首页> 美国卫生研究院文献>Progress in Biomaterials >Biofabrication and characterization of flavonoid-loaded Ag Au Au–Ag bimetallic nanoparticles using seed extract of the plant Madhuca longifolia for the enhancement in wound healing bio-efficacy
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Biofabrication and characterization of flavonoid-loaded Ag Au Au–Ag bimetallic nanoparticles using seed extract of the plant Madhuca longifolia for the enhancement in wound healing bio-efficacy

机译:使用植物Madhuca longifolia的种子提取物对负载类黄酮的AgAuAu–Ag双金属纳米颗粒进行生物制造和表征以增强伤口愈合的生物功效

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摘要

AbstractThe present communication warrants the presence of significant wound healing bio-efficacy of aq. alc. extract of the seed (49.78%) of the plant Madhuca longifolia. A family of seven flavonoid fractions have been ascertained in the seed aq. alc. extract of the target plant using LCMS-8030 analysis. In vivo wound healing parameters (wound area, wound closure, epithelization period, skin breaking strength and hydroxyproline content) have been examined in Swiss albino mice models. Statistically significant (p < 0.001) enhancement in the wound healing bio-efficacy has been effectively induced using flavonoid-loaded gold: (Mlf@AuNps), silver: (Mlf@AgNps), and Au–Ag bimetallic: (Mlf@Au–AgNps) nanoparticles. Among the biofabricated nano-biomaterials, Mlf@AgNps exhibited an exceptional enhancement in the wound healing bio-efficacy (80.33%) attaining almost to the level of reference drug Placentrex (84.02%). All the fabricated nano-biomaterials were thoroughly characterized using UV–Vis, XRD, FE-SEM, TEM, EDX, and DLS. The promising enhancement in the wound healing potential of the nano-biomaterial (Mlf@AgNps) has been explained based on the cumulative effects of biological and nanotech parameters. The bio-fabricated (Mlf@AgNps) nano-biomaterials using the plant M. longifolia have lustrous prospects for the development of complimentary herbal nanomedicine for scaling-up the wound healing bio-efficacy.
机译:摘要本通讯保证了aq的明显伤口愈合生物功效的存在。铝植物马杜卡种子的提取物(49.78%)。在种子水溶液中已经确定了七个类黄酮部分。铝使用LCMS-8030分析法提取目标植物的提取物。在瑞士的白化病小鼠模型中检查了体内伤口愈合参数(伤口面积,伤口闭合,上皮形成时期,皮肤断裂强度和羟脯氨酸含量)。使用负载类黄酮的金(Mlf @ AuNps),银(Mlf @ AgNps)和金-银双金属:(Mlf @ Au– AgNps)纳米粒子。在生物制成的纳米生物材料中,Mlf @ AgNps在伤口愈合生物功效方面表现出非凡的提高(80.33%),几乎达到了参比药物Placentrex的水平(84.02%)。所有制备的纳米生物材料都使用UV-Vis,XRD,FE-SEM,TEM,EDX和DLS进行了彻底表征。基于生物学和纳米技术参数的累积效应,已经解释了纳米生物材料(Mlf @ AgNps)的伤口愈合潜力的有希望的增强。使用植物长叶分枝杆菌的生物预制的(Mlf @ AgNps)纳米生物材料在开发免费的草药纳米药物以扩大伤口愈合生物功效方面具有光明的前景。

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