遗传编码核酸纳米结构在生物学上的应用。

IF 2.6 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY ChemBioChem Pub Date : 2025-01-14 DOI:10.1002/cbic.202400991
Changping Yang, Jing Fan, Hanyin Zhu, Hong Wang, Yuling He, Jianbing Liu, Baoquan Ding
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引用次数: 0

摘要

核酸作为遗传信息的载体,已被广泛应用于通过互补碱基配对构建具有预先设计尺寸和形状的多功能纳米结构。核酸纳米结构具有良好的可编程性、可寻址性和生物相容性,在生物成像、生物传感、药物传递等生物医学研究中有着广泛的应用。值得注意的是,核酸本身的原始基因编码能力已被利用在这些结构明确的纳米结构中。本文综述了近年来双链DNA和mRNA编码纳米结构在基因调控、基因表达和mRNA转录等多种生物学应用方面的研究进展。此外,还将讨论遗传编码核酸纳米结构在生物医学应用中的挑战和未来机遇。
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Genetically Encoded Nucleic Acid Nanostructures for Biological Applications.

Nucleic acid, as a carrier of genetic information, has been widely employed as a building block for the construction of versatile nanostructures with pre-designed sizes and shapes through complementary base pairing. With excellent programmability, addressability, and biocompatibility, nucleic acid nanostructures are extensively applied in biomedical researches, such as bio-imaging, bio-sensing, and drug delivery. Notably, the original gene-encoding capability of the nucleic acids themselves has been utilized in these structurally well-defined nanostructures. In this review, we will summarize the recent progress in the design of double-stranded DNA and mRNA-encoded nanostructures for various biological applications, such as gene regulation, gene expression, and mRNA transcription. Furthermore, the challenges and future opportunities of genetically encoded nucleic acid nanostructures in biomedical applications will be discussed.

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来源期刊
ChemBioChem
ChemBioChem 生物-生化与分子生物学
CiteScore
6.10
自引率
3.10%
发文量
407
审稿时长
1 months
期刊介绍: ChemBioChem (Impact Factor 2018: 2.641) publishes important breakthroughs across all areas at the interface of chemistry and biology, including the fields of chemical biology, bioorganic chemistry, bioinorganic chemistry, synthetic biology, biocatalysis, bionanotechnology, and biomaterials. It is published on behalf of Chemistry Europe, an association of 16 European chemical societies, and supported by the Asian Chemical Editorial Society (ACES).
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