Synthetic derivatives of the antifungal drug ciclopirox are active against herpes simplex virus 2. Academic Article uri icon

Overview

abstract

  • We previously showed that the anti-fungal drug ciclopirox olamine effectively inhibits replication of herpes simplex virus (HSV)-1 and HSV-2. Given the rise of HSV strains that are resistant to nucleos(t)ide analog treatment, as well as the incomplete efficacy of nucleos(t)ide analogs, new inhibitory compounds must be explored for potential use in the treatment of HSV infection. In the present study, we analyzed 44 compounds derived from the core structure of ciclopirox olamine for inhibitory activity against HSV. Thirteen of these derivative compounds inhibited HSV-2 replication by > 1000- to ∼100,000-fold at 1 μM and displayed EC50 values lower than that of acyclovir, as well as low cytotoxicity, indicating their strong therapeutic potential. Through structural comparison, we also provide evidence for the importance of various structural motifs to the efficacy of ciclopirox and its derivatives, namely hydrophobic groups at R4 and R6 of the ciclopirox core structure. Like ciclopirox, representative analogs exhibit some oral bioavailability but are rapidly cleared in vivo. Together, these results will guide further development of N-hydroxypyridones as HSV therapeutics.

authors

  • Zangi, Maryam
  • Donald, Katherine
  • Casals, Andreu Gazquez
  • Franson, Abaigeal D
  • Yu, Alice J
  • Marker, Elise M
  • Woodson, Molly E
  • Campbell, Scott D
  • Mottaleb, M Abdul
  • Narayana Hajay Kumar, Tanguturi Venkata
  • Reddy, Makala Shakar
  • Raghava Reddy, Lingala Vijaya
  • Sadhukhan, Subir Kumar
  • Griggs, David W
  • Morrison, Lynda A
  • Meyers, Marvin J

publication date

  • May 14, 2022

Research

keywords

  • Herpes Simplex
  • Herpesvirus 1, Human

Identity

PubMed Central ID

  • PMC11103786

Scopus Document Identifier

  • 85131439664

Digital Object Identifier (DOI)

  • 10.1016/j.ejmech.2022.114443

PubMed ID

  • 35635945

Additional Document Info

volume

  • 238