代谢稳定的嵌合核酸纳米探针用于癌症尿液活检的人工生物标志物

IF 9.1 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Gang Wang, Peifen Lu, Mingxuan Chen, Yixi Dong, Jianwei Jiao, Yang Xiang* and Jin Jiao*, 
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引用次数: 0

摘要

基于体外探针的尿液活检已成为一种有前途的疾病诊断方法。在这里,通过嵌合核酸(包括肽核酸(PNA)和DNA)功能化纳米材料,并将其与电化学生物传感器集成,开发了一种纳米探针(指定为GTP),用于通过尿液活检进行癌症诊断。GTP特异性响应肿瘤部位的端粒酶(TE),释放代谢稳定的GTP PNA报告者进入血液循环。通过进一步利用PNA对杂交的高亲和力,尿液中的PNA报告基因在电化学表面上被敏感地量化,有效地将原位肿瘤标记信息转化为可检测的体外信号。依靠gtp和电化学生物传感器的联合,早在移植后第6天就可以诊断出异种移植小鼠的三阴性乳腺癌。电化学尿液活检在推进诊断窗口和定量监测癌症进展方面显示出显著的临床潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Metabolically Stable Chimeric Nucleic Acid Nanoprobe Artificial Biomarker for Cancer Urine Biopsy

Metabolically Stable Chimeric Nucleic Acid Nanoprobe Artificial Biomarker for Cancer Urine Biopsy

Urine biopsy based on in vitro probes has emerged as a promising method for disease diagnosis. Here, a nanoprobe (designated as GTP) was developed by functionalizing nanomaterials with a chimeric nucleic acid (comprising peptide nucleic acid (PNA) and DNA) and integrating it with an electrochemical biosensor for cancer diagnosis via urine biopsy. The GTP specifically responded to telomerase (TE) at tumor sites, releasing metabolically stable PNA reporters of GTP into the blood circulation. By further leveraging the high affinity of the PNA for hybridization, the PNA reporters in urine were sensitively quantified on an electrochemical surface, effectively translating in situ tumor marker information into detectable in vitro signals. Relying on the combination of GTPs and the electrochemical biosensor, triple-negative breast cancer in xenograft mice could be diagnosed as early as day 6 post-transplantation. The electrochemical urine biopsy demonstrated significant clinical potential for moving forward the diagnostic window and quantitatively monitoring cancer progression.

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来源期刊
Nano Letters
Nano Letters 工程技术-材料科学:综合
CiteScore
16.80
自引率
2.80%
发文量
1182
审稿时长
1.4 months
期刊介绍: Nano Letters serves as a dynamic platform for promptly disseminating original results in fundamental, applied, and emerging research across all facets of nanoscience and nanotechnology. A pivotal criterion for inclusion within Nano Letters is the convergence of at least two different areas or disciplines, ensuring a rich interdisciplinary scope. The journal is dedicated to fostering exploration in diverse areas, including: - Experimental and theoretical findings on physical, chemical, and biological phenomena at the nanoscale - Synthesis, characterization, and processing of organic, inorganic, polymer, and hybrid nanomaterials through physical, chemical, and biological methodologies - Modeling and simulation of synthetic, assembly, and interaction processes - Realization of integrated nanostructures and nano-engineered devices exhibiting advanced performance - Applications of nanoscale materials in living and environmental systems Nano Letters is committed to advancing and showcasing groundbreaking research that intersects various domains, fostering innovation and collaboration in the ever-evolving field of nanoscience and nanotechnology.
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