DNA nanotechnology for cell-free DNA marker for tumor detection: a comprehensive overview.

IF 1.1 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Nucleosides, Nucleotides & Nucleic Acids Pub Date : 2024-10-02 DOI:10.1080/15257770.2024.2337853
Sara Sami Soliman, Fathi E Abd El-Samie, Saied M Abd El-Atty, Wael Badawy, Abeer Eshra
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Abstract

Advancements in DNA nanotechnology have led to new exciting ways to detect cell-free tumor biomarkers, revolutionizing cancer diagnostics. This article comprehensively reviews recent developments in this field, discussing the significance of liquid biopsies and DNA nanomachines in early cancer detection. The accuracy of cancer diagnosis at its early stages is expected to be significantly improved by identifying biomarkers. Liquid biopsies, offering minimally-invasive testing, hold the potential for capturing tumor-specific components like circulating tumor cells, cell-free DNA, and exosomes. DNA nanomachines are advanced molecular devices that exploit the programmability of DNA sequences for the ultrasensitive and specific detection of these markers. DNA nanomachines, nanostructures made of DNA that can be designable and switchable nanostructures, have a wide range of advantages for detecting tumor biomarkers, including non-invasiveness, affordability, high sensitivity, and specificity. Scientists also work on dealing with challenges like low marker concentrations and interference, which are addressed through microfluidic integration, nanomaterial amplification, and indirect signal detection. Despite advances, multiplex detection remains a challenge. In conclusion, DNA nanomachines bear immense promise for cancer diagnostics, advocating personalized treatment and improving patient outcomes. Continued research could redefine how we find and treat tumors, leading to better patient outcomes.

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用于肿瘤检测的无细胞 DNA 标记的 DNA 纳米技术:全面概述。
DNA 纳米技术的进步为检测无细胞肿瘤生物标记物带来了令人兴奋的新方法,使癌症诊断发生了革命性的变化。本文全面回顾了这一领域的最新进展,讨论了液体活检和 DNA 纳米机器在早期癌症检测中的重要意义。通过识别生物标记物,癌症早期诊断的准确性有望得到显著提高。液体活检是一种微创检测方法,具有捕捉循环肿瘤细胞、无细胞 DNA 和外泌体等肿瘤特异性成分的潜力。DNA 纳米机械是一种先进的分子设备,它利用 DNA 序列的可编程性对这些标记物进行超灵敏和特异性检测。DNA 纳米机械是一种由 DNA 构成的纳米结构,可设计为可切换的纳米结构,在检测肿瘤生物标记物方面具有广泛的优势,包括非侵入性、经济性、高灵敏度和特异性。科学家们还致力于应对低标记物浓度和干扰等挑战,通过微流体集成、纳米材料放大和间接信号检测来解决这些问题。尽管取得了进展,但多重检测仍是一项挑战。总之,DNA 纳米机械在癌症诊断、倡导个性化治疗和改善患者预后方面大有可为。持续的研究可以重新定义我们发现和治疗肿瘤的方法,从而改善患者的预后。
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来源期刊
Nucleosides, Nucleotides & Nucleic Acids
Nucleosides, Nucleotides & Nucleic Acids 生物-生化与分子生物学
CiteScore
2.60
自引率
7.70%
发文量
91
审稿时长
6 months
期刊介绍: Nucleosides, Nucleotides & Nucleic Acids publishes research articles, short notices, and concise, critical reviews of related topics that focus on the chemistry and biology of nucleosides, nucleotides, and nucleic acids. Complete with experimental details, this all-inclusive journal emphasizes the synthesis, biological activities, new and improved synthetic methods, and significant observations related to new compounds.
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