Patent classifications
A61K31/495
Cancer therapy by degrading dual MEK signaling
The discovery of mutant or fusion kinases that drive oncogenesis, and the subsequent approval of specific inhibitors for these enzymes, has been instrumental in the management of some cancers. However, acquired resistance remains a significant problem in the clinic, limiting the long-term effectiveness of most of these drugs. Herein is demonstrated a strategy to overcome this resistance through drug-induced MEK cleavage (via direct procaspase-3 activation) combined with targeted kinase inhibition. This combination effect is shown to be general across diverse tumor histologies (melanoma, lung cancer, and leukemia) and driver mutations (mutant BRAF or EGFR, fusion kinases EML4-ALK and BCR-ABL). Caspase-3-mediated degradation of MEK kinases results in sustained pathway inhibition and substantially delayed or eliminated resistance in cancer cells in a manner superior to combinations with MEK inhibitors. These data suggest the generality of drug-mediated MEK kinase cleavage as a therapeutic strategy to prevent resistance to targeted anticancer therapies.
Cancer therapy by degrading dual MEK signaling
The discovery of mutant or fusion kinases that drive oncogenesis, and the subsequent approval of specific inhibitors for these enzymes, has been instrumental in the management of some cancers. However, acquired resistance remains a significant problem in the clinic, limiting the long-term effectiveness of most of these drugs. Herein is demonstrated a strategy to overcome this resistance through drug-induced MEK cleavage (via direct procaspase-3 activation) combined with targeted kinase inhibition. This combination effect is shown to be general across diverse tumor histologies (melanoma, lung cancer, and leukemia) and driver mutations (mutant BRAF or EGFR, fusion kinases EML4-ALK and BCR-ABL). Caspase-3-mediated degradation of MEK kinases results in sustained pathway inhibition and substantially delayed or eliminated resistance in cancer cells in a manner superior to combinations with MEK inhibitors. These data suggest the generality of drug-mediated MEK kinase cleavage as a therapeutic strategy to prevent resistance to targeted anticancer therapies.
Cancer therapy by degrading dual MEK signaling
The discovery of mutant or fusion kinases that drive oncogenesis, and the subsequent approval of specific inhibitors for these enzymes, has been instrumental in the management of some cancers. However, acquired resistance remains a significant problem in the clinic, limiting the long-term effectiveness of most of these drugs. Herein is demonstrated a strategy to overcome this resistance through drug-induced MEK cleavage (via direct procaspase-3 activation) combined with targeted kinase inhibition. This combination effect is shown to be general across diverse tumor histologies (melanoma, lung cancer, and leukemia) and driver mutations (mutant BRAF or EGFR, fusion kinases EML4-ALK and BCR-ABL). Caspase-3-mediated degradation of MEK kinases results in sustained pathway inhibition and substantially delayed or eliminated resistance in cancer cells in a manner superior to combinations with MEK inhibitors. These data suggest the generality of drug-mediated MEK kinase cleavage as a therapeutic strategy to prevent resistance to targeted anticancer therapies.
THERAPEUTIC USES OF 1-[2-(2,4-DIMETHYL-PHENYLSULFANYL)PHENYL]PIPERAZINE
The invention provides new therapeutic uses of 1-[2-(2,4-dimethyl-phenylsulfanyl)phenyl]-piperazine and pharmaceutically acceptable salts thereof.
THERAPEUTIC USES OF 1-[2-(2,4-DIMETHYL-PHENYLSULFANYL)PHENYL]PIPERAZINE
The invention provides new therapeutic uses of 1-[2-(2,4-dimethyl-phenylsulfanyl)phenyl]-piperazine and pharmaceutically acceptable salts thereof.
METHODS AND COMPOSITIONS FOR TREATING CANCER
Provided, inter alia, are methods and compositions for treating FTO-mediated cancer.
METHODS AND COMPOSITIONS FOR TREATING CANCER
Provided, inter alia, are methods and compositions for treating FTO-mediated cancer.
METHODS AND COMPOSITIONS FOR TREATING CANCER
Provided, inter alia, are methods and compositions for treating FTO-mediated cancer.
Levocetirizine and montelukast in the treatment of inflammation mediated conditions
The embodiments described herein include methods and formulations for treating viruses and diseases that are exacerbated by inflammatory responses in the body. The methods and formulations include, but are not limited to, methods and formulations for delivering effective concentrations of levocetirizine and montelukast to a patient in need. The methods and formulations can comprise conventional and/or modified-release elements, providing for drug delivery to the patient.
Levocetirizine and montelukast in the treatment of inflammation mediated conditions
The embodiments described herein include methods and formulations for treating viruses and diseases that are exacerbated by inflammatory responses in the body. The methods and formulations include, but are not limited to, methods and formulations for delivering effective concentrations of levocetirizine and montelukast to a patient in need. The methods and formulations can comprise conventional and/or modified-release elements, providing for drug delivery to the patient.