The current landscape of nucleic acid therapeutics
- PMID: 34059811
- DOI: 10.1038/s41565-021-00898-0
The current landscape of nucleic acid therapeutics
Erratum in
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  Author Correction: The current landscape of nucleic acid therapeutics.Nat Nanotechnol. 2021 Jul;16(7):841. doi: 10.1038/s41565-021-00937-w. Nat Nanotechnol. 2021. PMID: 34194013 No abstract available.
Abstract
The increasing number of approved nucleic acid therapeutics demonstrates the potential to treat diseases by targeting their genetic blueprints in vivo. Conventional treatments generally induce therapeutic effects that are transient because they target proteins rather than underlying causes. In contrast, nucleic acid therapeutics can achieve long-lasting or even curative effects via gene inhibition, addition, replacement or editing. Their clinical translation, however, depends on delivery technologies that improve stability, facilitate internalization and increase target affinity. Here, we review four platform technologies that have enabled the clinical translation of nucleic acid therapeutics: antisense oligonucleotides, ligand-modified small interfering RNA conjugates, lipid nanoparticles and adeno-associated virus vectors. For each platform, we discuss the current state-of-the-art clinical approaches, explain the rationale behind its development, highlight technological aspects that facilitated clinical translation and provide an example of a clinically relevant genetic drug. In addition, we discuss how these technologies enable the development of cutting-edge genetic drugs, such as tissue-specific nucleic acid bioconjugates, messenger RNA and gene-editing therapeutics.
References
- 
    - Friedmann, T. & Roblin, R. Gene therapy for human genetic disease? Science 175, 949–955 (1972). - DOI
 
- 
    - Anderson, E. J. et al. Safety and immunogenicity of SARS-CoV-2 mRNA-1273 vaccine in older adults. New Engl. J. Med. 383, 2427−2438 (2020).
 
- 
    - Sahin, U. et al. COVID-19 vaccine BNT162b1 elicits human antibody and TH1 T-cell responses. Nature 586, 594−599 (2020).
 
- 
    - Rossi, J. J. & Rossi, D. Oligonucleotides and the COVID-19 pandemic: a perspective. Nucleic Acid Ther. 30, 129–132 (2020). - DOI
 
- 
    - Aiuti, A. et al. Gene therapy for immunodeficiency due to adenosine deaminase deficiency. N. Engl. J. Med. 360, 447–458 (2009). - DOI
 
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