Study summary · research use only
SS-31, a Mitochondria-Targeting Peptide, Ameliorates Kidney Disease
Plain-language summary
Paraphrased from the published abstract below — not a verdict on whether anything works.
This review discusses SS-31, a mitochondria-targeting peptide, in relation to renal disease. The abstract describes mitochondrial dysfunction as associated with development and progression of renal diseases, and surveys mitochondria-targeting compounds including nicotinamide mononucleotide, MitoQ, coenzyme Q10, and cyclosporin A, noting limitations in clinical use of traditional agents. It reports SS-31 has been studied for decreasing mitochondrial reactive oxygen species production and reducing mitochondrial depolarization, permeability transition pore formation, and Ca2+-induced mitochondrial swelling, without affecting normal mitochondria in the cited research. The authors state few studies have evaluated SS-31 in renal disease, and the review discusses its pharmacokinetics and reported effects in animal and cell models and clinical evidence. Species not specified.
Abstract
Mitochondria are essential for eukaryotic cell activity and function, and their dysfunction is associated with the development and progression of renal diseases. In recent years, there has been a rapid development in mitochondria-targeting pharmacological strategies as mitochondrial biogenesis, morphology, and function, as well as dynamic changes in mitochondria, have been studied in disease states. Mitochondria-targeting drugs include nicotinamide mononucleotide, which supplements the NAD+ pool; mitochondria-targeted protective compounds, such as MitoQ; the antioxidant coenzyme, Q10; and cyclosporin A, an inhibitor of the mitochondrial permeability transition pore. However, traditional drugs targeting mitochondria have limited clinical applications due to their inability to be effectively absorbed by mitochondria in vivo and their high toxicity. Recently, SS-31, a mitochondria-targeting antioxidant, has received significant research attention as it decreases mitochondrial reactive oxygen species production and prevents mitochondrial depolarization, mitochondrial permeability transition pore formation, and Ca2+-induced mitochondrial swelling, and has no effects on normal mitochondria. At present, few studies have evaluated the effects of SS-31 against renal diseases, and the mechanism underlying its action is unclear. In this review, we first discuss the pharmacokinetics of SS-31 and the possible mechanisms underlying its protective effects against renal diseases. Then, we analyze its renal disease-improving effects in various experimental models, including animal and cell models, and summarize the clinical evidence of its benefits in renal disease treatment. Finally, the potential mechanism underlying the action of SS-31 against renal diseases is explored to lay a foundation for future preclinical studies and for the evaluation of its clinical applications.
pepmg summarizes the peer-reviewed literature and links to every source — it sells nothing, ships nothing, and gives no medical, dosing, or human-use guidance. Don't just trust this summary: follow the citation to its source and read it yourself. Research use only.