Published July 8, 2021 | Version v1
Journal article Open

Rational Design of Photochromic Analogues of Tricyclic Drugs

  • 1. Barcelona Inst Sci & Technol BIST, Inst Bioengn Catalonia IBEC, Barcelona 08028, Spain

Description

Tricyclic chemical structures are the core of many important drugs targeting all neurotransmitter pathways. These medicines enable effective therapies to treat from peptic ulcer disease to psychiatric disorders. However, when administered systemically, they cause serious adverse effects that limit their use. To obtain localized and on-demand pharmacological action using light, we have designed photoisomerizable ligands based on azobenzene that mimic the tricyclic chemical structure and display reversibly controlled activity. Pseudo-analogues of the tricyclic antagonist pirenzepine demonstrate that this is an effective strategy in muscarinic acetylcholine receptors, showing stronger inhibition upon illumination both in vitro and in cardiac atria ex vivo. Despite the applied chemical modifications to make pirenzepine derivatives sensitive to light stimuli, the most potent candidate of the set, cryptozepine-2, maintained a moderate but promising M-1 vs M-2 subtype selectivity. These photoswitchable crypto-azologs of tricyclic drugs might open a general way to spatiotemporally target their therapeutic action while reducing their systemic toxicity and adverse effects.

Notes

This project has received funding from European Union Research and Innovation Programme Horizon 2020 (Human Brain Project SGA2 Grant Agreement 785907 and SGA3 No. 945539), DEEPER (Grant No. 101016787), ERASynBio programme (Modulightor project funded by Ministry of Economy and Competitiveness, Grant No. PCIN-2015-163- C02-02), and financial support from Generalitat de Catalunya through the Agency for Management of University and Research Grants (Grant No. 2017-SGR-1442), the General Directorate for Research (Grant No. IU16- 011593, co-funded with FEDER Operational Program of Catalonia 2014−2020) and CERCA Programme; Ministry of Science and Innovation/ FEDER (Grants CTQ2016-80066-R, PID2019-111493RB-I00, SAF2017-88019-C3-1-R), and "La Caixa" Foundation (Grant No. LCF/PR/HR19/52160010).

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Journal article: 2445/178992 (Handle)

Funding

HBP SGA3 – Human Brain Project Specific Grant Agreement 3 945539
European Commission
HBP SGA2 – Human Brain Project Specific Grant Agreement 2 785907
European Commission
DEEPER – DEEP BRAIN PHOTONIC TOOLS FOR CELL-TYPE SPECIFIC TARGETING OF NEURAL DISEASES 101016787
European Commission