2001Current Medicinal ChemistryRequires access

Backbone Modification of Nucleic Acids: Synthesis, Structure and Therapeutic Applications

Jason Micklefield

Open publisher page 181 citations

Abstract

Nucleic acids have been extensively modified by replacing the phosphodiester group or the whole sugar-phosphodiester backbone with alternative anionic, neutral and cationic structures. Several of these modified oligonucleotides exhibit improved properties including enhanced recognition and binding to RNA, duplex DNA and proteins. This has resulted in the development of new and more potent antisense and antigene agents, as well as aptamers. Furthermore, backbone modified oligonucleotides have also been used in the development of several alternative strategies, which rely on altogether different mechanisms of action and show significant promise for therapeutic intervention. In this review the latest advances in the synthesis and evaluation of the most promising backbone modified oligos will be discussed, with a view to their future as novel pharmaceuticals. Keywords: Nucleic Acids Synthesis, potent antisense, antigene agents, aptamers, Therapeutic Targets, Phosphoramidate Modification, Boranophosphate Oligos, Methylphosophonates, Deoxyribonucleic Guanidine (DNG) Oligos, Morpholino Oligos

About this research paper

What this paper is about

Nucleic acids have been extensively modified by replacing the phosphodiester group or the whole sugar-phosphodiester backbone with alternative anionic, neutral and cationic structures. Several of these modified oligonucleotides exhibit improved properties including enhanced recognition and binding to RNA, duplex DNA and proteins. This has resulted in the development of new and more potent antisense and antigene agents, as well as aptamers. Furthermore, backbone modified oligonucleotides have also been used in the development of several alternative strategies, which rely on altogether different mechanisms of action and show significant promise for therapeutic intervention. In this review the latest advances in the synthesis and evaluation of the most promising backbone modified oligos will be discussed, with a view to their future as novel pharmaceuticals. Keywords: Nucleic Acids Synthesis, potent antisense, antigene agents, aptamers, Therapeutic Targets, Phosphoramidate Modification, Boranophosphate Oligos, Methylphosophonates, Deoxyribonucleic Guanidine (DNG) Oligos, Morpholino Oligos

Why it matters

OpenAlex reports 181 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Nucleic acids have been extensively modified by replacing the phosphodiester group or the whole sugar-phosphodiester backbone with alternative anionic, neutral and cationic structures. Several of these modified oligonucleotides exhibit improved properties including enhanced recognition and binding to RNA, duplex DNA and proteins. This has resulted in the development of new and more potent antisense and antigene agents, as well as aptamers. Furthermore, backbone modified oligonucleotides have also been used in the development of several alternative strategies, which rely on altogether different mechanisms of action and show significant promise for therapeutic intervention. In this review the latest advances in the synthesis and evaluation of the most promising backbone modified oligos will be discussed, with a view to their future as novel pharmaceuticals. Keywords: Nucleic Acids Synthesis, potent antisense, antigene agents, aptamers, Therapeutic Targets, Phosphoramidate Modification, Boranophosphate Oligos, Methylphosophonates, Deoxyribonucleic Guanidine (DNG) Oligos, Morpholino Oligos

Key concepts: Nucleic acid, Chemistry, Nucleic acid structure, Combinatorial chemistry, Computational biology, Biochemistry, Biology, RNA

Related papers

Back to paper searchBrowse research topicsOriginal source
Backbone Modification of Nucleic Acids: Synthesis, Structure and Therapeutic Applications — Research Paper | ScholarLens