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首页> 外文期刊>Analytica chimica acta >Locked nucleic acid/DNA chimeric aptamer probe for tumor diagnosis with improved serum stability and extended imaging window in vivo
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Locked nucleic acid/DNA chimeric aptamer probe for tumor diagnosis with improved serum stability and extended imaging window in vivo

机译:锁定核酸/ DNA嵌合适体探针,用于肿瘤诊断,具有改善的血清稳定性和体内扩展的成像窗口

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摘要

As promising molecular probes for m vivo tumor imaging, aptamers without modification remain problematic due to insufficient serum stability and unabiding imaging window. To address this problem, a novel locked nucleic acid (LNA)/DNA chimeric aptamer probe was developed through proper LNA incorporation and supplemented 3'-3'-thymidine (3'-3'-T) capping. TD05, a DNA aptamer against lymphoma Ramos cells, being used as the model, a series of modification strategies were designed and optimized with different positions, numbers and combinations. It was revealed that the combined use of LNA and 3'-3'-T had a synergistic effect, and with the increase of LNA substitution in stem region, the serum stability of TD05 was gradually enhanced while its affinity and specificity were perfectly maintained to Ramos cells. Particularly, TD05.6 with 7-base pair-LNA substitution exhibited the significantly elevated detection stability half-life from ~0.5h of TD05 to 5-6 h of TD05.6 for target cells in serum. Moreover, a much slower clearance rate in tumor-bearing mice was also observed for TD05.6, thus leading to the greatly extended tumor imaging window from <150 min of TD05 to >600 min of TD05.6. This strategy might be of great potentials to generate more aptamer probes that are stable and nuclease-resistant for tumor diagnosis in real biological systems.
机译:作为用于体内肿瘤成像的有希望的分子探针,由于血清稳定性不足和成像窗口不可靠,未经修饰的适体仍然存在问题。为了解决这个问题,通过适当的LNA掺入并补充了3'-3'-胸苷(3'-3'-T)封端,开发了一种新型的锁定核酸(LNA)/ DNA嵌合适体探针。 TD05是一种针对淋巴瘤Ramos细胞的DNA适体,被用作模型,设计了一系列修饰策略,并根据不同的位置,数量和组合进行了优化。结果表明,LNA与3'-3'-T联合使用具有协同作用,随着茎干区域LNA取代量的增加,TD05的血清稳定性逐渐增强,同时亲和力和特异性得以保持。拉莫斯细胞。特别是,对于血清中的靶细胞,具有7个碱基对的LNA取代的TD05.6的检测稳定性半衰期从TD05的〜0.5h到TD05.6的5-6 h显着提高。此外,对于TD05.6,在荷瘤小鼠中观察到的清除率要慢得多,因此导致肿瘤成像窗口从TD05的<150分钟大大扩展到TD05.6的> 600分钟。该策略可能具有巨大潜力,可以产生更多的稳定且对核酸酶具有抗性的适体探针,用于在实际生物系统中进行肿瘤诊断。

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