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一种基于石墨烯金纳米复合材料的5-氟尿嘧啶药物及其对MCF-7细胞系治疗效果的增强作用。

A graphene gold nanocomposite-based 5-FU drug and the enhancement of the MCF-7 cell line treatment.

作者信息

Sanad Mohamed Fathi, Shalan Ahmed Esmail, Bazid Shereen Magdy, Abu Serea Esraa Samy, Hashem Elhussein M, Nabih Shimaa, Ahsan Md Ariful

机构信息

Basic Science Departments, Modern Academy for Engineering and Technology Maadi Egypt.

The University of Texas at El Paso 500 W University Ave El Paso TX 79968 USA

出版信息

RSC Adv. 2019 Oct 2;9(53):31021-31029. doi: 10.1039/c9ra05669f. eCollection 2019 Sep 26.

Abstract

There is no doubt that cancer is now one of the most formidable diseases in the world; despite all the efforts and research, common treatment routes, including chemotherapy, photodynamic therapy, and photothermal therapy, suffer from different limitations in terms of their efficiency and performance. For this reason, different strategies are being explored to improve the efficiency of the traditional drugs reported to date. In this study, we have redirected the function of one of these drugs (5-fluorouracil, 5-FU) by combining it with a graphene-gold nanocomposite in different molar ratios that has been exceedingly used for biological research development. The high activity of the graphene-gold material enables it to produce reactive oxygen and ions, which display good anticancer and antioxidant activity through the scavenging of the DPPH, SOD and GP radicals; in addition, different characterizations have been used to confirm the structure and morphology of the obtained samples. Highly potent cytotoxicity against the MCF-7 cells was achieved with the drug combination containing the nanocomposite. All the results, including those obtained cytometry, indicate that the combination of 5% graphene-gold nanocomposites with 5-FU exhibits a higher antitumor impact and more drug stability than pure 5-FU.

摘要

毫无疑问,癌症是当今世界上最可怕的疾病之一;尽管付出了所有努力并进行了研究,但包括化疗、光动力疗法和光热疗法在内的常见治疗方法在效率和性能方面都存在不同的局限性。因此,人们正在探索不同的策略来提高迄今为止报道的传统药物的效率。在本研究中,我们通过将其中一种药物(5-氟尿嘧啶,5-FU)与一种在生物研究开发中被大量使用的不同摩尔比的石墨烯-金纳米复合材料相结合,改变了这种药物的功能。石墨烯-金材料的高活性使其能够产生活性氧和离子,通过清除DPPH、SOD和GP自由基显示出良好的抗癌和抗氧化活性;此外,已使用不同的表征方法来确认所得样品的结构和形态。含有纳米复合材料的药物组合对MCF-7细胞具有高度有效的细胞毒性。所有结果,包括通过细胞计数法获得的结果,表明5%的石墨烯-金纳米复合材料与5-FU的组合比纯5-FU表现出更高的抗肿瘤作用和更高的药物稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8ec/9072570/c65ac52fadf4/c9ra05669f-f1.jpg

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