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Relaxin: New Pathophysiological Aspects and Pharmacological Perspectives for an Old Protein
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AbstractHuman relaxin‐2 (hereafter simply defined as “relaxin”) is a 6‐kDa peptidic hormone best known for the physiological role played during pregnancy in the growth and differentiation of the reproductive tract and in the renal and systemic hemodynamic changes. This factor can also be involved in the pathophysiology of arterial hypertension and heart failure, in the molecular pathways of fibrosis and cancer, and in angiogenesis and bone remodeling. It belongs to the relaxin peptide family, whose members comprehensively exert numerous effects through interaction with different types of receptors, classified as relaxin family peptide (RXFP) receptors (RXFP1, RXFP2, RXFP3, RXFP4). Research looks toward the in‐depth examination and complete understanding of relaxin in its various pleiotropic actions. The intent is to evaluate the likelihood of employing this substance for therapeutic purposes, for instance in diseases where a deficit could be part of the underlying pathophysiological mechanisms, also avoiding any adverse effect. Relaxin is already being considered as a promising drug, especially in acute heart failure. A careful study of the different RXFPs and their receptors and the comprehension of all biological activities of these hormones will probably provide new drugs with a potential wide range of therapeutic applications in the near future.
Title: Relaxin: New Pathophysiological Aspects and Pharmacological Perspectives for an Old Protein
Description:
AbstractHuman relaxin‐2 (hereafter simply defined as “relaxin”) is a 6‐kDa peptidic hormone best known for the physiological role played during pregnancy in the growth and differentiation of the reproductive tract and in the renal and systemic hemodynamic changes.
This factor can also be involved in the pathophysiology of arterial hypertension and heart failure, in the molecular pathways of fibrosis and cancer, and in angiogenesis and bone remodeling.
It belongs to the relaxin peptide family, whose members comprehensively exert numerous effects through interaction with different types of receptors, classified as relaxin family peptide (RXFP) receptors (RXFP1, RXFP2, RXFP3, RXFP4).
Research looks toward the in‐depth examination and complete understanding of relaxin in its various pleiotropic actions.
The intent is to evaluate the likelihood of employing this substance for therapeutic purposes, for instance in diseases where a deficit could be part of the underlying pathophysiological mechanisms, also avoiding any adverse effect.
Relaxin is already being considered as a promising drug, especially in acute heart failure.
A careful study of the different RXFPs and their receptors and the comprehension of all biological activities of these hormones will probably provide new drugs with a potential wide range of therapeutic applications in the near future.
Related Results
P-410 A modified artificial cycle-frozen embryo transfer(mAC-FET) protocol with evidence of corpus luteum(CL) formation as determined by serum relaxin-2 in early pregnancy :a prospective proof-of-concept study
P-410 A modified artificial cycle-frozen embryo transfer(mAC-FET) protocol with evidence of corpus luteum(CL) formation as determined by serum relaxin-2 in early pregnancy :a prospective proof-of-concept study
Abstract
Study question
Can a mAC-FET protocol for endometrial preparation in ovulatory patients lead to formation of a CL as ev...
Abstract 12890: Relaxin Reverses Profibrotic and Inflammatory Atrial Remodeling in a Human Tachyarrhythmia Model
Abstract 12890: Relaxin Reverses Profibrotic and Inflammatory Atrial Remodeling in a Human Tachyarrhythmia Model
Introduction:
Atrial fibrosis is a critical substrate in the initiation and maintenance of atrial fibrillation (AF). Deposition of atrial collagen has been well documen...
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see
Rapid Communications in Mass Spectrometry
2012,
26
, ...
Association of Relaxin-1 Levels with Mortality in Sepsis and Septic Shock
Association of Relaxin-1 Levels with Mortality in Sepsis and Septic Shock
Background/Objectives: Hemodynamic disturbances in sepsis and septic shock arise from the vasoactive effects of inflammatory mediators involved in the immune response. Relaxin-1 is...
Relaxin regulates vascular wall remodeling and passive mechanical properties in mice
Relaxin regulates vascular wall remodeling and passive mechanical properties in mice
Administration of recombinant human relaxin (rhRLX) to conscious rats increases global arterial compliance, and small renal arteries (SRA) isolated from these rats demonstrate incr...
Novel drug development opportunity for relaxin in acute myocardial infarction: evidences from a swine model
Novel drug development opportunity for relaxin in acute myocardial infarction: evidences from a swine model
ABSTRACTThe hormone relaxin has been shown to cause coronary vasodilation and to prevent ischemia/reperfusion‐induced cardiac injury in rodents. This study provides evidence that r...
Comparative Genomic Characterization of Relaxin Peptide Family in Cattle and Buffalo
Comparative Genomic Characterization of Relaxin Peptide Family in Cattle and Buffalo
Relaxin family peptides significantly regulate reproduction, nutrient metabolism, and immune response in mammals. The present study aimed to identify and characterize the relaxin f...
Antifibrotic Properties of Relaxin: In Vivo Mechanism of Action in Experimental Renal Tubulointerstitial Fibrosis
Antifibrotic Properties of Relaxin: In Vivo Mechanism of Action in Experimental Renal Tubulointerstitial Fibrosis
This study examined the efficacy and in vivo mechanism of action of the antifibrotic hormone, relaxin, in a mouse model of unilateral ureteric obstruction (UUO). Kidney fibrosis wa...

