Archive/Synthesis and Analgesic Activity of Cridanimod–Monoterpene Conjugates
Synthesis and Analgesic Activity of Cridanimod–Monoterpene Conjugates
Danil D. Anikev, Anastasia Yu. Filippova, Olga I. Yarovaya et al.
31. Juli 2026
en

Abstract

Cridanimod (acridoneacetic acid), the active ingredient of the immunomodulatory drug Cycloferon®, has a well-characterized antiviral profile, but an unexplored analgesic potential. Bornane monoterpenes, notably (+)-camphor and (−)-fenchone, are established scaffolds for analgesic drug design. We therefore synthesized thirteen cridanimod–monoterpene conjugates—seven amides, three acylhydrazones, and three esters—by EDCI/DMAP-mediated coupling or CDI/DBU-promoted esterification, and evaluated them in mice at an oral dose of 10.0 mg/kg in the acetic acid writhing and hot plate tests, with diclofenac sodium (10.0 mg/kg) as the reference. Acridoneacetic acid and Cycloferon® were themselves inactive in both assays. By contrast, six of the thirteen conjugates were significantly active (p < 0.05) in at least one test, with distinct leads in each: amide 19 matched diclofenac in the writhing test (−63.7% vs. −64.4%), whereas acylhydrazone 23 exceeded diclofenac in the hot plate test (+43.9% vs. +25.7%). The divergent profiles suggest that different structural subclasses engage peripheral and central antinociceptive mechanisms. Conjugation thus converts an analgesically inactive immunomodulator into a substance yielding analgesics that match or exceed a standard NSAID at the same oral dose, providing a promising starting point for the development of new pain-relieving agents.

IPC Classification

A61

Keywords

synthesisanalgesicactivitycridanimodmonoterpeneconjugatesscientiapharmaceuticaacridoneaceticacidactiveingredientimmunomodulatorydrugcycloferonwell-characterizedantiviralprofileunexploredpotentialbornanemonoterpenesnotably-camphor
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