound healing.

机构信息

GITAM Institute of Medical Sciences and Research (GIMSR), Department of Pharmacology, Visakhapatnam, Andhra Pradesh 530045, India; Department of Research and Development, Saveetha Institute of Medical and Technical Sciences (Deemed University), Thandalam, Chennai, Tamilnadu 602105, India.

Indian Institute of Petroleum and Energy (IIPE), Department of Chemistry, Visakhapatnam, Andhra Pradesh 530003, India.

出版信息

Mater Sci Eng C Mater Biol Appl. 2020 Jun;111:110743. doi: 10.1016/j.msec.2020.110743. Epub 2020 Feb 13.

Abstract

Wound and its treatment is one of the major health concerns throughout the globe. Various extrinsic and intrinsic factors can influence the dynamics of healing mechanism. One such extrinsic factor is moist environment in wound healing. The advantages of optimum hydration in wound healing are enhanced autolytic debridement, angiogenesis and accelerated cell proliferation and collagen formation. But hydrated wounds often end up with patient's uncomfortability, associated infection, and tissue lipid peroxidation. Healing process prefers antimicrobial, anti-inflammatory and optimum moist microenvironment. Here, we have synthesized fumaric acid incorporated agar-silver hydrogel (AA-Ag-FA); characterized by UV-Visible spectroscopy, FTIR spectroscopy and TEM. The surface morphology is evaluated through SEM. The size of the silver nanoparticles (Ag NPs) was found to be 10-15 nm. The hydrogel shows potential antibacterial effect against Escherichia coli, Staphylococcus aureus and Pseudomonas aeruginosa which are predominantly responsible for wound infection. The gel shows reasonable antioxidant property evaluated through 2,2-diphenyl-1-picrylhydrazyl (DPPH) assay. Topical application of the gel on the wound site heals the wound at much faster rate even compared to standard (Mega heal, Composition: Colloidal silver 32 ppm hydrogel) gel. Histological analysis reveals better tissue proliferation (i.e. epithelialization), more granulation tissue formation, neovascularisation, fibroblast and mature collagen bundles. The lipid peroxidation of wound tissue estimated through malondialdehyde (MDA) assay was found to be reasonably less when treated with AA-Ag-FA hydrogel compared to standard (Mega heal). Cytotoxicity of the samples tested through MTT assay and live-dead cell staining shows its nontoxic biocompatibility nature. In our hydrogel scaffold, the bio-degradable agar-agar provides the moist environment; the Ag NPs inside the gel acts as bactericidal agent and fumaric acid facilities the antioxidant and angiogenesis path implicitly.

摘要

伤口及其治疗是全球主要的健康关注点之一。各种外在和内在因素都会影响愈合机制的动态。外在因素之一是伤口愈合中的湿润环境。伤口最佳水化的优点包括增强自溶清创、血管生成以及加速细胞增殖和胶原蛋白形成。但湿润的伤口往往会给患者带来不适、感染和组织脂质过氧化。愈合过程需要抗菌、抗炎和最佳湿润的微环境。在这里,我们合成了富马酸掺入琼脂-银水凝胶(AA-Ag-FA);通过紫外可见光谱、傅里叶变换红外光谱和透射电子显微镜进行了表征。通过扫描电子显微镜评估了表面形貌。银纳米粒子(Ag NPs)的大小发现为 10-15nm。该水凝胶对大肠杆菌、金黄色葡萄球菌和铜绿假单胞菌具有潜在的抗菌作用,这些细菌主要负责伤口感染。通过 2,2-二苯基-1-苦基肼(DPPH)测定评估,该凝胶显示出合理的抗氧化性能。将凝胶涂在伤口部位,伤口愈合速度甚至比标准(Mega heal,成分:胶体银 32ppm 水凝胶)凝胶更快。组织学分析显示,组织增殖(即上皮化)更好,肉芽组织形成更多,新生血管形成,成纤维细胞和成熟的胶原蛋白束更多。通过丙二醛(MDA)测定评估伤口组织的脂质过氧化,发现与标准(Mega heal)相比,AA-Ag-FA 水凝胶处理后的 MDA 含量较低。通过 MTT 测定和活死细胞染色测试的样品细胞毒性表明其具有非毒性的生物相容性。在我们的水凝胶支架中,可生物降解的琼脂琼脂提供了湿润的环境;凝胶内的 Ag NPs 充当杀菌剂,富马酸为抗氧化和血管生成提供了内在的途径。

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