TY - JOUR
T1 - Photoswitchable COX-2-Selective Inhibitors as Light-Regulated Anti-Inflammatory Agents
AU - Morales, Amanda
AU - Cruz, Alejandro
AU - Pérez-Sánchez, Álex
AU - D’Avino, Danilo
AU - Galassi, Gaia
AU - Milano, Erica Ginevra
AU - Bernareggi, Irene
AU - Arenós-Bach, Carla
AU - Grazioso, Giovanni
AU - Alibés, Ramon
AU - Hernando, Jordi
AU - Gorostiza, Pau
AU - Rossi, Antonietta
AU - Pistocchi, Anna
AU - Matera, Carlo
AU - Busque, Felix
AU - González-Lafont, Àngels
AU - Lluch, José M.
N1 - Publisher Copyright:
© 2026 The Authors. Published by American Chemical Society.
PY - 2026/5/13
Y1 - 2026/5/13
N2 - Despite their extensive use, the therapeutic potential of nonsteroidal anti-inflammatory drugs (NSAIDs) remains significantly constrained by adverse side effects. This limitation primarily arises from insufficient selectivity, as current NSAIDs inhibit not only the inducible cyclooxygenase-2 (COX-2) isoform at sites of inflammation but also constitutive COX-2 in healthy tissues and, frequently, cyclooxygenase-1. To address this challenge, we developed photoswitchable NSAIDs that combine COX-2 selectivity with light-controlled activity to enable spatiotemporal confinement of the therapeutic effect at inflamed tissues. Following computational design and screening of a library of azoaromatic derivatives of celecoxib─the most widely used COX-2 selective NSAID─three photoswitchable analogues were synthesized, which exhibited reversible and efficient trans-cis photoconversion. Light-controlled and selective COX-2 inhibition was demonstrated for these compounds in vitro, reaching up to 5-fold potency enhancement in macrophage assays upon photoisomerization from the initial, dark-adapted trans isomer to the cis state. The best candidate displayed in vivo efficacy in a zebrafish model of acute inflammation, where administration of the photoinduced cis form reduced leukocyte recruitment at the wound site. These findings position photoswitchable NSAIDs as a promising alternative to conventional drugs for treating inflammation and related conditions, including cancer.
AB - Despite their extensive use, the therapeutic potential of nonsteroidal anti-inflammatory drugs (NSAIDs) remains significantly constrained by adverse side effects. This limitation primarily arises from insufficient selectivity, as current NSAIDs inhibit not only the inducible cyclooxygenase-2 (COX-2) isoform at sites of inflammation but also constitutive COX-2 in healthy tissues and, frequently, cyclooxygenase-1. To address this challenge, we developed photoswitchable NSAIDs that combine COX-2 selectivity with light-controlled activity to enable spatiotemporal confinement of the therapeutic effect at inflamed tissues. Following computational design and screening of a library of azoaromatic derivatives of celecoxib─the most widely used COX-2 selective NSAID─three photoswitchable analogues were synthesized, which exhibited reversible and efficient trans-cis photoconversion. Light-controlled and selective COX-2 inhibition was demonstrated for these compounds in vitro, reaching up to 5-fold potency enhancement in macrophage assays upon photoisomerization from the initial, dark-adapted trans isomer to the cis state. The best candidate displayed in vivo efficacy in a zebrafish model of acute inflammation, where administration of the photoinduced cis form reduced leukocyte recruitment at the wound site. These findings position photoswitchable NSAIDs as a promising alternative to conventional drugs for treating inflammation and related conditions, including cancer.
KW - Animals
KW - Anti-Inflammatory Agents, Non-Steroidal/chemistry
KW - Celecoxib/pharmacology
KW - Cyclooxygenase 2 Inhibitors/chemistry
KW - Cyclooxygenase 2/metabolism
KW - Humans
KW - Inflammation/drug therapy
KW - Light
KW - Mice
KW - Molecular Structure
KW - Photochemical Processes
KW - RAW 264.7 Cells
KW - Zebrafish
KW - Drugs
KW - Risk
KW - Inflammation
KW - Vitro
KW - Cox-2
KW - In-vivo
KW - Cyclooxygenase-2
KW - Cancer
U2 - 10.1021/jacs.6c03529
DO - 10.1021/jacs.6c03529
M3 - Article
C2 - 42047395
SN - 1520-5126
VL - 148
SP - 19226
EP - 19237
JO - Journal of the American Chemical Society
JF - Journal of the American Chemical Society
IS - 18
ER -