苦楝叶和果实纳米银纳米颗粒在乳腺癌和卵巢癌细胞系中的生物发生

L. Kousalya, K. Rekha Rani, Patnaik Srinivas, P. Josthna
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引用次数: 0

摘要

民间医学被认为是治疗癌症的新疗法之一。世界范围内的女性癌症正在增加,疾病复发一直是世界各地的主要威胁。我们目前的研究重点是通过MTT、流式细胞术和迁移试验,通过有机方法形成银纳米颗粒(AgNPs),以及它们对人类乳腺癌(MCF-7)和卵巢癌(PA-1)细胞系的化学预防能力。近年来,有机纳米颗粒生产中的植物提取物由于其实惠、有效、简单和简洁等优点而变得越来越普遍。以苦楝叶和苦楝果甲醇提取物同时制备银纳米颗粒,考察其效价和药效。利用合成的苦楝银纳米粒子(MA-AgNPs)进行表征研究。在400 nm(叶片)和427 nm(果实)之间发现典型的SPR峰,平均粒径为92.5 nm(叶片)和124.1 nm(果实)。苦楝叶和果实的zeta电位分别为-20.9和-31.2 mV。利用傅里叶变换红外光谱(FTIR)鉴定了萃取物和硝酸银还原形成的纳米银颗粒中盖层剂的相关官能团。对大肠杆菌、金黄色芽孢杆菌、金黄色葡萄球菌和肺炎克雷伯菌的抗菌活性将有助于开发新的抗菌药物。发现MCF-7和PA-1细胞系对生物合成纳米颗粒的细胞毒性作用更敏感。所合成的纳米银具有极好的抗癌活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biogenesis of Melia Azedarach silver nanoparticles using leaves and fruits in breast and ovarian cancer cell lines
Folk medicine has been considered one of the novel remedies for treating cancers. Women's cancers are increasing worldwide, and disease recurrence has been a major threat all over the world. Our current study focused on the formation of silver nanoparticles (AgNPs) by organic methods and their chemo-preventive capacity against the breast (MCF-7) and ovarian cancer (PA-1) cell lines from humans by employing MTT, Flow cytometry, and migration assays. Plant extracts in organic nanoparticle production have become more common in recent years due to their benefits, including affordability, effectiveness, simplicity and briefness. Melia azedarach leaf and fruit methanolic extracts were used to successfully create silver nanoparticles simultaneously to evaluate the potency and efficacy of the extracts. Characterization studies were performed using synthesized M. azedarach silver nanoparticles (MA-AgNPs). A typical SPR peak was discovered ranging from 400 nm (leaf) and 427 nm (fruit) using absorption spectroscopy, with an average particle size of 92.5 nm (leaf) and 124.1 (fruit) nm. The zeta potential for Melia leaves and fruits was found to be -20.9 and -31.2 mV for the extracts. The relevant functional groups for the capping agent found in the extracts and silver nanoparticles formed as a result of the reduction of silver nitrate were identified using Fourier transform infrared spectroscopy (FTIR). Antimicrobial activity against Escherichia coli, Bacillus aureus, Staphylococcus aureus, and Klebsiella pneumonia would be useful in new antimicrobial medications being developed. MCF-7 and PA-1 cell lines were found to be more susceptible to the cytotoxic action of the biosynthesized nanoparticles. The silver nanoparticles that were synthesized exhibited extremely positive anti-cancer activity.
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