Abbonarsi

SS-31@Fer-1 Alleviates ferroptosis in hypoxia/reoxygenation cardiomyocytes via mitochondrial targeting - 05/02/25

Doi : 10.1016/j.biopha.2025.117832 
Hao Zheng a, b, 1, Jinbo Ou c, 1, Hui Han b, d, 1, Qizheng Lu b, e, Yunli Shen b, ⁎
a Department of Critical Care Medicine, Zhongda Hospital, School of Medicine, Southeast University, No.87, Dingjiaqiao, Gulou District, Nanjing 210009, China 
b Department of Cardiology, Shanghai East Hospital, Tongji University School of Medicine, Shanghai 200120, China 
c Departments of Cardiology, Fudan University Zhongshan Hospital, Qingpu Branch, 1158 Park East Road, Shanghai 60518120, China 
d Department of Pathology, Zhejiang University School of Medicine, Hangzhou 310058, China 
e Guangdong Second Provincial General Hospital, No. 466 Xingang Middle Road, Haizhu district, Guangzhou 510317, China 

⁎ Corresponding author.

Abstract

Purpose

Targeting mitochondrial ferroptosis presents a promising strategy for mitigating myocardial ischemia-reperfusion (I/R) injury. This study aims to evaluate the efficacy of the mitochondrial-targeted ferroptosis inhibitor SS-31@Fer-1 (elamipretide@ferrostatin1) in reducing myocardial I/R injury.

Methods

SS-31@Fer-1 was synthesized and applied to H9C2 cells subjected to hypoxia/reoxygenation (H/R) to assess its protective effects. Cytotoxicity was evaluated using a cell counting kit-8 (CCK-8) assay, with lactate dehydrogenase (LDH) and creatine kinase isoenzyme (CK-MB) levels measured. Mitochondrial reactive oxygen species (ROS) and mitochondrial membrane potential (MMP) were assessed using Mito-SOX and JC-1 fluorescent dyes, respectively. Lipid peroxidation products, malondialdehyde (MDA) and glutathione (GSH), were quantified. Mitochondrial structure, mt-cytochrome b (mt-Cytb), and mt-ATP synthase membrane subunit 6 (mt-ATP6) were analyzed. Additionally, iron homeostasis and ferroptosis markers were evaluated.

Results

SS-31@Fer-1 significantly improved H/R-induced cardiomyocyte viability and reduced LDH and CK-MB levels. Compared to the Fer-1 group, SS-31@Fer-1 reduced GSH and increased MDA levels, enhancing mitochondrial integrity and function. Notably, it increased mitochondrial ROS and decreased MMP, indicating a mitigation of H/R-induced cardiomyocyte cytotoxicity. Furthermore, SS-31@Fer-1 maintained cellular iron homeostasis, as evidenced by increased expression of FTH, FTMT, FPN, and ABCB8. Elevated levels of GPX4 and Nrf2 were observed, while ACSL4 and PTGS2 levels were reduced in the SS-31@Fer-1 group.

Conclusions

SS-31@Fer-1 effectively suppressed ferroptosis in H/R-induced cardiomyocytes by maintaining cellular iron homeostasis, improving mitochondrial function, and inhibiting oxidative stress. These findings provide novel insights and opportunities for alleviating myocardial I/R injury.

Il testo completo di questo articolo è disponibile in PDF.

Graphical Abstract




Il testo completo di questo articolo è disponibile in PDF.

Highlights

•
SS-31@Fer-1 efficiently delivers Fer-1 to mitochondria, effectively mitigating ferroptosis in H/R-induced cardiomyocytes, thereby reducing cell death and damage.
•
SS-31@Fer-1 attenuates mitochondrial atrophy, restores mitochondrial integrity, and promotes cardiomyocyte survival under ischemia/reperfusion injury conditions.
•
SS-31@Fer-1 preserves cellular iron balance by regulating ferroptosis-related pathways, providing a promising therapeutic approach for alleviating myocardial ischemia/reperfusion injury.

Il testo completo di questo articolo è disponibile in PDF.

Keywords : Ferroptosis, SS-31, Oxidative stress, Cardiomyocytes, Hypoxia/reoxygenation


Mappa


© 2025  Pubblicato da Elsevier Masson SAS.
Aggiungere alla mia biblioteca Togliere dalla mia biblioteca Stampare
Esportazione

    Citazioni Export

  • File

  • Contenuto

Vol 183

Articolo 117832- febbraio 2025 Ritorno al numero
Articolo precedente Articolo precedente
  • Oxaliplatin reversibly and differentially affects electrogenic activity of small IB4(+) of male and female rat sensory neurons
  • Eva Villalba-Riquelme, Roberto de la Torre-Martínez, Asia Fernández-Carvajal, Antonio Ferrer-Montiel
| Articolo seguente Articolo seguente
  • Inula japonica Thunb. and its active compounds ameliorate airway inflammation by suppressing JAK-STAT signaling
  • Myung-A Jung, Joo Young Lee, Yu Jin Kim, Kon-Young Ji, Mi Han Le, Dong Ho Jung, Yun Hee Kim, Wook Jin Kim, Byeong Cheol Moon, Bu-Yeo Kim, Taesoo Kim

Benvenuto su EM|consulte, il riferimento dei professionisti della salute.
L'accesso al testo integrale di questo articolo richiede un abbonamento.

Già abbonato a @@106933@@ rivista ?

@@150455@@ Voir plus

Il mio account


Dichiarazione CNIL

EM-CONSULTE.COM è registrato presso la CNIL, dichiarazione n. 1286925.

Ai sensi della legge n. 78-17 del 6 gennaio 1978 sull'informatica, sui file e sulle libertà, Lei puo' esercitare i diritti di opposizione (art.26 della legge), di accesso (art.34 a 38 Legge), e di rettifica (art.36 della legge) per i dati che La riguardano. Lei puo' cosi chiedere che siano rettificati, compeltati, chiariti, aggiornati o cancellati i suoi dati personali inesati, incompleti, equivoci, obsoleti o la cui raccolta o di uso o di conservazione sono vietati.
Le informazioni relative ai visitatori del nostro sito, compresa la loro identità, sono confidenziali.
Il responsabile del sito si impegna sull'onore a rispettare le condizioni legali di confidenzialità applicabili in Francia e a non divulgare tali informazioni a terzi.


Tutto il contenuto di questo sito: Copyright © 2026 Elsevier, i suoi licenziatari e contributori. Tutti i diritti sono riservati. Inclusi diritti per estrazione di testo e di dati, addestramento dell’intelligenza artificiale, e tecnologie simili. Per tutto il contenuto ‘open access’ sono applicati i termini della licenza Creative Commons.