首页> 外文期刊>Applied Organometallic Chemistry >Green synthesis and chemical characterization of gold nanoparticle synthesized using Camellia sinensis leaf aqueous extract for the treatment of acute myeloid leukemia in comparison to daunorubicin in a leukemic mouse model
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Green synthesis and chemical characterization of gold nanoparticle synthesized using Camellia sinensis leaf aqueous extract for the treatment of acute myeloid leukemia in comparison to daunorubicin in a leukemic mouse model

机译:用山茶花Sinensis叶含水提取物合成的金纳米粒子的绿色合成和化学表征在白血病小鼠模型中与Daunorubicin相比治疗急性髓性白血病

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According to chemotherapeutic properties of medicinal plants, pharmacologists have always tried to synthesize and formulate the new chemotherapeutic supplements or drugs of metallic nanoparticles using plants. In this study, Camellia sinensis leaf aqueous extract-based gold nanoparticles (AuNPs) are reported for the first time to exert a dietary therapeutic potential compared to Daunorubicin in an animal model of acute myeloid leukemia. The synthesized AuNPs were characterized using different techniques including UV-Vis., FT-IR spectroscopy, TEM, EDS, FE-SEM, and XRD. DPPH free radical scavenging test was done to evaluate the antioxidant potentials of HAuCl4, C. sinensis, AuNPs, and daunorubicin. For the analyzing of cytotoxicity effects of HAuCl4, C. sinensis, AuNPs, and daunorubicin, MTT assay was used on HUVEC, Human HL-60/vcr, 32D-FLT3-ITD, and Murine C1498 cell lines. In vivo design, induction of acute myeloid leukemia was done by 7,12-Dimethylbenz[a]anthracene (DMBA) in 75 mice. Then, the animals were randomly divided into six subgroups, including control, untreated, HAuCl4, C. sinensis, AuNPs, and daunorubicin. FTIR findings suggested antioxidant compounds in the nanoparticles were the sources of reducing power, reducing gold ions to AuNPs. SEM and TEM images exhibited a uniform spherical morphology and diameters of similar to 20-30 nm for the nanoparticles. DPPH test revealed similar antioxidant potentials for daunorubicin and AuNPs. These nanoparticles similar to daunorubicin had low cell viability dose-dependently against Human HL-60/vcr, 32D-FLT3-ITD, and Murine C1498 cell lines without any cytotoxicity on HUVEC cell line. AuNPs similar to daunorubicin, significantly (p <= 0.05) increased the anti-inflammatory cytokines and the lymphocyte, platelet, and RBC parameters and decreased the weight and volume of liver and spleen, the pro-inflammatory cytokines, and the total WBC, blast, neutrophil, monocyte, eosinophil, and basophil counts, as compared to the untreated mice. According to the above results, it appears that AuNPs can be used as a chemotherapeutic drug for the treatment of acute myeloid leukemia in the clinical trial.
机译:根据药用植物的化学治疗特性,药剂学家始终试图使用植物合成和配制金属纳米粒子的新化学治疗剂或药物。在该研究中,山茶花中叶叶含水提取物水性提取物的金纳米颗粒(AUNPS)首次举报与急性髓性白血病动物模型中的DaUnorubicin相比施加膳食治疗潜力。合成的AUNPS使用不同的技术表征,包括UV-Vis,FT-IR光谱,TEM,EDS,FE-SEM和XRD。 DPPH自由基清除试验进行了评价Haucl4,C. sinensis,AuNPS和Daunorubicin的抗氧化潜力。为了分析Haucl4,C. sinensis,AuNps和Daunorubicin的细胞毒性作用,MTT测定用于Huvec,人HL-60 / VCR,32D-FLT3-ITD和鼠C1498细胞系。在体内设计中,急性髓性白血病的诱导在75只小鼠中通过7,12-二甲基苯并[a]蒽(DMBA)进行。然后,将动物随机分为六个亚组,包括对照,未经处理的,HauCl4,C.Inensis,AuNP和Daunorubicin。 FTIR发现表明纳米颗粒中的抗氧化剂化合物是降低功率的来源,将金离子降低到AUNPS。 SEM和TEM图像表现出均匀的球形形态,与纳米颗粒相似的均匀球形形态和直径。 DPPH测试显示了Daunorubicin和AUNP的类似抗氧化潜力。这些类似于Daunorubicin的纳米颗粒具有低细胞活力剂,依赖于人HL-60 / VCR,32D-FLT3-ITD和鼠C1498细胞系,而没有任何细胞毒性在HUVEC细胞系上。类似于Daunorubicin的AUNP,显着(p <= 0.05)增加了抗炎细胞因子和淋巴细胞,血小板和RBC参数,并降低了肝脏和脾脏的重量和体积,促炎细胞因子和总WBC,爆炸与未经处理的小鼠相比,中性粒细胞,单核细胞,嗜酸性粒细胞和嗜酸性粒细胞计数。根据上述结果,似乎AUNPS可以用作治疗临床试验中急性髓性白血病的化学治疗药物。

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