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首页> 外文期刊>RSC Advances >Synthesis of non-toxic, biocompatible, and colloidal stable silver nanoparticle using egg-white protein as capping and reducing agents for sustainable antibacterial application
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Synthesis of non-toxic, biocompatible, and colloidal stable silver nanoparticle using egg-white protein as capping and reducing agents for sustainable antibacterial application

机译:使用蛋白蛋白质为无毒,生物相容性和胶体稳定银纳米粒子作为可持续抗菌应用的封装和还原剂

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摘要

For nearly a decade, silver nanoparticles (AgNPs) have been the most prevalent commercial nanomaterials products widely used in different biomedical applications due to their broad-spectrum antimicrobial activity. However, their poor long-term stability in different environments, namely, pH, ionic strength, and temperature, and cytotoxicity toward mammalian cells has restricted their more extensive applications. Hence, there is urgent need to develop highly biocompatible, non-toxic, and stable silver nanoparticles for wide-ranging environments and applications. In the present study, a simple, sustainable, cost-effective and green method has been developed to prepare highly stable aqueous colloidal silver nanoparticles (AgNPs-EW) using the ovalbumin, ovotransferrin, and ovomucoid of egg-white as reducing and capping agents accomplished under the irradiation of direct sunlight. Then, we evaluated the effects of freezing-drying (lyophilization) and freeze-thaw cycles on the stability of AgNPs-EW in aqueous solution under visual inspection, transmission electron microscopy, and absorbance spectroscopy. In addition, we studied the antibacterial activity against Salmonella typhimurium and Escherichia coli, carried out biocompatibility studies on chicken blood, and tested acute, chronic toxicity in Drosophila melanogaster. The results suggest that AgNPs-EW did not aggregate upon freeze-thawing and lyophilization, thus exhibiting remarkable stability. The antibacterial activity results showed that the AgNPs-EW had the highest antibacterial activity, and the minimum inhibitory concentration (MIC) of AgNPs-EW for E. Coli and S. typhimurium were 4 and 6 g ml(-1), respectively. The biocompatibility study revealed that the AgNPs-EW did not induce any hemolytic effect or structural damage to the cell membranes of chicken erythrocytes up to a concentration of 12 g ml(-1). Similarly, no acute and chronic toxicity was observed on melanization, fecundity, hatchability, viability, and the duration of development in the 1(st) generation of Drosophila melanogaster at the concentration range of 10 mg L-1 to 100 mg L-1 of AgNPs-EW, and all the flies completed their full developmental cycle. Therefore, the present study successfully demonstrated the green and sustainable preparation of non-toxic AgNPs-EW having good biocompatibility, enhanced colloidal stability, and antibacterial activity. Hence, the synthesized AgNPs-EW could be used for the development of an antimicrobial formulation for controlling microbial infection.
机译:对于近十年来,由于其广谱抗微生物活性,银纳米粒子(AgNP)是最普遍的商业纳米材料产品广泛应用于不同的生物医学应用。然而,它们在不同环境中的长期稳定性差,即pH,离子强度和温度,对哺乳动物细胞的细胞毒性受到了更广泛的应用。因此,迫切需要为广泛的环境和应用开发高度生物相容性,无毒和稳定的银纳米粒子。在本研究中,一个简单的,可持续的,成本效益和绿色方法已经被开发,以制备高度稳定的含水的胶态银纳米颗粒(的AgNPs-EW)使用卵清蛋白,卵转铁蛋白,和卵类粘蛋白的蛋白作为减少和封盖完成试剂的在阳光直射照射下。然后,我们评估了冷冻干燥(冻干)和冻融循环对视觉检查,透射电子显微镜和吸光度光谱法在水溶液中AgNPS-Ew的稳定性的影响。此外,我们研究了对沙门氏菌和大肠杆菌的抗菌活性,进行了鸡血中的生物相容性研究,并在德科咽黑色血糖蛋白酶中进行了急性慢性毒性。结果表明,AgNPS-EW在冷冻解冻和冻干后不会聚集,从而表现出显着的稳定性。抗菌活性结果表明,AgNPS-EW具有最高的抗菌活性,以及​​大肠杆菌和S. Typhimurium的AgNPS-EW的最小抑制浓度(MIC)分别为4×6g mL(-1)。生物相容性研究表明,agnps-ew没有诱导鸡红细胞细胞膜的任何溶血效果或结构损伤,其浓度为12g ml(-1)。同样,在浓度范围为10mg l-1至100mg l-1的浓度范围内,不观察到糖化,繁殖力,孵化率,可行性和发育持续时间的急性和慢性毒性。 Agnps-ew,所有苍蝇都完成了他们的全部发展周期。因此,本研究成功地证明了具有良好的生物相容性,增强胶体稳定性和抗菌活性的无毒AgNPS-EW的绿色和可持续制剂。因此,合成的AgNPS-Ew可用于开发用于控制微生物感染的抗微生物制剂。

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  • 来源
    《RSC Advances 》 |2018年第41期| 共17页
  • 作者单位

    Def Res &

    Dev Org DRDO Def Inst High Altitude Res DIHAR 56 APO Leh Ladakh 194101 India;

    Def Res &

    Dev Org DRDO Def Inst High Altitude Res DIHAR 56 APO Leh Ladakh 194101 India;

    Meerut Inst Engn &

    Technol Dept Biotechnol Meerut 250005 Uttar Pradesh India;

    Meerut Inst Engn &

    Technol Dept Biotechnol Meerut 250005 Uttar Pradesh India;

    Meerut Inst Engn &

    Technol Dept Biotechnol Meerut 250005 Uttar Pradesh India;

    Def Res &

    Dev Org DRDO Def Inst High Altitude Res DIHAR 56 APO Leh Ladakh 194101 India;

    Def Res &

    Dev Org DRDO Def Inst High Altitude Res DIHAR 56 APO Leh Ladakh 194101 India;

    Def Res &

    Dev Org DRDO Def Inst Physiol &

    Allied Sci Delhi 110054 India;

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  • 正文语种 eng
  • 中图分类 化学 ;
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