Patent classifications
C07D209/36
N-SUBSTITUTED INDOLES AND OTHER HETEROCYCLES FOR TREATING BRAIN DISORDERS
The present invention provides N-substituted indoles and other heterocycles and methods of using the compounds for treating brain disorders.
Mast-cell modulators and uses thereof
Provided are novel compounds of Formula I: ##STR00001##
pharmaceutically acceptable salts thereof, and pharmaceutical compositions thereof, which are useful in the treatment of diseases and disorders associated with mast cells. Also provided are pharmaceutical compositions comprising the novel compounds of Formula I and methods for their use in treating one or more diseases and disorders associated with mast cells.
Mast-cell modulators and uses thereof
Provided are novel compounds of Formula I: ##STR00001##
pharmaceutically acceptable salts thereof, and pharmaceutical compositions thereof, which are useful in the treatment of diseases and disorders associated with mast cells. Also provided are pharmaceutical compositions comprising the novel compounds of Formula I and methods for their use in treating one or more diseases and disorders associated with mast cells.
Haloallylamine indole and azaindole derivative inhibitors of lysyl oxidases and uses thereof
The present invention relates to novel compounds which are capable of inhibiting certain amine oxidase enzymes. These compounds are useful for treatment of a variety of indications, e.g., fibrosis, cancer and/or angiogenesis in human subjects as well as in pets and livestock. In addition, the present invention relates to pharmaceutical compositions containing these compounds, as well as various uses thereof.
Haloallylamine indole and azaindole derivative inhibitors of lysyl oxidases and uses thereof
The present invention relates to novel compounds which are capable of inhibiting certain amine oxidase enzymes. These compounds are useful for treatment of a variety of indications, e.g., fibrosis, cancer and/or angiogenesis in human subjects as well as in pets and livestock. In addition, the present invention relates to pharmaceutical compositions containing these compounds, as well as various uses thereof.
Antibacterial Compounds
The present application provides compounds of formula: Methods of using these compounds for killing bacterial growth and treating bacterial infections are also provided.
##STR00001##
Antibacterial Compounds
The present application provides compounds of formula: Methods of using these compounds for killing bacterial growth and treating bacterial infections are also provided.
##STR00001##
METHOD FOR PREPARING ADRENOCHROME BY CATALYTIC OXIDATION USING NITROGEN-DOPED CARBON NANOTUBES
Disclosed is a method for preparing adrenochrome by catalytic oxidation using nitrogen-doped carbon nanotubes. The method catalyzes dissolved oxygen in an aqueous solution by the nitrogen-doped carbon nanotubes to rapidly oxidize adrenaline, which is completely transformed into adrenochrome. It is a novel preparation process of adrenochrome, which is simple, and has mild reaction conditions, high product purity, an impurity content less than 10.sup.−8%, and low subsequent processing cost, thereby having a great application prospect. The nitrogen-doped carbon tubes after use can be regenerated and recovered, and its reutilization is still able to realize the complete transformation of adrenaline. The high utilization rate of catalytic material conforms to the concept of energy conservation, minimizing the costs.
METHOD FOR PREPARING ADRENOCHROME BY CATALYTIC OXIDATION USING NITROGEN-DOPED CARBON NANOTUBES
Disclosed is a method for preparing adrenochrome by catalytic oxidation using nitrogen-doped carbon nanotubes. The method catalyzes dissolved oxygen in an aqueous solution by the nitrogen-doped carbon nanotubes to rapidly oxidize adrenaline, which is completely transformed into adrenochrome. It is a novel preparation process of adrenochrome, which is simple, and has mild reaction conditions, high product purity, an impurity content less than 10.sup.−8%, and low subsequent processing cost, thereby having a great application prospect. The nitrogen-doped carbon tubes after use can be regenerated and recovered, and its reutilization is still able to realize the complete transformation of adrenaline. The high utilization rate of catalytic material conforms to the concept of energy conservation, minimizing the costs.
INDIGO-BASED POLYMERS FOR USE IN SWCNTS ELECTRONICS
A compound of Formula (0): where Ar is one or more substituted or unsubstituted aromatic units, R is independently H, F, CN, a C.sub.1-C.sub.20 linear or branched aliphatic group or a C.sub.1-C.sub.20 linear or branched aliphatic acyl group, and n is an integer 3 or greater, is useful for sorting and dispersing carbon nanotubes (CNTs) and for producing printed electronic devices (e.g. CO.sub.2 sensors, TFTs) in which the CNTs are functionalized with the compound.
##STR00001##