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首页> 外文期刊>Artificial cells, nanomedicine, and biotechnology. >Biogenic synthesis of AgNPs using Artemisia oliveriana extract and their biological activities for an effective treatment of lung cancer
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Biogenic synthesis of AgNPs using Artemisia oliveriana extract and their biological activities for an effective treatment of lung cancer

机译:使用Artemisia Oliveriana提取物的生物合成AgNP及其生物活性治疗肺癌的生物活性

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摘要

Silver nanoparticles (AgNPs) were synthesized using Artemisia oliveriana extract, and their physicochemical characteristics were studied. The antioxidant and antimicrobial activities of the AgNPs, as well as their anticancer effects on the lung cancer cell line (A549), using 1,1-diphenyl-2-picrylhydrazyl (DPPH), MIC and 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl-tetrazolium bromide (MTT) techniques respectively demonstrated that the synthesized AgNPs mainly affected the gram-positive bacteria rather than the gram-negative bacteria, and exhibited significant cellular toxicity on the A549 cell line. Further, the cellular uptake of the AgNPs results indicated that the AgNPs accumulated within the cell. Moreover, their impact on the expression of apoptotic genes including Bax, Bcl-2, caspase-3 (CASP3), caspase-9 (CASP9) and miR-192 using real-time PCR demonstrated substantial increase in the expression of all mentioned genes (p.001). Finally, the apoptotic effects of the AgNPs through DNA fragmentation test, flow cytometry and cell cycle analysis indicated the induction of apoptosis in the A549 cell line. The results revealed that the AgNPs synthesized using A. oliveriana extract have potential biological applications.
机译:使用Artemisia Oliveriana提取物合成银纳米颗粒(AgNP),研究了它们的物理化学特性。 AGNP的抗氧化剂和抗菌活性,以及​​它们对肺癌细胞系(A549)的抗癌作用,使用1,1-二苯基-2-富铬酰基(DPPH),MIC和3-(4,5-二甲基噻ol- 2-yl)-2,5-二苯基 - 四唑鎓溴化物(MTT)技术分别证明了合成的agnps主要影响革兰氏阳性细菌,而不是革兰氏阴性细菌,并在A549细胞系上表现出显着的细胞毒性。此外,AgNPS结果的细胞吸收表明agnps累积在细胞内。此外,它们对包括Bax,Bcl-2,Caspase-3(Casp3),Caspase-9(Casp9)和MiR-192在内的凋亡基因表达的影响,所述使用实时PCR的表达显着增加( P& .001)。最后,通过DNA碎片试验,流式细胞术和细胞周期分析的凋亡作用表明A549细胞系中凋亡的诱导。结果表明,使用A. Oliveriana提取物合成的AgNP具有潜在的生物学应用。

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