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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Enhancing the cytotoxic efficacy of combined effect of doxorubicin and Cyclosporin encapsulated photoluminescent graphene dotted mesoporous nanoparticles against lung cancer cell-specific drug targeting for the nursing care of cancer patients
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Enhancing the cytotoxic efficacy of combined effect of doxorubicin and Cyclosporin encapsulated photoluminescent graphene dotted mesoporous nanoparticles against lung cancer cell-specific drug targeting for the nursing care of cancer patients

机译:增强多柔枯蛋白和环孢菌素包封的光致发光石墨烯的细胞毒性疗效掺入肺癌细胞特异性药物针对癌症患者的护理靶向的肺癌细胞培养

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摘要

In recent years, biological nanomedicine-based biomaterials have an extreme attention for biomedical uses, herein we examined a novel kind advance of photoluminescent Graphene quandum dots encapsulated mesoporous nanoparticles (GND@MSNs) encapsulated by well-known anticancer drugs Doxorubicin (DOX) and Cyclosporin (CsA) for lung carcinoma. Electron microscopic technique exhibit the nanostructure and spherical morphology of GND@MSNs + DOX + CsA with mean size approximate to 110 nm. Moreover, Dynamic Light Scattering (DLS) exposed that blended GND@MSNs + DOX + CsA nanoparticles were highly stable with extremely negatively charged nanoparticles. Raman investigation was done on the all naturally dynamic nanoparticles containing shed graphene to survey the blend condition of the graphene inside the silica mesoporous nanoparticles. GND@MSNs + DOX + CsA provided an outstanding anti-cancer efficiency against the lung cancer cell lines (i.e., A549 and HEL-299). MTT assay monitored that GND@MSNs, GND@MSNs + DOX and GND@MSNs + DOX + CsA have a robust toxicity behaviour on the A549 and HEL-299 model lung cancer cell lines. Additionally, investigation of the cell death was found on AO-EB, Hoechst 33452 staining and flowcytometry techniques. Furthermore, the DNA damage were confirmed by cell cycle arrest and comet assay. Hence, we suggesting that these GND@MSNs + DOX + CsA could be applied as auspicious drug vesicles for novel lung cancer therapeutic potential and new openings to solve the complexity of lung cancer in the care of cancer patients.
机译:近年来,基于生物纳米胺类的生物材料对生物医学用途极其关注,在本文中,我们研究了一种新颖的基础进程的光致发光石墨烯Quandum点封装的中孔纳米粒子(GND / MSN)包封,其包封通过众所周知的抗癌药物(DOX)和环孢菌素包封(CSA)用于肺癌。电子显微镜技术表现出GND @ MSNS + DOX + CSA的纳米结构和球形形态,平均尺寸近似为110nm。此外,动态光散射(DLS)暴露于混合GND / MSNS + DOX + CSA纳米颗粒具有极其带负电荷的纳米颗粒。拉曼调查在含有血清石墨烯的所有天然动态纳米颗粒上进行,以调查石墨烯内的石墨烯的共混状况。 GND @ MSNS + Dox + CSA为肺癌细胞系(即A549和HEL-299)提供了出色的抗癌效率。 MTT测定监测了GND @ MSNS,GND @ MSNS + DOX和GND @ MSNS + DOX + CSA在A549和HEL-299模型肺癌细胞系上具有鲁棒毒性行为。另外,在AO-EB,Hoechst 33452染色和流动性测定技术上发现了对细胞死亡的调查。此外,通过细胞循环骤停和彗星测定证实了DNA损伤。因此,我们建议这些GND @ MSNS + Dox + CSA可以应用于新型肺癌治疗潜力和新开口的吉祥药物囊泡,以解决肺癌在癌症患者的照顾中的复杂性。

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