Patent classifications
A61K9/146
NANOPARTICULATE COMPOSITIONS AND FORMULATIONS OF PIPERAZINE COMPOUNDS
The present invention relates to storage stable nanoparticulate compositions of piperazine compounds. The pharmaceutical compositions comprising the nanoparticulate compositions that are useful for the treatment and prevention of proliferative diseases including cancer are also described.
Pharmaceutical Compositions Comprising Ledipasvir And Sofosbuvir
The present invention relates to novel pharmaceutical compositions comprising Ledipasvir and Sofosbuvir as well as to methods for their preparation.
CRYSTALLINE FORMS OF THERAPEUTIC COMPOUNDS AND USES THEREOF
Described herein are certain crystalline forms of Compound 3, as well as pharmaceutical compositions employing the crystalline forms. Also provided are particles (e.g., nanoparticles) comprising such crystalline forms or pharmaceutical compositions. In certain examples, the particles are mucus penetrating particles (MPPs). The present invention further relates to methods of treating or preventing diseases using crystalline forms or pharmaceutical compositions.
Cyclodextrin Compositions Encapsulating a Selective ATP Inhibitor and Uses Thereof
The invention provides compositions comprising cyclodextrins encapsulating a selective ATP inhibitor, as well as uses thereof.
Odor masking formulations for natural compounds
The invention discloses odor masking formulations for stench natural compounds, selected from the extracts, fraction and pure phytochemicals that are produced in combination with a natural or synthetic hydrocolloid polymer gum(s). The invention further discloses novel process of producing the odor and taste masking formulations. The invention also discloses taste masking formulations of valerian extracts with no characteristic stench odor & or negligible stench odor in combination with natural hydrocolloid gum such as guar gum, acacia or other polymers. The invention further discloses method of reducing insomnia, anxiety, Attention Deficit Disorder (ADD), Chronic Fatigue Syndrome (CFS) using odor masking formulation of the current invention. Importantly, the said odor masked formulation of the present disclosure helps in improving sleep cycle and helps in efficient functioning of brain.
NUCLEIC ACID-CONTAINING LIPID PARTICLES AND RELATED METHODS
Lipid particles containing a nucleic acid, devices and methods for making the lipid particles, and methods for using the lipid particles.
TAXIFOLIN FORMULATION COMPRISING THIAMINE
The present invention relates to formulations of taxifolin with thiamine as a dosage form for oral administration, in particular as dietary supplements or foods for special medical purposes/FSMPs.
CONTACT LENS PRODUCT WITH CORNEA REPAIR FUNCTION
A contact lens product having a cornea repair function includes a composition in the form of a solution. The composition includes gold nanoparticles and at least one auxiliary repairing ingredient. The gold nanoparticles are present in an effective concentration from 0.01 ppm to 3000 ppm and have an average particle size from 0.01 nm to 100 nm. The at least one auxiliary repairing ingredient is selected from the group consisting of chondroitin sulfate, α-lipoic acid, 2-aminoethanesulfonic acid, and potassium L-aspartate and present in an amount greater than 0 wt % and less than 20 wt % based on the composition being 100 wt %.
INTRANASAL DHE FOR THE TREATMENT OF HEADACHE
Presented herein are powder formulations comprising dihydroergotamine (DHE), or a pharmaceutically acceptable salt thereof. In addition to such formulations, also presented herein are methods comprising intranasally administering powder formulations comprising dihydroergotamine, or a pharmaceutically acceptable salt thereof. The presented methods can be used for treating headache, for example, for rapid onset treatment of headache, including migraine, e.g. acute treatment of migraine with or without aura.
SELF-ASSEMBLED CATALASE NANOPARTICLE AND PREPARATION METHOD THEREFOR AND USE THEREOF
Disclosed are a self-assembled catalase nanoparticle and a preparation method therefor and the use thereof. The self-assembled catalase nanoparticle of the present invention is obtained by dissolving catalase freeze-dried powder to obtain a catalase solution, adjusting the pH value of the catalase solution, and then centrifugating or filtering same to obtain a supernatant or a filtrate, and further thermally incubating the supernatant or filtrate. The self-assembling catalase nanoparticle of the present invention can be used in medicines or food products that promote immune cell growth and regulate organic immunity.