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首页> 外文期刊>Materials science & engineering >Novel of nano delivery system for Linalool loaded on gold nanoparticles conjugated with CALNN peptide for application in drug uptake and induction of cell death on breast cancer cell line
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Novel of nano delivery system for Linalool loaded on gold nanoparticles conjugated with CALNN peptide for application in drug uptake and induction of cell death on breast cancer cell line

机译:载有与CALNN肽缀合的金纳米颗粒上的Linalool纳米递送系统的新颖性,可用于药物吸收和诱导乳腺癌细胞系细胞死亡

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摘要

Linalool is a monoterpene alcohol which occurs naturally in several aromatic plants. The aims of this study are to load Linalool on gold nanoparticles, conjugate the complex with CALNN peptide, and investigate them for in-vitro anticancer activities against breast cancer (MCF-7) cell line. Linalool was obtained with 98% purity while gold nanoparticles and CALNN peptide were chemically synthesized. The formation of LIN-GNPs and LIN-GNPs-CALNN was observed through a color change. These compounds were confirmed and characterized using SEM, DLS, AFM, UV-VIS spectrophotometer, XRD, and FTIR. The free radical scavenging potential of each compound was confirmed based on its stable antioxidant effects using different parameters. Blood compatibility on red blood cells was confirmed by hemolytic and in vitro cytotoxicity assays. The in-vitro anticancer activity of each compound towardMCF-7 cell line was investigated using various parameters. From the results, Linalool, GNPs, LIN-GNPs, and LIN-GNPs-CALNN were found to exert cell growth arrest against MCF-7 cell line. The anti-pro-liferative effect of these compounds was due to cell death and induction of apoptosis confirmed using acridine orange-Ethidium bromide dual staining, DAPI staining, and electrophoresis analysis of DNA fragmentation. High fluorescent signals specific for the cellular uptake of UN-GNPs and LIN-GNPs-CALNN into the cytoplasm of the cell line were confirmed. To study the toxicity of UN-GNPs-CALNN in animal models, the hematological, histopathological, and body weight changes were estimated after 4 weeks of intraperitoneal injection of the compounds into the animal models. Our results demonstrate that Linalool, GNPs, Linalool-GNPs, and Linalool-GNPs-CALNN peptide had no side effects and could be clinically used for future therapeutic purposes.
机译:芳樟醇是一种单萜醇,天然存在于几种芳香植物中。这项研究的目的是将Linalool负载在金纳米颗粒上,将复合物与CALNN肽缀合,并研究它们对乳腺癌(MCF-7)细胞系的体外抗癌活性。获得了纯度为98%的芳樟醇,同时化学合成了金纳米颗粒和CALNN肽。通过颜色变化观察到LIN-GNP和LIN-GNP-CALNN的形成。使用SEM,DLS,AFM,UV-VIS分光光度计,XRD和FTIR确认并表征了这些化合物。基于使用不同参数的稳定抗氧化作用,可以确定每种化合物的自由基清除能力。通过溶血和体外细胞毒性试验证实了红细胞的血液相容性。使用各种参数研究了每种化合物对MCF-7细胞系的体外抗癌活性。根据结果​​,发现芳樟醇,GNP,LIN-GNP和LIN-GNP-CALNN对MCF-7细胞系发挥细胞生长停滞作用。这些化合物的抗增殖作用是由于使用death啶橙-溴乙锭双染色,DAPI染色和DNA片段电泳分析证实的细胞死亡和诱导的凋亡。证实了对UN-GNP和LIN-GNPs-CALNN细胞摄取进入细胞系细胞质具有特异性的高荧光信号。为了研究UN-GNPs-CALNN在动物模型中的毒性,在将化合物腹膜内注射到动物模型中4周后,评估了血液学,组织病理学和体重的变化。我们的结果表明,Linalalol,GNP,Linalalol-GNPs和Linalool-GNPs-CALNN肽没有副作用,可以在临床上用于将来的治疗目的。

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