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Employment of Cassia angustifolia leaf extract for zinc nanoparticles fabrication and their antibacterial and cytotoxicity

机译:用于锌纳米粒子的Cassia Angustifolia叶提取物的就业及其抗菌和细胞毒性

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The plant Cassia angustifolia belongs to Saudi Arabia, which is one of the native places and now cultured throughout the global countries. Medical care in the Arab world is an essential outlet for medicinal plants, both because they are crucial elements for prophetic medicine and due to their lengthy background in the Middle East. C.angustifolia is one of the medicinal plants used in the Saudi Arabia. The usage of plant extracts for synthesizing nanoparticles is conducive to other biological material, since it avoids the lengthy phase of cell culture maintenance. Silver nanoparticles attract further attention due to their strong conductivity, stability and antimicrobial activity across different metal nanoparticles. The present study was designed in the Saudi C. angustifolia leaves with the zinc synthesis of nanoparticles and its antibacterial ability. The plant extracts of C. angustifolia was used for synthesis of zinc nanoparticles, antimicrobial activities against bacterial strains have been tested along with transmission electron microscope (TEM), UV spectroscopy and antimicrobial activities have been conducted. This study showed that silver ions may be transferred from the plant extract to silver nanoparticles. AgNPs biogenic capacity to antibacterial with lovo cell with IC 50 ranged from 33.5?±?0.2?μg/mL demonstrated strong antibacterial capacity to antibody. The overall absorption value for the extract was between 420 and 440?nm and the color transition to green was the plasma absorption of the AgNPs. TEM results was showed in 200,000 magnification. The uniqueness of the current study is that Cassia angustifolia leaf extract from Saudi Arabia was used to prepare the metallic nanoparticles. Additionally, ZnCl 2 may also be used as nanoparticles of mineral salt and zinc, which, since their application has been confirmed, are antimicrobial.? 2021 Published by Elsevier B.V. on behalf of King Saud University.
机译:植物Cassia Angustifolia属于沙特阿拉伯,这是本地名胜的国家之一,现在在全球各国培养。阿拉伯世界的医疗保健是药用植物的必需出口,这两者都是因为它们是预言医学的关键因素,并且由于其在中东的冗长背景是由于其漫长的背景。 C.Angustifolia是沙特阿拉伯使用的药用植物之一。用于合成纳米颗粒的植物提取物的用途是有利于其他生物材料,因为它避免了细胞培养维护的冗长阶段。由于它们在不同金属纳米颗粒上的强的导电性,稳定性和抗微生物活性强,银纳米粒子引起了进一步的关注。目前的研究是在沙特C.Angustifolia叶子中设计的纳米颗粒的锌和抗菌能力。 C.Angustifolia的植物提取物用于合成锌纳米颗粒,已经用透射电子显微镜(TEM)测试了针对细菌菌株的抗微生物活性,进行了UV光谱和抗微生物活性。该研究表明,银离子可以从植物提取物转移到银纳米粒子中。与IC 50的Lovo电池与Lovo电池的抗菌的生物能力范围为33.5?0.2Ω·μg/ ml,表明了对抗体的强抗菌能力。提取物的整体吸收值在420和440℃之间,并且颜色过渡到绿色的血浆吸收。 TEM结果显示在200,000倍。目前研究的独特性是沙特阿拉伯的Cassia Agusifolia叶提取物用于制备金属纳米颗粒。另外,ZnCl 2也可用作矿物盐和锌的纳米颗粒,因为它们的应用已经证实,是抗微生物的。 2021年由elsevier b.v发表的。代表沙特大学国王。

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