Menu
Peptide Database
Results
No peptides found
Featured

Use search to browse all 100+ peptides

ARA 290

Cibinetide, PHBSP, PH-BSP, Helix B surface peptide

Quick Stats
Studies 51
Trials 5
Score 3
2023 pubmed 4 citations

A small erythropoietin derived non-hematopoietic peptide reduces cardiac inflammation, attenuates age associated declines in heart function and prolongs healthspan.

Winicki. Nolan M NM; Nanavati. Alay P AP; Morrell. Christopher H CH; Moen. Jack M JM; Axsom. Jessie E JE; Krawczyk. Melissa M; Petrashevskaya. Natalia N NN; Beyman. Max G MG; Ramirez. Christopher C; Alfaras. Irene I; Mitchell. Sarah J SJ; Juhaszova. Magdalena M; Riordon. Daniel R DR; Wang. Mingyi M; Zhang. Jing J; Cerami. Anthony A; Brines. Michael M; Sollott. Steven J SJ; de Cabo. Rafael R; Lakatta. Edward G EG

Key Findings

  • Chronic ARA290 treatment reduced cardiac immune cell infiltration, pro‑inflammatory cytokines, and NF‑κB activation.
  • The peptide enhanced cardiomyocyte autophagy, reduced lipofuscin buildup, and made mitochondria more resistant to oxidative stress.
  • ARA290 preserved left‑ventricular ejection fraction, blunted age‑related blood pressure rise, maintained body weight, and lowered frailty scores, extending healthspan in rats.

Practical Outcomes

  • ARA290 appears to be a promising anti‑inflammatory, cardioprotective peptide for longevity, but the evidence is limited to rodent models. Human dosing, safety, and regulatory approval are not established, so any use would be experimental. Biohackers should await clinical trials before incorporating it into protocols, and if considered, monitor heart function and inflammatory markers closely.

Summary

In an aging rat study, long‑term daily dosing of the peptide ARA290 (cibinetide) lowered heart inflammation, kept the heart's pumping ability strong, reduced blood pressure, maintained body weight, and lowered overall frailty, suggesting it may help protect the cardiovascular system and extend a healthy lifespan.

Abstract

Aging is associated with increased levels of reactive oxygen species and inflammation that disrupt proteostasis and mitochondrial function and leads to organism-wide frailty later in life. ARA290 (cibinetide), an 11-aa non-hematopoietic peptide sequence within the cardioprotective domain of erythropoietin, mediates tissue protection by reducing inflammation and fibrosis. Age-associated cardiac inflammation is linked to structural and functional changes in the heart, including mitochondrial dysfunction, impaired proteostasis, hypertrophic cardiac remodeling, and contractile dysfunction. Can ARA290 ameliorate these age-associated cardiac changes and the severity of frailty in advanced age? We conducted an integrated longitudinal (<i>n</i> = 48) and cross-sectional (<i>n</i> = 144) 15 months randomized controlled trial in which 18-month-old Fischer 344 x Brown Norway rats were randomly assigned to either receive chronic ARA290 treatment or saline. Serial echocardiography, tail blood pressure and body weight were evaluated repeatedly at 4-month intervals. A frailty index was calculated at the final timepoint (33 months of age). Tissues were harvested at 4-month intervals to define inflammatory markers and left ventricular tissue remodeling. Mitochondrial and myocardial cell health was assessed in isolated left ventricular myocytes. Kaplan-Meier survival curves were established. Mixed ANOVA tests and linear mixed regression analysis were employed to determine the effects of age, treatment, and age-treatment interactions. Chronic ARA290 treatment mitigated age-related increases in the cardiac non-myocyte to myocyte ratio, infiltrating leukocytes and monocytes, pro-inflammatory cytokines, total NF-&#x3ba;B, and p-NF-&#x3ba;B. Additionally, ARA290 treatment enhanced cardiomyocyte autophagy flux and reduced cellular accumulation of lipofuscin. The cardiomyocyte mitochondrial permeability transition pore response to oxidant stress was desensitized following chronic ARA290 treatment. Concurrently, ARA290 significantly blunted the age-associated elevation in blood pressure and preserved the LV ejection fraction. Finally, ARA290 preserved body weight and significantly reduced other markers of organism-wide frailty at the end of life. Administration of ARA290 reduces cell and tissue inflammation, mitigates structural and functional changes within the cardiovascular system leading to amelioration of frailty and preserved healthspan.

Study Information

Provider

pubmed

Year

2023

Date

2023-01-18T00:00:00.000Z

DOI

10.3389/fcvm.2022.1096887

Citations

4

References

62