J 2024

Structure-Photoreactivity Relationship Study of Substituted 3-Hydroxyflavones and 3-Hydroxyflavothiones for Improving Carbon Monoxide Photorelease

JÉZÉQUEL, Yann Anton; Filip SVĚRÁK; Andrea RAMUNDO; Vojtěch OREL; Marek MARTÍNEK et al.

Základní údaje

Originální název

Structure-Photoreactivity Relationship Study of Substituted 3-Hydroxyflavones and 3-Hydroxyflavothiones for Improving Carbon Monoxide Photorelease

Autoři

JÉZÉQUEL, Yann Anton; Filip SVĚRÁK; Andrea RAMUNDO; Vojtěch OREL; Marek MARTÍNEK a Petr KLÁN

Vydání

Journal of Organic Chemistry, WASHINGTON, AMER CHEMICAL SOC, 2024, 0022-3263

Další údaje

Jazyk

angličtina

Typ výsledku

Článek v odborném periodiku

Stát vydavatele

Spojené státy

Utajení

není předmětem státního či obchodního tajemství

Odkazy

URL

Označené pro přenos do RIV

Ano

Kód RIV

RIV/00216224:14310/24:00136660

Organizace

Přírodovědecká fakulta – Masarykova univerzita – Repozitář

DOI

https://doi.org/10.1021/acs.joc.4c00070

UT WoS

001189974700001

EID Scopus

2-s2.0-85188545813

Klíčová slova anglicky

INTRAMOLECULAR PROTON-TRANSFER; EXCITED-STATE; CHARGE-TRANSFER; DISSOCIATION-CONSTANTS; METAL-COMPLEXES; TRANSFER ESIPT; SINGLET; OXYGEN; LIGHT; OXIDATION

Návaznosti

GA21-01799S, projekt VaV. MUNI/A/1604/2023, interní kód Repo. 857560, interní kód Repo. RECETOX RI II, velká výzkumná infrastruktura.
Změněno: 24. 6. 2025 00:50, RNDr. Daniel Jakubík

Anotace

V originále

Carbon monoxide (CO) is notorious for its toxic effects but is also recognized as a gasotransmitter with considerable therapeutic potential. Due to the inherent challenges in its delivery, the utilization of organic CO photoreleasing molecules (photoCORMs) represents an interesting alternative to CO administration characterized by high spatial and temporal precision of release. This paper focused on the design, synthesis, and photophysical and photochemical studies of 20 3-hydroxyflavone (flavonol) and 3-hydroxyflavothione derivatives as photoCORMs. Newly synthesized compounds bearing various electron-donating and electron-withdrawing groups show bathochromically shifted absorption maxima and considerably enhanced CO release yields compared to the parent unsubstituted flavonol, exceeding 0.8 equiv of released CO in derivatives exhibiting excited states with a charge-transfer character. Until now, such outcomes have been limited to flavonol derivatives possessing a pi-extended aromatic system. In addition, thione analogs of flavonols, 3-hydroxyflavothiones, show substantial bathochromic shifts of their absorption maxima and enhanced photosensitivity but provide lower yields of CO formation. Our study elucidates in detail the mechanism of CO photorelease from flavonols and flavothiones, utilizing steady-state and time-resolved spectroscopies and photoproduct analyses, with a particular emphasis on unraveling the structure-photoreactivity relationship and understanding competing side processes.
Zobrazeno: 3. 5. 2026 13:43