Patent classifications
A61K31/133
ALLEVIATION OF LIVER INJURY BY ACTIVATING THE SIGNALING PATHWAY MEDIATED BY FARNESOID X RECEPTOR
The present disclosure provides methods method for alleviating liver injury using a Farnesoid X receptor (FXR) activator.
NEUTROPHIL SUPPRESSION AS PRECONDITIONING TO INCREASE ONCOLYTIC BACTERIAL THERAPY
Provided herein are methods for increasing the therapeutic efficiency of oncolytic bacterial therapeutics. Bacterial oncolytic therapies, especially the ones targeting tumor hypoxia such as C. novyi-NT, often encounter incomplete tumor clearance in less hypoxic tumoral areas and severe inflammatory reactions. In this study, we explored immune-modulating preconditioning to suppress the host neutrophils and significantly enhanced the antitumor efficacy of C. novyi-NT in animal models, including an orthotopic brain tumor model in rabbits. The optimized preconditioning agent, hydroxyurea, is clinically approved and C. novyi-NT has demonstrated manageable safety and promising antitumor responses in clinical trials. Thus, the proposed preconditioning of neutrophil suppression is readily translatable to patients undergoing C. novyi-NT trials or other oncolytic biologic therapies and could improve outcome.
NEUTROPHIL SUPPRESSION AS PRECONDITIONING TO INCREASE ONCOLYTIC BACTERIAL THERAPY
Provided herein are methods for increasing the therapeutic efficiency of oncolytic bacterial therapeutics. Bacterial oncolytic therapies, especially the ones targeting tumor hypoxia such as C. novyi-NT, often encounter incomplete tumor clearance in less hypoxic tumoral areas and severe inflammatory reactions. In this study, we explored immune-modulating preconditioning to suppress the host neutrophils and significantly enhanced the antitumor efficacy of C. novyi-NT in animal models, including an orthotopic brain tumor model in rabbits. The optimized preconditioning agent, hydroxyurea, is clinically approved and C. novyi-NT has demonstrated manageable safety and promising antitumor responses in clinical trials. Thus, the proposed preconditioning of neutrophil suppression is readily translatable to patients undergoing C. novyi-NT trials or other oncolytic biologic therapies and could improve outcome.
METHODS FOR TREATING PULMONARY NON-TUBERCULOUS MYCOBACTERIAL INFECTIONS
Provided herein are methods for treating a pulmonary infection in a patient in need thereof for example, a nontuberculous mycobacterial pulmonary infection for at least one treatment cycle. The method comprises administering to the lungs of the patient a pharmaceutical composition comprising a liposomal complexed aminoglycoside comprising a lipid component comprising electrically neutral lipids and an aminoglycoside. Administration comprises aerosolizing the pharmaceutical composition to provide an aerosolized pharmaceutical composition comprising a mixture of free aminoglycoside and liposomal complexed aminoglycoside, and administering the aerosolized pharmaceutical composition via a nebulizer to the lungs of the patient. The methods provided herein result in a change from baseline on the semi-quantitative scale for mycobacterial culture for a treated patient, and/or NTM culture conversion to negative during or after the administration period.
METHODS FOR TREATING PULMONARY NON-TUBERCULOUS MYCOBACTERIAL INFECTIONS
Provided herein are methods for treating a pulmonary infection in a patient in need thereof for example, a nontuberculous mycobacterial pulmonary infection for at least one treatment cycle. The method comprises administering to the lungs of the patient a pharmaceutical composition comprising a liposomal complexed aminoglycoside comprising a lipid component comprising electrically neutral lipids and an aminoglycoside. Administration comprises aerosolizing the pharmaceutical composition to provide an aerosolized pharmaceutical composition comprising a mixture of free aminoglycoside and liposomal complexed aminoglycoside, and administering the aerosolized pharmaceutical composition via a nebulizer to the lungs of the patient. The methods provided herein result in a change from baseline on the semi-quantitative scale for mycobacterial culture for a treated patient, and/or NTM culture conversion to negative during or after the administration period.
METHODS FOR TREATING PULMONARY NON-TUBERCULOUS MYCOBACTERIAL INFECTIONS
Provided herein are methods for treating a pulmonary infection in a patient in need thereof for example, a nontuberculous mycobacterial pulmonary infection for at least one treatment cycle. The method comprises administering to the lungs of the patient a pharmaceutical composition comprising a liposomal complexed aminoglycoside comprising a lipid component comprising electrically neutral lipids and an aminoglycoside. Administration comprises aerosolizing the pharmaceutical composition to provide an aerosolized pharmaceutical composition comprising a mixture of free aminoglycoside and liposomal complexed aminoglycoside, and administering the aerosolized pharmaceutical composition via a nebulizer to the lungs of the patient. The methods provided herein result in a change from baseline on the semi-quantitative scale for mycobacterial culture for a treated patient, and/or NTM culture conversion to negative during or after the administration period.
ENHANCED CAFFEINATED BEVERAGE COMPOSITION
An enhanced caffeinated beverage composition includes a caffeinated drink combined with an effective blend of methylliberine and theacrine providing increased mood, energy, alertness, focus, motivation, and/or decreased fatigue without adversely affecting heart rate or blood pressure.
ENHANCED CAFFEINATED BEVERAGE COMPOSITION
An enhanced caffeinated beverage composition includes a caffeinated drink combined with an effective blend of methylliberine and theacrine providing increased mood, energy, alertness, focus, motivation, and/or decreased fatigue without adversely affecting heart rate or blood pressure.
POROUS NANOCOMPOSITE MEDICAL IMPLANT DEVICE
The present invention relates to a drug-eluting nanoengineered medical implant/contact device. The device comprises a nanocomposite and a drug, wherein the nanocomposite comprises hydrophilic polymer domains, hydrophobic polymer domains, water pores, and boundary charged double layers; wherein when the drug is hydrophilic, at least 80% of the drug partitions in the boundary charged double layers formed at the boundary interface of the hydrophilic polymer domains and water pores, and when the drug is hydrophobic, at least 80% of the dmg partitions in the boundary charged double layers formed at the boundary interface of the hydrophobic polymer domains and water pores. The device is configured to sustain the release of the drug at high precision and long duration.
COMPOSITIONS AND THEIR USE
A synthetic nutritional composition comprising a vitamin for use to promote, support or optimise de novo myelination, in particular the de novo myelination trajectory, and/or brain structure, and/or brain connectivity, and/or intellectual potential and/or cognitive potential and/or learning potential and/or cognitive functioning in a subject, in particular a formula fed subject.