[EN] NOVEL IN-VIVO PROBE FOR REAL TIME LONGITUDINAL MONITORING OF INDUCIBLE NITRIC-OXIDE SYNTHASE IN LIVING CELLS AND ANIMALS [FR] NOUVELLE SONDE IN VIVO POUR LA SURVEILLANCE LONGITUDINALE EN TEMPS RÉEL DE L'OXYDE NITRIQUE SYNTHASE INDUCTIBLE DANS DES CELLULES VIVANTES ET DES ANIMAUX VIVANTS
[EN] NOVEL IN-VIVO PROBE FOR REAL TIME LONGITUDINAL MONITORING OF INDUCIBLE NITRIC-OXIDE SYNTHASE IN LIVING CELLS AND ANIMALS [FR] NOUVELLE SONDE IN VIVO POUR LA SURVEILLANCE LONGITUDINALE EN TEMPS RÉEL DE L'OXYDE NITRIQUE SYNTHASE INDUCTIBLE DANS DES CELLULES VIVANTES ET DES ANIMAUX VIVANTS
[EN] NOVEL IN-VIVO PROBE FOR REAL TIME LONGITUDINAL MONITORING OF INDUCIBLE NITRIC-OXIDE SYNTHASE IN LIVING CELLS AND ANIMALS<br/>[FR] NOUVELLE SONDE IN VIVO POUR LA SURVEILLANCE LONGITUDINALE EN TEMPS RÉEL DE L'OXYDE NITRIQUE SYNTHASE INDUCTIBLE DANS DES CELLULES VIVANTES ET DES ANIMAUX VIVANTS
申请人:PANDA KOUSTUBH
公开号:WO2018092034A1
公开(公告)日:2018-05-24
The present disclosure relates to an in vivo fluorescent or radioactive probe represented by a compound of formula I which is capable of longitudinal imaging of inducible nitric oxide synthase (iNOS) expression in living cells and living animals on a real time basis. The probe of the present disclosure can exhibit specific and high affinity binding to the iNOS enzyme with reduced enzyme inhibitory property and also enables longitudinal monitoring of iNOS expression along with its activity or NO production in a same experimental subject throughout the progression of a physiological or disease process without employing separate subjects as controls and experimental. The present disclosure further provides a rapid and inexpensive real time method for visualizing iNOS expression and its activity in living cells and living animals precisely, conveniently and reversibly along with simultaneous in vivo imaging of its catalytic product, nitric oxide (NO) in live physiological settings.
N-Heterocyclic derivatives of the formula (I):
1
are described herein, as well as other N-heterocycles, as inhibitors of nitric oxide synthase. Pharmaceutical compositions containing these compounds, methods of using these compounds as inhibitors of nitric oxide synthase and processes for synthesizing these compounds are also described herein.
N-Heterocyclic derivatives of formula (I) are described herein, as well as other N-Heterocycles, as inhibitors of nitric oxide synthase. Pharmaceutical compositions containing these compounds, methods of using these compounds as inhibitors of nitric oxide synthase and processes for synthesizing these compounds are also described herein.
NOVEL IN-VIVO PROBE FOR REAL TIME LONGITUDINAL MONITORING OF INDUCIBLE NITRIC-OXIDE SYNTHASE IN LIVING CELLS AND ANIMALS
申请人:Panda Koustubh
公开号:US20190309169A1
公开(公告)日:2019-10-10
The present disclosure relates to an in vivo fluorescent or radioactive probe represented by a compound of formula I which is capable of longitudinal imaging of inducible nitric oxide synthase (iNOS) expression in living cells and living animals on a real time basis. The probe of the present disclosure can exhibit specific and high affinity binding to the iNOS enzyme with reduced enzyme inhibitory property and also enables longitudinal monitoring of iNOS expression along with its activity or NO production in a same experimental subject throughout the progression of a physiological or disease process without employing separate subjects as controls and experimental. The present disclosure further provides a rapid and inexpensive real time method for visualizing iNOS expression and its activity in living cells and living animals precisely, conveniently and reversibly along with simultaneous in vivo imaging of its catalytic product, nitric oxide (NO) in live physiological settings.