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Improved in Vitro Efficacy of Gold Nanoconstructsby Increased Loading of G-quadruplex Aptamer

机译:改进的金纳米结构的体外功效通过增加G-四链体适体的负载

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摘要

This paper describes how in vitro efficacy of aptamer-loaded gold nanostars (Apt-AuNS) can be enhanced by the increased loading of a G-quadruplex homodimer AS1411 (Apt) on the AuNS surface. In a low pH buffer environment, the loading density of Apt on AuNS was increased up to 2.5 times that obtained using the conventional salt-aging process. These highly loaded AuNS nanoconstructs (*Apt-AuNS) were taken up in pancreatic cancer and fibrosarcoma cells ca. 2 times more and at faster rates compared to Apt-AuNS. When a similar number of AuNS carriers was internalized by the cancer cells, the amount of AS1411 delivered via *Apt-AuNS was effectively double that of Apt-AuNS, and *Apt-AuNS resulted in an average of 42% increase in cell death. These results suggest that increasing the loading density on AuNS could provide a simple means to improve uptake as well as in vitro efficacy of the nanoconstructs in cancer cells.
机译:本文描述了如何通过在AuNS表面上增加G-四链体同二聚体AS1411(Apt)的负载来增强适体负载的金纳米星(Apt-AuNS)的体外功效。在低pH缓冲液环境中,Aups在AuNS上的负载密度增加到使用传统盐时效工艺所获得的2.5倍。这些高负荷的AuNS纳米结构(* Apt-AuNS)被吸收到胰腺癌和纤维肉瘤细胞中。与Apt-AuNS相比,速度提高了2倍。当癌细胞将相似数量的AuNS载体内化时,通过* Apt-AuNS递送的AS1411量实际上是Apt-AuNS的两倍,而* Apt-AuNS导致细胞死亡平均增加42%。这些结果表明,增加AuNS上的负载密度可以提供一种简单的方法来改善纳米结构在癌细胞中的摄取以及体外功效。

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