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首页> 外文期刊>Applied Organometallic Chemistry >Characterization and anti-acute T cell leukemia properties of silver nanoparticles synthesized by a green approach for bioremediation applications: Introducing a new chemotherapeutic drug for clinical trial studies
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Characterization and anti-acute T cell leukemia properties of silver nanoparticles synthesized by a green approach for bioremediation applications: Introducing a new chemotherapeutic drug for clinical trial studies

机译:生物化应用绿色方法合成的银纳米粒子的表征与抗急性T细胞白血病性能:引入临床试验研究新的化学治疗药物

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In recent years, biosynthesis of silver nanoparticles using plant extracts and bioactive compounds has gained much attention. Green synthesis of nanoparticles is eco-friendly, cost-effective, and is a promising substitute for the chemical synthesis of silver nanoparticles. Also, the previous experiments have revealed that plants raise the cytotoxicity potentials of silver nanoparticles against several cell lines especially tumor cell lines. The present study confirms the potential of aqueous extract of Glycyrrhiza glabra L leaf grown under in vitro condition for the biosynthesis of silver nanoparticles (AgNPs). Also, in this study, we revealed the antioxidant and anti-acute T cell leukemia properties of AgNPs against J45.01, Jurkat, Clone E6-1, J.CaM1.6, and J.RT3-T3.5 cell lines. Silver nanoparticles were characterized and analyzed using common nanotechnology techniques including UV-Vis. and FT-IR spectroscopy, TEM, and FE-SEM. DPPH free radical scavenging test was carried out to assess the antioxidant potentials of AgNO3, G. glabra, and AgNPs. MTT assay was used on normal cell line (HUVEC) and acute T cell leukemia cell lines (J45.01, Jurkat, Clone E6-1, J.CaM1.6, and J.RT3-T3.5) for analyzing of anti-acute T cell leukemia properties of AgNO3, G. glabra, and AgNPs. FT-IR analysis revealed antioxidant compounds in the nanoparticles were the sources of reducing power, reducing silver ions to AgNPs. TEM and FE-SEM images indicated a uniform spherical morphology in size of 20 nm for silver nanoparticles. DPPH test indicated similar antioxidant activities for G. glabra, AgNPs, and butylated hydroxytoluene. Silver nanoparticles had very low cell viability dose-dependently against J45.01, Jurkat, Clone E6-1, J.CaM1.6, and J.RT3-T3.5 cell lines without any cytotoxicity on HUVEC cell line. The best result of cytotoxicity property of AgNPs against above cell lines was seen in the case of J.CaM1.6 cell line. Above findings confirm the significant antioxidant and anti-acute T cell leukemia properties of AgNPs. After confirming these results in clinical trial studies, AgNPs can be used as a chemotherapeutic drug for the treatment of acute T cell leukemia in human.
机译:近年来,使用植物提取物和生物活性化合物的银纳米粒子的生物合成效应了很多关注。纳米颗粒的绿色合成是环保,成本效益,并且是银纳米粒子的化学合成的有希望的替代品。此外,之前的实验表明,植物促进银纳米颗粒的细胞毒性潜力,尤其是肿瘤细胞系。本研究证实了在体外条件下生长的银纳米粒子(AgNP)的体外条件下生长的甘草粒子叶片水提取物的潜力。此外,在本研究中,我们揭示了抗氧化剂和抗急性T细胞白血病性能对J45.01,Jurkat,克隆E6-1,J.Cam1.6和J.RT3-T3.5细胞系。使用常见的纳米技术技术表征和分析银纳米粒子,包括UV-Vis。和FT-IR光谱,TEM和FE-SEM。进行DPPH自由基清除试验以评估AgnO3,G.Glabra和AgNP的抗氧化潜力。 MTT测定用于正常细胞系(HUVEC)和急性T细胞白血病细胞系(J45.01,Jurkat,克隆E6-1,J.Cam1.6和J.RT3-T3.5),用于分析抗 - 急性T细胞白血病Agno3,G.Glabra和AgNPS的性质。 FT-IR分析显示纳米颗粒中的抗氧化剂化合物是减少功率的来源,将银离子还原为agnps。 TEM和Fe-SEM图像表示银纳米粒子为20nm的均匀球形形态。 DPPH测试表明G.Glabra,AgNP和丁基化羟基甲苯相似的抗氧化活性。银纳米颗粒具有非常低的细胞活力剂,依赖于J45.01,Jurkat,克隆E6-1,J.cam1.6和J.RT3-T3.5细胞系,没有任何细胞毒性在Huvec细胞系上。在J.Cam1.6细胞系的情况下,观察到AgNP对细胞系细胞系细胞毒性的最佳结果。上述研究结果证实了AgNP的显着抗氧化和抗急性T细胞白血病性质。确认这些结果在临床试验研究中,AgNP可用作治疗人中急性T细胞白血病的化学治疗药物。

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