Patent classifications
A61K31/335
Dispensing device and pharmaceutical composition for the treatment of rhinitis
A nasal dispensing device and pharmaceutical composition includes a container; a dispenser head having at least a pump, a dispensing channel, and a dispensing orifice; a dip tube; and a pharmaceutical composition comprising mometasone, an ester thereof (e.g., mometasone furoate), or a salt thereof and olopatadine or its salt (e.g., olopatadine hydrochloride). The container can have a conically shaped internal bottom, angled downwardly toward a center, and a further angularly deepened well, centrally located, with the dip tube extending into the well. An optional cap is provided that includes a sealing sleeve communicating in a seal tight manner with a perimeter of a lateral wall of the dispenser head.
Dispensing device and pharmaceutical composition for the treatment of rhinitis
A nasal dispensing device and pharmaceutical composition includes a container; a dispenser head having at least a pump, a dispensing channel, and a dispensing orifice; a dip tube; and a pharmaceutical composition comprising mometasone, an ester thereof (e.g., mometasone furoate), or a salt thereof and olopatadine or its salt (e.g., olopatadine hydrochloride). The container can have a conically shaped internal bottom, angled downwardly toward a center, and a further angularly deepened well, centrally located, with the dip tube extending into the well. An optional cap is provided that includes a sealing sleeve communicating in a seal tight manner with a perimeter of a lateral wall of the dispenser head.
Use of Mitochondria-Targeted Antioxidants to Treat Severe Inflammatory Conditions
Mitochondrially targeted antioxidants are used to prevent and treat severe inflammatory conditions including viral infection (such as COVID-19), systemic shock, trauma, burns, surgery associated with significant tissue damage, toxic damage, and damage associated with autoimmune reactions.
Use of Mitochondria-Targeted Antioxidants to Treat Severe Inflammatory Conditions
Mitochondrially targeted antioxidants are used to prevent and treat severe inflammatory conditions including viral infection (such as COVID-19), systemic shock, trauma, burns, surgery associated with significant tissue damage, toxic damage, and damage associated with autoimmune reactions.
Treprostinil prodrugs
Provided are novel prodrugs of treprostinil, as well as methods of making and methods of using these prodrugs.
Treprostinil prodrugs
Provided are novel prodrugs of treprostinil, as well as methods of making and methods of using these prodrugs.
TREATMENT OF ALLERGIC RHINITIS USING A COMBINATION OF MOMETASONE AND OLOPATADINE
The present invention relates to a method of treating allergic rhinitis in a subject (e.g., a human) in need thereof comprising nasally administering to the subject an effective amount of a fixed-dose pharmaceutical composition comprising mometasone or its salt and olopatadine or its salt.
TREATMENT OF ALLERGIC RHINITIS USING A COMBINATION OF MOMETASONE AND OLOPATADINE
The present invention relates to a method of treating allergic rhinitis in a subject (e.g., a human) in need thereof comprising nasally administering to the subject an effective amount of a fixed-dose pharmaceutical composition comprising mometasone or its salt and olopatadine or its salt.
TREATMENT OF ALLERGIC RHINITIS USING A COMBINATION OF MOMETASONE AND OLOPATADINE
The present invention relates to a method of treating allergic rhinitis in a subject (e.g., a human) in need thereof comprising nasally administering to the subject an effective amount of a fixed-dose pharmaceutical composition comprising mometasone or its salt and olopatadine or its salt.
PKC-ACTIVATING COMPOUNDS FOR THE TREATMENT OF NEURODEGENERATIVE DISEASES
The present invention relates to methods of activate an isoform of protein kinase C (PKC) for the treatment of neurological diseases including Alzheimer's disease and stroke using cyclopropanated or epoxidized derivatives of mono- and polyunsaturated fatty acids. The present invention also relates to methods of reducing neurodegeneration using cyclopropanated or epoxidized derivatives of mono- and polyunsaturated fatty acids.