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首页> 外文期刊>Nanoscale >The aspect ratio effect of drug nanocrystals on cellular internalization efficiency, uptake mechanisms, and in vitro and in vivo anticancer efficiencies
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The aspect ratio effect of drug nanocrystals on cellular internalization efficiency, uptake mechanisms, and in vitro and in vivo anticancer efficiencies

机译:药物纳米晶体的长宽比影响细胞内化效率、吸收机制,在体外和体内抗癌效率

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In this paper, we investigated the aspect ratio (AR) effect of anticancer drug nanocrystals (NCs) on their cellular internalization efficiency, uptake mechanisms, biodistributions as well as in vitro and in vivo antitumor efficiencies. Both confocal imaging and flow cytometry show that shorter NCs with AR = 1.3 have a much faster cellular uptake rate and a much higher anticancer efficacy than longer NCs. All NCs with different ARs were found to enter the cells via an energy-dependent clathrin-mediated pathway. In vivo experiments indicate that NCs with higher ARs have a shorter half-life and are more easily captured by the liver, while the corresponding tumor uptake decreased. We also observed that NCs with the smallest AR have the highest therapeutic efficacy with appreciably less weight loss. These results would assist in the future design of drug NCs and may lead to the development of new drug nanostructures for biomedical applications.
机译:在本文中,我们调查了长宽比(AR)的影响抗癌药物纳米晶体(nc)在他们的细胞内化的效率,吸收机制,biodistributions以及体外和体内抗肿瘤功效。共焦成像和流式细胞术显示短nc与AR = 1.3快得多细胞摄取率和更高的抗癌比长nc功效。ARs进入细胞通过一个被发现依赖资源clathrin-mediated途径。体内实验表明,较高的nc农业研究所的半衰期较短,更容易捕捉到肝脏,而相应的肿瘤吸收减少。最小的基于“增大化现实”技术治疗最高与明显更少的减肥功效。结果将协助在未来药物的设计nc和可能导致新药物的开发纳米结构的生物医学应用。

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