首页> 外文会议>2013 International Conference on Advanced Nanomaterials and Emerging Engineering Technologies >Tumor cell targetting using folate conjugated core/shell CdSe/CdS/ZnS nano rods
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Tumor cell targetting using folate conjugated core/shell CdSe/CdS/ZnS nano rods

机译:叶酸共轭核/壳CdSe / CdS / ZnS纳米棒靶向肿瘤细胞

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Core-shell-shell nano rods have been widely investigated as fluorescent biomarkers, due to their photochemical stability and high brightness, which makes them a good alternative to organic fluorophores. There are several unique optical properties that can make nano rods (NRs) potentially more appealing bioimaging probes. Hydrophobic core-shell-shell CdSe/CdS/ZnS nano rods (NRs) were synthesized by successive ion layer adsorption and reaction (SILAR) technique. Synthesized NRs (CdSe/CdS/ZnS) were made water dispersible by ligand exchange with thioglycolic acid and were conjugated with folic acid (FA) using EDC/NHS techniques for targeting human cancer cells expressing folate receptor (FR). The Folate receptor (FR) is ideally suited for this study because it is preferentially expressed with high binding affinity for folic acid in several cancers. In vitro cytotoxicity of the folate-conjugated CdSe/CdS-TGA and CdSe/CdS/ZnS-TGA NRs were investigated also by employing MCF-7 cells (Breast cancer cell line) through the 3-(4,5- dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay. This assay shows that core-shell-shell (CdSe/CdS/ZnS) NRs are biocompatible than core- shell (CdSe/CdS) for targeting the cancer cells. The result of MTT viability assay shows that the percentage of living cells gradually decreases for CdSe/CdS rods where as in case of CdSe/CdS/ZnS rods ≥ 80% percentage of cell viability has been observed. These experiments confirms that FA conjugated NRs are preferentially internalized by MCF-7 tumor cells suggesting their potential utility as targeted fluorescent imaging agent for early stage cancer detection. The MTT cell viability assay indicated that covering the CdSe/CdS rods with ZnS shell reduces their cell toxicity.
机译:核-壳-壳纳米棒由于其光化学稳定性和高亮度而被广泛研究为荧光生物标记,这使其成为有机荧光团的良好替代品。有几种独特的光学特性可以使纳米棒(NRs)更具吸引力。通过连续离子层吸附和反应(SILAR)技术合成了疏水核-壳-壳CdSe / CdS / ZnS纳米棒(NRs)。通过与巯基乙酸的配体交换使合成的NRs(CdSe / CdS / ZnS)可水分散,并使用EDC / NHS技术将叶酸(FA)与叶酸(FA)结合,以靶向表达叶酸受体(FR)的人类癌细胞。叶酸受体(FR)非常适合本研究,因为它在几种癌症中以对叶酸的高结合亲和力优先表达。叶酸偶联的CdSe / CdS-TGA和CdSe / CdS / ZnS-TGA NR的体外细胞毒性也通过使用MCF-7细胞(乳腺癌细胞系)通过3-(4,5-二甲基噻唑-2- yl)-2,5-二苯基溴化四氮唑(MTT)分析。该测定法表明,核-壳-壳(CdSe / CdS / ZnS)NRs比核-壳(CdSe / CdS)对癌细胞具有生物相容性。 MTT活力分析的结果表明,对于CdSe / CdS棒,活细胞的百分比逐渐降低,而在CdSe / CdS / ZnS棒的情况下,观察到细胞活力的百分比≥80%。这些实验证实,FA共轭的NRs优先被MCF-7肿瘤细胞内化,表明它们潜在地用作早期癌症检测的靶向荧光显像剂。 MTT细胞活力测定表明,用ZnS壳覆盖CdSe / CdS棒可降低其细胞毒性。

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