适体
合理设计
核酸
药物输送
DNA
纳米技术
背景(考古学)
癌症治疗
小分子
输送系统
癌症
正电子发射断层摄影术
生物物理学
计算生物学
靶向给药
材料科学
化学
计算机科学
癌症治疗
基因传递
生物相容性
DNA纳米技术
分子成像
药物设计
制作
体内分布
组合化学
聚乙二醇化
癌细胞
毒品携带者
作者
Zhiqiang Ren,Liujun Xu,Jia Liu,Jia Liu,Keying Liu,Dali Wei,Qiuyi Li,Weijun Wei,Haitao Zhao,Yifan Lyu,Jianjun Liu,Jianjun Liu,Ding Ding,Weihong Tan
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-10-31
卷期号:19 (44): 38521-38532
被引量:2
标识
DOI:10.1021/acsnano.5c12434
摘要
DNA aptamers are single-stranded DNA molecules with three-dimensional structures that enable high-affinity and specific binding to target molecules, offering significant potential for precision medicine. Recent advances in DNA nanotechnology have allowed the fabrication of aptamer-guided framework nucleic acid delivery platforms with controllable size and valence. While these platforms have improved tumor delivery in drug delivery, the effects of size and valence on delivery efficacy have not been well studied, particularly in the context of radionuclide-based molecular imaging and therapy. Herein, we fabricate a series of radionuclide-labeled anti-PTK7 aptamer-guided tetrahedron framework nucleic acid delivery platforms (Apt-tFNAs) with varying sizes and valencies. These Apt-tFNAs are well-characterized, and their cell-specific binding ability is demonstrated to be dependent on size and valence. Further in vivo study via dynamic positron emission tomography (PET) scanning reveals that smaller-sized tFNAs improve tumor uptake and reduce liver and kidney retention when valence remains constant. Finally, a single aptamer-modified tFNA with an edge length of 17 bp presents the best tumor delivery efficacy and effective therapeutic performance when combined with either chemotherapy or immunotherapy. This study elucidates how controllable size and valence influence delivery efficacy and introduces optimized Apt-tFNA constructs as promising agents for enhancing targeted therapeutic outcomes.
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