[EN] DESMETHYLANETHOLE TRITHIONE DERIVATIVES FOR THE TREATMENT OF DISEASES LINKED TO MITOCHONDRIAL REACTIVE OXYGEN SPECIES (ROS) PRODUCTION [FR] DÉRIVÉS DESMÉTHYLANETHOLE TRITHIONE POUR LE TRAITEMENT DE MALADIES LIÉES À LA PRODUCTION DE FORMES RÉACTIVES DE L'OXYGÈNE (FRO) D'ORIGINE MITOCHONDRIALE
array of functional group transformations. The unprecedented spiro B-N heterocycles prepared in this study have potential utility as buildingblocks for the synthesis of pharmaceuticals. Preliminary mechanisticstudies suggest that insertion of the alkylidene carbenes into the B-H bonds of the amine-borane adducts proceeds via a concerted process involving a three-membered-ring transition state.
Desmethylanethole trithione derivatives for the treatment of diseases linked to mitochondrial reactive oxygen species (ROS) production
申请人:OP2 Drugs
公开号:US11484529B2
公开(公告)日:2022-11-01
The present invention relates to desmethylanethole trithione (AOX) and derivatives thereof, especially derivatives of formula (I), for the prevention and treatment of diseases whose initiation and/or evolution relates to the production and effects of reactive oxygen species (ROS) of mitochondrial origin,
Yakimovich,S.I. et al., Journal of Organic Chemistry USSR (English Translation), 1977, vol. 13, p. 1075 - 1080
作者:Yakimovich,S.I. et al.
DOI:——
日期:——
DESMETHYLANETHOLE TRITHIONE DERIVATIVES FOR THE TREATMENT OF DISEASES LINKED TO MITOCHONDRIAL REACTIVE OXYGEN SPECIES (ROS) PRODUCTION
申请人:OP2 Drugs
公开号:US20210154175A1
公开(公告)日:2021-05-27
The present invention relates to desmethylanethole trithione (AOX) and derivatives thereof, especially derivatives of formula (I), for the prevention and treatment of diseases whose initiation and/or evolution relates to the production and effects of reactive oxygen species (ROS) of mitochondrial origin,
Study on the synthesis and biological activities of α-substituted arylacetates derivatives
α-glucosidase with IC50 value of 46.81 μM and 83.76 μM, respectively. Compounds 9 and 22 exhibit comparable good antidiabetic activities as commercial drug Glimepiride. In addition, Schiff bases of α-substituted arylacetates show antitumor activities against human cancer cell lines, where compound 9 with thiourea moiety performs the best antitumor activity. We anticipate that our research will provide potential