Small-molecule oligonucleotides as smart modality for antiviral therapy: a medicinal chemistry perspective

Author:

Kar Sidhartha S1ORCID,Dhar Arghya Kusum2ORCID,Palei Narahari N3ORCID,Bhatt Shvetank4ORCID

Affiliation:

1. Institute of Pharmacy & Technology, Salipur, Cuttack, Odisha, 754202, India

2. School of Pharmacy, The Neotia University, Sarisa, D.H. Road, 24 Pgs (South) West Bengal, 743368, India

3. Amity Institute of Pharmacy, Amity University Lucknow Campus, Uttar Pradesh, 226010, India

4. School of Health Sciences and Technology, Dr Vishwanath Karad MIT World Peace University, Pune, Maharashtra, 411038, India

Abstract

Small-molecule oligonucleotides could be exploited therapeutically to silence the expression of viral infection-causing genes, and a few of them are now in clinical trials for the management of viral infections. The most challenging aspect of these oligonucleotides’ therapeutic success involves their delivery. Thus medicinal chemistry strategies are inevitable to avoid degradation by serum nucleases, avoid kidney clearance and improve cellular uptake. Recently small-molecule oligonucleotide design has opened up new avenues to improve the treatment of drug-resistant viral infections, along with the development of COVID-19 medicines. This review is directed toward the recent advances in rational design, mechanism of action, structure–activity relationships and future perspective of the small-molecule oligonucleotides targeting viral infections, including COVID-19.

Publisher

Future Science Ltd

Subject

Drug Discovery,Pharmacology,Molecular Medicine

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