首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Fluorescent quantum dot-labeled aptamer bioprobes specifically targeting mouse liver cancer cells
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Fluorescent quantum dot-labeled aptamer bioprobes specifically targeting mouse liver cancer cells

机译:荧光量子点标记的适体生物探针,专门针对小鼠肝癌细胞

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摘要

Fluorophore-labeled bioprobes are the key for fluorescent-labeled imaging technology. In the present work, mouse liver hepatoma cell line BNL 1ME A.7R.1 (MEAR)-specific ssDNA aptamer TLS9a was used to fabricate quantum dot-labeled aptamer bioprobe (QD-Apt), which was obtained by conjugating streptavidin-modified quantum dots (SA-QDs) with biotin-derived aptamer via the interaction between biotin and streptavidin. The QD-Apt was of monodispersity and excellent fluorescence properties. When the optimum ratio of SA-QDs to aptamer, which is 1:16, was used in the preparation of the QD-Apt, the resultant QD-Apt was of satisfactory bioactivity. They could specifically recognize MEAR cells and could not recognize BNL cells and Hela cells. Particularly, the growth and viability of QD-Apt bound MEAR cells were not affected by QD-Apt within 84 h compared to control cells, indicating that the probe was biocompatible and suitable for live cell imaging.
机译:荧光团标记的生物探针是荧光标记成像技术的关键。在目前的工作中,小鼠肝肝癌细胞系BNL 1ME A.7R.1(MEAR)特异的ssDNA适体TLS9a被用于制备量子点标记的适体生物探针(QD-Apt),其通过结合链霉亲和素修饰的量子获得通过生物素和链霉亲和素之间的相互作用与生物素衍生的适体组成的点(SA-QD)。 QD-Apt具有单分散性和出色的荧光特性。当在制备QD-Apt中使用SA-QD与适体的最佳比例为1:16时,所得的QD-Apt具有令人满意的生物活性。他们可以特异性识别MEAR细胞,而不能识别BNL细胞和Hela细胞。特别地,与对照细胞相比,QD-Apt结合的MEAR细胞的生长和生存力在84小时内不受QD-Apt的影响,表明该探针具有生物相容性,适合活细胞成像。

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