Patent classifications
A61K31/225
METHODS FOR IMPROVED ENDOVASCULAR THROMBECTOMY USING 3,3'-DIINDOLYLMETHANE
Provided herein are methods of enhancing mechanical thrombectomy during endovascular therapy for acute thrombosis using 3,3′-diindolylmethane.
METHODS FOR IMPROVED ENDOVASCULAR THROMBECTOMY USING 3,3'-DIINDOLYLMETHANE
Provided herein are methods of enhancing mechanical thrombectomy during endovascular therapy for acute thrombosis using 3,3′-diindolylmethane.
Glyceryl 3-hydroxybutyrates for traumatic brain injury
A method of treatment of mild to moderate non-penetrating closed traumatic brain injury and mild to moderate TBI due to surgical intervention using 3-hydroxybutyate glycerides is disclosed.
Glyceryl 3-hydroxybutyrates for traumatic brain injury
A method of treatment of mild to moderate non-penetrating closed traumatic brain injury and mild to moderate TBI due to surgical intervention using 3-hydroxybutyate glycerides is disclosed.
Prevention, treatment and reversal of disease using therapeutically effective amounts of dicarboxylic acid compounds
Various embodiments of this invention are directed to pharmaceutical compositions and methods for treating disease. The compositions of such embodiments include dicarboxylic acid compounds containing electron withdrawing groups, alkyl esters of dicarboxylic acids containing electron withdrawing groups, or compounds of Formulae I to X. The methods of various embodiments include administering an effective amount of any of these pharmaceutical compositions to a patient in need of treatment.
Prevention, treatment and reversal of disease using therapeutically effective amounts of dicarboxylic acid compounds
Various embodiments of this invention are directed to pharmaceutical compositions and methods for treating disease. The compositions of such embodiments include dicarboxylic acid compounds containing electron withdrawing groups, alkyl esters of dicarboxylic acids containing electron withdrawing groups, or compounds of Formulae I to X. The methods of various embodiments include administering an effective amount of any of these pharmaceutical compositions to a patient in need of treatment.
Compositions and Methods for Cellular Ageing, Stress Resilience, Autophagy, Inflammation and Longevity
Compositions and methods are presented that help reduce cellular ageing, improve cellular stress resilience, and/or promote increased longevity. Especially preferred compositions include a combination of a purine alkaloid, an isothiocyanate or thioglucoside, and a metal-containing antioxidant, where the purine alkaloid, the isothiocyanate or thioglucoside, and the metal-containing antioxidant may be chemically isolated compounds or extracts or other preparations from naturally occurring entities such as plants, bacteria, yeast, etc. Advantageously, contemplated compositions will be effective to reduce and repair oxidative stress, improve mitochondrial function, augment DNA repair and telomere maintenance, increase fatty acid metabolism, and modulate histone deacetylation.
Compositions and Methods for Cellular Ageing, Stress Resilience, Autophagy, Inflammation and Longevity
Compositions and methods are presented that help reduce cellular ageing, improve cellular stress resilience, and/or promote increased longevity. Especially preferred compositions include a combination of a purine alkaloid, an isothiocyanate or thioglucoside, and a metal-containing antioxidant, where the purine alkaloid, the isothiocyanate or thioglucoside, and the metal-containing antioxidant may be chemically isolated compounds or extracts or other preparations from naturally occurring entities such as plants, bacteria, yeast, etc. Advantageously, contemplated compositions will be effective to reduce and repair oxidative stress, improve mitochondrial function, augment DNA repair and telomere maintenance, increase fatty acid metabolism, and modulate histone deacetylation.
Nanoparticle pharmaceutical delivery system
A method of preparing a nanoparticle pharmaceutical delivery system. A nanoparticle pharmaceutical delivery system. A method of preparing a targeted nanoparticle pharmaceutical delivery system. A targeted nanoparticle pharmaceutical delivery system.
Nanoparticle pharmaceutical delivery system
A method of preparing a nanoparticle pharmaceutical delivery system. A nanoparticle pharmaceutical delivery system. A method of preparing a targeted nanoparticle pharmaceutical delivery system. A targeted nanoparticle pharmaceutical delivery system.