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首页> 外文期刊>Journal of nanoscience and nanotechnology >Targeted Labeling of Cancer Cells Using Biotin Tagged Avidin Functionalized Biocompatible Fluorescent Nanocrystals
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Targeted Labeling of Cancer Cells Using Biotin Tagged Avidin Functionalized Biocompatible Fluorescent Nanocrystals

机译:使用生物素标记的抗生物素蛋白功能化的生物相容性荧光纳米晶体对癌细胞的靶向标记。

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The present study details the development of biotin tagged avidin functionalized Zinc Sulphide [ZnS] nanocrystals through a simple aqueous chemistry route at room temperature for targeted imaging applications. Surface functionalization of Manganese doped ZnS nanocrystals with L-cysteine provided functional groups that facilitated its conjugation to avidin. Further biotinylation of these particles through the strong non-covalent interaction between biotin and avidin enabled highly specific labeling of the biotin receptors on human hepatocellular carcinoma (HepG2) cells. The nanobiocon-jugates thus developed exhibited stable and brilliant fluorescence upon labeling the biotin receptors on cells as observed through fluorescence microscopy. Characterization studies using X-ray diffraction, dynamic light scattering as well as Fourier transform infrared spectroscopy revealed the bioconjugated particles to be appropriately functionalized and stable, with size ranging from 50 to 80 nm. Cytotoxicity of this material system evaluated using MTT, LDH leakage and apoptosis assay revealed its non-toxic nature even for high concentrations extending upto 250 μM and 48 hours of incubation. Our results confirmed that biotinylated ZnS nanocrystals offer great potential for highly specific labeling and targeted imaging of cancer cells.
机译:本研究详细介绍了生物素标记的抗生物素蛋白功能化的硫化锌[ZnS]纳米晶体的开发,该方法是在室温下通过简单的水化学路线进行的,用于目标成像应用。具有L-半胱氨酸的锰掺杂ZnS纳米晶体的表面功能化提供了有助于其与亲和素结合的官能团。通过生物素和抗生物素蛋白之间的强非共价相互作用,这些颗粒进一步生物素化,从而可以高度特异性地标记人肝细胞癌(HepG2)细胞上的生物素受体。通过荧光显微镜观察,如此标记的纳米生物偶联物在标记细胞上的生物素受体后显示出稳定而明亮的荧光。使用X射线衍射,动态光散射以及傅立叶变换红外光谱进行的表征研究表明,生物共轭颗粒具有适当的功能性和稳定性,尺寸范围为50至80 nm。使用MTT,LDH渗漏和凋亡测定法评估的该材料系统的细胞毒性显示,即使对于浓度高达250μM和孵育48小时的高浓度,其无毒性质。我们的结果证实,生物素化的ZnS纳米晶体为癌细胞的高特异性标记和靶向成像提供了巨大的潜力。

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