Sigma-1 Receptor Signaling: In Search of New Therapeutic Alternatives for Cardiovascular and Renal Diseases
Сигналинг рецептора сигма-1: в поисках новых терапевтических альтернатив для лечения сердечно-сосудистых и почечных заболеваний
2023-01-19
SCID: 54.1/u6xfwqq7
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Sigma-1 receptoracute kidney injurycardioprotectioncardiovascular diseasesrenal diseases
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Abstract (AI)
Cardiovascular and renal diseases are among the leading causes of death worldwide, and regardless of current efforts, there is a demanding need for therapeutic alternatives to reduce their progression to advanced stages. The stress caused by diseases leads to the activation of protective mechanisms in the cell, including chaperone proteins. The Sigma-1 receptor (Sig-1R) is a ligand-operated chaperone protein that modulates signal transduction during cellular stress processes. Sig-1R interacts with various ligands and proteins to elicit distinct cellular responses, thus, making it a potential target for pharmacological modulation. Furthermore, Sig-1R ligands activate signaling pathways that promote cardioprotection, ameliorate ischemic injury, and drive myofibroblast activation and fibrosis. The role of Sig-1R in diseases has also made it a point of interest in developing clinical trials for pain, neurodegeneration, ischemic stroke, depression in patients with heart failure, and COVID-19. Sig-1R ligands in preclinical models have significantly beneficial effects associated with improved cardiac function, ventricular remodeling, hypertrophy reduction, and, in the kidney, reduced ischemic damage. These basic discoveries could inform clinical trials for heart failure (HF), myocardial hypertrophy, acute kidney injury (AKI), and chronic kidney disease (CKD). Here, we review Sig-1R signaling pathways and the evidence of Sig-1R modulation in preclinical cardiac and renal injury models to support the potential therapeutic use of Sig-1R agonists and antagonists in these diseases.
Key Findings
1
Preclinical studies report improved cardiac function, reduced ventricular remodeling and hypertrophy, and decreased renal ischemic damage following Sigma-1 receptor modulation.
2
Sigma-1 receptor ligands activate pathways associated with cardioprotection, reduced ischemic injury, and regulation of myofibroblast activation and fibrosis.
3
Sigma-1 receptor signaling has already attracted clinical-trial interest in pain, neurodegeneration, ischemic stroke, depression associated with heart failure, and COVID-19.
4
The Sigma-1 receptor is a ligand-operated chaperone that modulates signal transduction during cellular stress and represents a potential therapeutic target.
5
The findings support investigating Sigma-1 receptor agonists and antagonists in clinical trials for heart failure, myocardial hypertrophy, acute kidney injury, and chronic kidney disease.
Research Object
Sigma-1 receptor signaling in preclinical cardiovascular and renal disease models
Research Subject
The therapeutic effects and signaling mechanisms of Sigma-1 receptor modulation, including cardioprotection, reduction of ischemic injury, hypertrophy and ventricular remodeling, and mitigation of renal damage and fibrosis
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2023-01-19
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