A61K9/1617

GRANULES AND PREPARATION USING SAME
20230014578 · 2023-01-19 ·

Provided is a melt granulated product with a high particle size homogeneity. Alternatively, provided is a pharmaceutical composition using said melt granulated product. Alternatively, provided is a melt granulated product with a high drug content. Alternatively, provided is a pharmaceutical composition using the melt granulated product. According to one embodiment of the present invention, a granule is provided that comprises an active ingredient, a melt component, and a polymer, wherein the active ingredient, the melt component and the polymer are bound. In addition, the melt component may be solid at room temperature, and have a melting point of 100° C. or less. The polymer may be solid at room temperature, and have a glass transition point of 100° C. or less.

DRY POWDER FORMULATIONS FOR INHALATION
20230218643 · 2023-07-13 ·

A respirable dry powder can include acetylsalicylic acid in particles having a mass median aerodynamic diameter (MMAD) within a range of about 0.5 μm to about 10 μm. The respirable dry powder may contain a pharmaceutically acceptable excipient, such as an amino acid (e.g., Leucine), in an amount ranging from about 0.1% (w/w) to about 40% (w/w) of the particles.

GOLF BALL-LIKE MICROPARTICLES FOR USE IN THE TREATMENT AND PREVENTION OF PULMONARY DISEASES
20230218515 · 2023-07-13 ·

The present invention relates to a golf ball-like microparticles obtained by atomization of nanosuspensions of nanoparticles or solutions for dry powder inhalers for use in the treatment and prevention of pulmonary diseases.

STABILIZED FORMULATIONS OF 4-AMINO-3-SUBSTITUTED BUTANOIC ACID DERIVATIVES

Pharmaceutical compositions including an active ingredient and a stabilizer, as well as methods of manufacture of the compositions, and methods of their use. The composition may include the active ingredient dispersed throughout a matrix of the stabilizer. In some embodiments, the active ingredient and the stabilizer are intimately mixed in a matrix formulation. In some embodiments, the active ingredient is selected from 4 amino-3-(4-chlorophenyl)butanoic acid) (“baclofen”) and its pharmaceutically acceptable salts.

TREATMENT OF PROSTATE CANCER WITH A COMBINATION OF ABIRATERONE ACETATE AND NIRAPARIB

The present disclosure relates to a combination of abiraterone acetate and niraparib, free-dose and fixed-dose combinations of abiraterone acetate and niraparib, and methods of treatment of prostate cancer with said combinations.

Methods and compositions for self-regulated release of active pharmaceutical ingredients

An abuse deterrent pharmaceutical composition including a drug susceptible to abuse, a first acid soluble ingredient, a first buffering ingredient, and a delayed release buffering component.

FLOW CHANNEL STRUCTURE FOR REMOVING FOREIGN SUBSTANCE, METHOD FOR REMOVING FOREIGN SUBSTANCE, AND METHOD FOR MANUFACTURING LIPID PARTICLES

A flow channel structure for removing a foreign substance, including a first flow channel, where the first flow channel has a first region having a depth shallower than a depth of another region. A method for removing a foreign substance in a fluid, including flowing the fluid to the first flow channel of the flow channel structure for removing a foreign substance.

Fine particle coating (drug-containing hollow particle and method for manufacturing same)

Provided is a manufacturing method of particles coated with coatable microparticles. The method is a manufacturing method of particles coated with coatable microparticles, comprising the step of adding the coatable microparticles to an inner core comprising a component of interest and a macromolecule, and, while rolling the mixture, coating the mixture while spraying a solvent that can dissolve the macromolecule, wherein the particles coated with the coatable microparticles are coated, component of interest-containing hollow particles.

FORMULATIONS OF MAZINDOL

Formulations of mazindol having superior stability and methods of administering same are provided. The formulations may be immediate, enhanced, or otherwise delayed release formulations of mazindol.

TREATING INFLUENZA USING SUBSTITUTED POLYCYCLIC PYRIDONE DERIVATIVES AND PRODRUGS THEREOF IN A SUBJECT HAVING INFLUENZA AND A SEVERE INFLUENZA CONDITION

A method for treating an influenza virus infection is described. The disclosed method generally involves administering an effective amount of a compound (A), for example baloxavir marboxil, and a compound (B), for example a neuraminidase inhibor, to a subject that (1) has an influenza virus infection, (2) has been symptomatic of the influenza virus infection for no more than 96 hours, and (3) further has at least one severe influenza condition selected from the following: (a) being hospitalized due to severe influenza virus infection, (b) requiring an extension of hospitalization because of the influenza virus infection during the hospitalization, (c) having a National Early Warning Score 2 of four or more, (d) being on support for respiration, and (e) having at least one complication attributable to the influenza virus infection that necessitates hospitalization.