Patent classifications
A61K38/2242
Method of treatment of cancer using guanosine 3′, 5′ cyclic monophosphate (cyclic GMP)
A method of treating cancer through use of guanosine 3′,5′-cyclic monophosphate (cyclic GMP). Cyclic GMP decreases the number of human breast cancer and prostate adenocarcinoma as well as small-cell and squamous lung cells in culture by 30% (1 μM), 84% (1 mM), 31% (1 μM), and 30% (1 μM), respectively. Cyclic GMP decreases DNA synthesis in human pancreatic, breast, and prostate adenocarcinomas as well as small-cell and squamous cell carcinomas of the lung at its 1 μM concentration by 51%, 54%, 56%, 50% and 52%, respectively. Cyclic GMP when infused for one week decreases the tumor volume of human pancreatic adenocarcinomas in athymic mice 95% compared to untreated animals with human pancreatic adenocarcinomas.
Method of treatment of cancer using guanosine 3′, 5′ cyclic monophosphate (cyclic GMP)
A method of treating cancer through use of guanosine 3′,5′-cyclic monophosphate (cyclic GMP). Cyclic GMP decreases the number of human breast cancer and prostate adenocarcinoma as well as small-cell and squamous lung cells in culture by 30% (1 μM), 84% (1 mM), 31% (1 μM), and 30% (1 μM), respectively. Cyclic GMP decreases DNA synthesis in human pancreatic, breast, and prostate adenocarcinomas as well as small-cell and squamous cell carcinomas of the lung at its 1 μM concentration by 51%, 54%, 56%, 50% and 52%, respectively. Cyclic GMP when infused for one week decreases the tumor volume of human pancreatic adenocarcinomas in athymic mice 95% compared to untreated animals with human pancreatic adenocarcinomas.
Anti-cell proliferative compounds and methods of use
The invention provides compounds such as proteins, peptides, peptidomimetics and small molecules, methods for treating cell proliferative disorders such as neoplasia, tumor, or cancer, and metastasis thereof, and methods for identifying and screening for active compounds.
Dosage regimen for therapeutic method
Disclosed herein is the use of an active agent comprising a peptide derived from atrial natriuretic peptide (ANP) prohormone or a mimetic thereof in the manufacture of a medicament for treating a disease in a subject. The medicament is administered subcutaneously in a multimodal dosage regime comprising at least an initial dosage stage and at least one maintenance dosage stage. The initial dosage stage comprises infusing the active agent at an initial dosage rate for an initial period to achieve a target steady state blood plasma concentration of the active agent or metabolite thereof. The maintenance dosage stage(s) comprise(s) adjusting the dosage rate to a maintenance dosage rate for a maintenance period to substantially maintain said target steady state blood plasma concentration of the active agent or metabolite thereof.
LEVOSIMENDAN FOR TREATING PULMONARY HYPERTENSION WITH HEART FAILURE WITH PRESERVED EJECTION FRACTION (PH-HFpEF)
This invention relates to the treatment of Pulmonary Hypertension with heart failure with preserved ejection fraction (PH-HFpEF). More specifically, embodiments of the invention provide compositions and methods useful for the treatment of PH-HFpEF employing the use of levosimendan.
Use of C-type natriuretic peptide variants to treat osteoarthritis
The disclosure relates to the use of variants of C-type natriuretic peptide (CNP) to treat osteoarthritis, to ameliorate one or more symptoms of osteoarthritis, and to treat disorders having an osteoarthritis component.
USE OF C-TYPE NATRIURETIC PEPTIDE VARIANTS TO TREAT OSTEOARTHRITIS
The disclosure relates to the use of variants of C-type natriuretic peptide (CNP) to treat osteoarthritis, to ameliorate one or more symptoms of osteoarthritis, and to treat disorders having an osteoarthritis component.
USE OF NATRIURETIC PEPTIDES TO ASSESS AND TREAT ACUTE KIDNEY INJURY
This document provides methods and materials related to using natriuretic peptides (NPs) as markers for acute kidney injury (AKI), and methods and materials for using NPs to treat patients identified as having, or being likely to have, AKI.
17beta-heterocyclyl-digitalis like compounds for the treatment of heart failure
Disclosed are compounds of formula (I), wherein X, Y, Z are annular atoms comprised in a five-membered carbocyclic or heterocyclic ring, selected from the group consisting of CH, NH, N, O, S; said carbocyclic or heterocyclic ring being optionally substituted with amino (C.sub.1-C.sub.4) linear or branched alkyl or guanidine or guanidino (C.sub.1-C.sub.4) linear or branched alkyl; with the proviso that the heterocycle ring is not furyl; n is 0 or 1; R is H or OH; the dotted line represents an optional double bond C═C; the thick line represents a bond in the β configuration; the wavy line represents a bond both in the α and β configuration; their enantiomeric and/or diastereomeric mixtures, their pharmaceutically acceptable salts, their solvates, hydrates; their metabolite and metabolic precursors. The compounds of formula (I) are for use as medicaments, in particular for the treatment of acute or chronic heart failure. Oral administration is also possible.
Stable Therapeutic Formulations
Compositions of and methods for formulating and delivering biologically active agent formulations having enhanced physical stability, and wherein deterioration from the presence of oxygen and/or water is minimized and/or controlled, to yield a stable formulation. The compositions of and methods for formulating and delivering biologically active agents of the present invention further facilitate their incorporation into a biocompatible coating which can be employed to coat a stratum-corneum piercing microprojection, or a plurality of stratum-corneum piercing microprojections of a delivery device, for delivery of the biocompatible coating through the skin of a subject, thus providing an effective means of delivering the biologically active agents.