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TECHNICAL FIELD
The present invention relates to development of an antiulcer herbal composition(s), process of preparing the extracts useful for preparing herbal formulation to treat ulcers.
BACKGROUND ART
Peptic ulcer represents a major health problem, both in terms of morbidity and mortality.
FIELD OF INVENTION
The present invention relates generally to methods of treating disorders such as AIDS, arthritis (rheumatoid arthritis, osteoarthritis, spondyloarthropathies), antibiotic induced diarrheal diseases (Clostridium difficile), multiple sclerosis, osteoporosis, gingivitis, peptic ulcer
BACKGROUND OF THE INVENTION
The present invention relates to the treatment of certain conditions using a compound of formula I or II, or a pharmaceutically acceptable salt thereof, as defined below. Specifically, the compounds of formulas I and II, and their pharmaceutically acceptable salts, as
TECHNICAL FIELD
The present invention relates to glutamate (glutamic acid ester) derivatives having a CaSR agonist activity or pharmaceutically acceptable salts thereof; and CaSR agonist agents, pharmaceutical compositions, preventive or therapeutic agents for diarrhea, preventive or therapeutic
TECHNICAL FIELD
The present invention relates to a pharmaceutical agent containing (S)-1-cyclopropyl-1,4-dihydro-7-[2-(N,N-dimethylaminomethyl)morpholino]-6- fluoro-8-methoxy-4-oxoquinoline-3-carboxylic acid or a pharmaceutically acceptable salt thereof, which agent is useful for the prophylaxis and
BACKGROUND
The vanilloid receptor 1 (VR1) is the molecular target of capsaicin, the active ingredient in hot peppers. Julius et al. reported the molecular cloning of VR1 (Caterina et al., 1997). VR1 is a non-selective cation channel which is activated or sensitized by a series of different stimuli
BACKGROUND
The vanilloid receptor 1 (VR1) is the molecular target of capsaicin, the active ingredient in hot peppers. Julius et al. reported the molecular cloning of VR1 (Caterina et al., 1997). VR1 is a non-selective cation channel which is activated or sensitized by a series of different stimuli
BACKGROUND
The vanilloid receptor 1 (VR1) is the molecular target of capsaicin, the active ingredient in hot peppers. Julius et al. reported the molecular cloning of VR1 (Caterina et al., 1997). VR1 is a non-selective cation channel which is activated or sensitized by a series of different stimuli
BACKGROUND
The vanilloid receptor 1 (VR1) is the molecular target of capsaicin, the active ingredient in hot peppers. Julius et al. reported the molecular cloning of VR1 (Caterina et al., 1997). VR1 is a non-selective cation channel which is activated or sensitized by a series of different stimuli
BACKGROUND
The vanilloid receptor 1 (VR1) is the molecular target of capsaicin, the active ingredient in hot peppers. Julius et al. reported the molecular cloning of VR1 (Caterina et al., 1997). VR1 is a non-selective cation channel which is activated or sensitized by a series of different stimuli
BACKGROUND
The vanilloid receptor 1 (VR1) is the molecular target of capsaicin, the active ingredient in hot peppers. Julius et al. reported the molecular cloning of VR1 (Caterina et al., 1997). VR1 is a non-selective cation channel which is activated or sensitized by a series of different stimuli
BACKGROUND
The vanilloid receptor 1 (VR1) is the molecular target of capsaicin, the active ingredient in hot peppers. Julius et al. reported the molecular cloning of VR1 (Caterina et al., 1997). VR1 is a non-selective cation channel which is activated or sensitized by a series of different stimuli
BACKGROUND
The vanilloid receptor 1 (VR1) is the molecular target of capsaicin, the active ingredient in hot peppers. Julius et al. reported the molecular cloning of VR1 (Caterina et al., 1997). VR1 is a non-selective cation channel which is activated or sensitized by a series of different stimuli
BACKGROUND
The vanilloid receptor 1 (VR1) is the molecular target of capsaicin, the active ingredient in hot peppers. Julius et al. reported the molecular cloning of VR1 (Caterina et al., 1997). VR1 is a non-selective cation channel which is activated or sensitized by a series of different stimuli
BACKGROUND
Cold sensation is derived from activation of the somatosensory system by a cold stimulus. Calcium imaging and patch clamp experiments in dissociated trigeminal and dorsal root ganglia neurons have revealed that cold stimuli induced calcium influx, suggesting the direct opening of a