Relaxin

H3 Relaxin Demonstrates Antifibrotic Properties via the RXFP1 Receptor

Biochemistry / Humans / Collagen / Mice / G protein-coupled receptors / Animals / Male / Fibrosis / Rats / Matrix Metalloproteinases / Transforming Growth Factor Beta / Human Fibroblasts / Heart Ventricles / Biochemistry and cell biology / Relaxin / Animals / Male / Fibrosis / Rats / Matrix Metalloproteinases / Transforming Growth Factor Beta / Human Fibroblasts / Heart Ventricles / Biochemistry and cell biology / Relaxin

Serelaxin is a more efficacious antifibrotic than enalapril in an experimental model of heart disease

Treatment Outcome / Enalapril / Hypertension / Mice / Blood Pressure / Renin Angiotensin Aldosterone System / Animals / Male / Heart / Fibrosis / Clinical Sciences / Myocardium / Recombinant Proteins / Relaxin / Heart Diseases / Renin Angiotensin Aldosterone System / Animals / Male / Heart / Fibrosis / Clinical Sciences / Myocardium / Recombinant Proteins / Relaxin / Heart Diseases

Expression of human relaxin genes: characterization of a novel alternatively-spliced human relaxin mRNA species

Gene expression / Biological Sciences / DNA / Molecular and cellular biology / Humans / Placenta / Female / Animals / Male / Polymerase Chain Reaction / Alternative splicing / Prostate / Gene Structure / Molecular cloning / Pan troglodytes / mRNA / Alternative Splicing / Amino Acid Sequence / Base Sequence / Ovary / Corpus Luteum / Relaxin / Placenta / Female / Animals / Male / Polymerase Chain Reaction / Alternative splicing / Prostate / Gene Structure / Molecular cloning / Pan troglodytes / mRNA / Alternative Splicing / Amino Acid Sequence / Base Sequence / Ovary / Corpus Luteum / Relaxin
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