金纳米颗粒包埋皂苷提取物对MCF7乳腺癌细胞系的抗增殖作用

S. Vigneshkumar, Kavimani
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引用次数: 2

摘要

近年来,有大量研究报道了芝麻果(Sapindus emarginatus)在癌症和其他治疗中的应用。本研究以SE果提取物为原料制备金纳米粒子(Au Nps)。将合成的Au Nps包埋在SE果实提取物中。采用紫外可见光谱(UV - Vis)、离心粒度分析仪(CPS)、扫描电镜(SEM)和傅里叶变换红外光谱(FTIR)对SE-Au Nps进行了表征。采用MTT法检测SE果提取物和SE- au Nps对MCF7乳腺癌细胞株的影响,并进行比较。在543nm处获得了SE-Au Nps的UV- Vis吸光度。对SE果实提取物中金纳米粒子的离心粒度分析表明,金纳米粒子的粒径变化很大,在15 ~ 20nm之间的粒径范围内,金纳米粒子的比例较高。用扫描电镜观察了包埋在SE果实提取物中的Au Nps的形态。用红外光谱法证实了SE果实提取物中Au Nps的存在。对MCF7乳腺癌细胞株的MTT试验结果表明,SE- au Nps的细胞存活率低于单独SE果实提取物的细胞存活率。因此,经Au Nps包埋后,SE果实提取物的抗增殖活性明显增强,待进一步研究后可有效用于治疗。
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Sapindus emarginatus extract embedded with gold nanoparticles: An antiproliferative agent against MCF7 breast cancer cell line
There are numerous studies reported on the usage of the Sapindus emarginatus (SE) fruit in cancer and other treatments in the past few years. In this study, crude SE fruit extract was prepared and it was further used to synthesis gold nanoparticles (Au Nps). The synthesized Au Nps were left embedded in the SE fruit extract. The Au Nps embedded in the SE fruit extract (SE-Au Nps) were characterized using UV Vis spectroscopy, Centrifugal particle size analyzer (CPS), Scanning Electron Microscope (SEM) and Fourier Transform Infrared Spectroscopy (FTIR). MTT assay was carried out for both SE fruit extract and SE-Au Nps on MCF7 breast cancer cell line and compared. The UV- Vis Absorbance for the SE-Au Nps was obtained at 543nm. The centrifugal particle size analysis of the Au Nps embedded in SE fruit extract showed the size of the nanoparticles to be widely varying with higher fraction of particles between the size ranges of 15 to 20nm. The morphology of the Au Nps embedded in SE fruit extract was observed using SEM. The presence of Au Nps in SE fruit extract was confirmed using FTIR. The results of the MTT assay on MCF7 breast cancer cell line proved that the %cell viability was less for SE-Au Nps than that of the SE fruit extract alone. Thus the antiproliferative activity of the SE fruit extract was significantly enhanced by embedding it with Au Nps and it can be effectively used in therapeutic applications after further studies. 
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