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首页> 外文期刊>Applied Organometallic Chemistry >Biosynthesis of iron nanoparticles using Allium eriophyllum Boiss extract: Chemical characterization, antioxidant, cytotoxicity, antibacterial, antifungal, and cutaneous wound healing effects
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Biosynthesis of iron nanoparticles using Allium eriophyllum Boiss extract: Chemical characterization, antioxidant, cytotoxicity, antibacterial, antifungal, and cutaneous wound healing effects

机译:使用艾滋病瘦菌博士群的铁纳米粒子的生物合成:化学表征,抗氧化,细胞毒性,抗菌,抗真菌和皮肤伤口愈合效果

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Recently, metal nanoparticles have been used for the treatment of several disorders, such as infectious diseases. Indeed, finding the antibiotics of nanoparticles is in researching priority of many countries. The aim of this experiment was the green synthesis of iron nanoparticles from aqueous extract of Allium eriophyllum Boiss (FeNPs@AE) and evaluation of their antioxidant, cytotoxicity, antibacterial, antifungal, and cutaneous wound healing effects under in vitro and in vivo conditions. These nanoparticles were characterized by FT-IR, UV, XRD, EDS, TEM, and FE-SEM analysis. According to the XRD analysis, 40 nm was measured for the crystal size of nanoparticles. SEM and TEM images exhibited a uniform spherical morphology and average diameters of 45 nm for the nanoparticles. FTIR findings suggested antioxidant compounds in the nanoparticles were the sources of reducing power, reducing iron ions to FeNPs@AE. DPPH test indicated similar antioxidant potentials for FeNPs@AE and butylated hydroxytoluene. The synthesized FeNPs@AE had great cell viability dose-dependently and revealed this method was nontoxic. In the antimicrobial part of this study, FeNPs@AE prevented the growth of all bacteria and removed them at 2-4 mg/ml concentrations (p <= 0.01). In the case of antifungal effects of FeNPs@AE, they inhibited the growth of all fungi at 1-2 mg/ml concentrations and destroyed them at 2-4 mg/ml concentrations (p <= 0.01). In part of cutaneous wound healing effect of FeNPs@AE, after creating the cutaneous wound, the rats were randomly divided into six groups: treatment with 0.2% FeNPs@AE ointment, treatment with 0.2% A. eriophyllum ointment, treatment with 0.2% FeCl3.6H(2)O ointment, treatment with 3% tetracycline ointment, treatment with Eucerin basal ointment, and untreated control. These groups were treated for 10 days. Use of FeNPs@AE ointment in the treatment groups substantially raised (p <= 0.01) the wound contracture, vessel, hydroxyl proline, hexuronic acid, fibrocyte, and fibrocytes/fibroblast rate and remarkably decreased (p <= 0.01) the wound area, total cells, neutrophil, and lymphocyte compared to other groups. The results of FT-IR, UV, XRD, TEM, and FE-SEM confirm that the aqueous extract of A. eriophyllum can be used to produce iron nanoparticles with a significant amount of antioxidant, antibacterial, antifungal, and cutaneous wound healing properties without any cytotoxicity.
机译:最近,金属纳米颗粒已被用于治疗几种疾病,例如传染病。实际上,寻找纳米粒子的抗生素正在研究许多国家的优先事项。该实验的目的是来自艾滋病患者贫世性水提取物(FENPS @ AE)的铁纳米粒子的绿色合成,并在体外和体内条件下评估其抗氧化剂,细胞毒性,抗菌,抗真菌和皮肤伤口愈合效果。通过FT-IR,UV,XRD,EDS,TEM和Fe-SEM分析表征这些纳米颗粒的特征。根据XRD分析,测量纳米颗粒的晶体尺寸40nm。 SEM和TEM图像显示纳米颗粒的均匀球形形态和平均直径为45nm。 FTIR发现表明纳米颗粒中的抗氧化剂化合物是降低功率的来源,将铁离子还原到FENPS @ AE。 DPPH测试表明了FENPS @ AE和丁基化羟基甲苯的类似抗氧化电位。合成的FENPS @ AE具有很大的细胞活力剂剂量依赖性,并显示出该方法存在无毒。在本研究的抗微生物部分中,FENPS @ AE阻止了所有细菌的生长并以2-4mg / ml浓度除去它们(P <= 0.01)。在FENPS @ AE的抗真菌效应的情况下,它们抑制了1-2mg / mL浓度的所有真菌的生长并以2-4mg / ml浓度销毁它们(P <= 0.01)。部分皮肤伤口愈合效果FENPS @ AE,在创造皮肤伤口后,将大鼠随机分为6组:用0.2%FENPS @ AE软膏治疗,用0.2%A.灰霉病治疗,用0.2%FECL3治疗.6H(2)O软膏,用3%四环素软膏治疗,用EUCERIN基础软膏治疗,以及未处理的对照。这些群体治疗10天。在治疗组中使用FENPS @ AE软膏大大提高(P <= 0.01)伤口挛缩,血管,羟脯氨酸,六尿酸,纤维纤维和纤维细胞/成纤维细胞率显着降低(P <= 0.01),与其他组相比,总细胞,中性粒细胞和淋巴细胞。 FT-IR,UV,XRD,TEM和Fe-SEM的结果证实了A.灰度的水质提取物可用于生产具有大量抗氧化剂,抗菌,抗真菌和皮肤伤口愈合性能的铁纳米粒子而没有任何细胞毒性。

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