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Targeting AMPK signaling in ischemic/reperfusion injury: From molecular mechanism to pharmacological interventions

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Date

2022

Author

Paskeh, Mahshid Deldar Abad
Asadi, Ava
Mirzaei, Sepideh
Hashemi, Mehrdad
Entezari, Maliheh
Raesi, Rasoul
Hushmandi, Kiavash
Zarrabi, Ali
Ertas, Yavuz Nuri
Aref, Amir Reza
Samarghandian, Saeed
Reiter, Russel J
Ren, Jun

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Citation

Paskeh, M. D. A., Asadi, A., Mirzaei, S., Hashemi, M., Entezari, M., Raesi, R., ... & Ren, J. (2022). Targeting AMPK signaling in ischemic/reperfusion injury: From molecular mechanism to pharmacological interventions. Cellular Signalling, 110323.

Abstract

Ischemia is a pathological process in which blood supply to a particular organ is temporarily interrupted resulting in disturbed biological function and homeostasis of local tissues. Following ischemia, reperfusion and reoxygenation may occur which further worsens oxidative stress-mediated damage in cells and tissues. The combined processes are referred to as ischemia/reperfusion (I/R) injury. Immediate management and treatment of I/R is of utmost importance for preventing irreversible and extensive cellular damage. Apoptosis, inflammation and oxidative stress are the most validated pathologies associated with I/R. AMP-activated protein kinase (AMPK) modulates energy metabolism in cells and its activation occurs in response to elevated AMP and ADP levels. Aberrant levels of AMPK are noted in various pathological settings such as diabetes mellitus, cancer and neurological diseases. This review emphasizes AMPK signaling, its related molecular pathways and therapeutic utility during I/R. Activation of AMPK through phosphorylation prevents apoptosis and reduces oxidative stress and inflammation upon I/R. Inducing AMPK signaling normalizes mitochondrial function to inhibit cell death. Autophagy as a cytoprotective mechanism undergoes activation by AMPK/mTOR and AMPK/ULK1 pathways. AMPK reinforces the antioxidant defense capacity via Nrf2 signaling to counteract oxidative stress in I/R. Protective compounds including phytochemicals activate AMPK to alleviate I/R injury.

Source

Cell Signal

URI

https://doi.org/10.1016/j.cellsig.2022.110323
https://hdl.handle.net/20.500.12713/2621

Collections

  • Biyomedikal Mühendisliği Bölümü Makale Koleksiyonu [64]
  • Cerrahi Tıp Bilimleri Bölümü Makale Koleksiyonu [306]
  • PubMed İndeksli Yayınlar Koleksiyonu [1161]
  • Scopus İndeksli Yayınlar Koleksiyonu [1920]
  • WoS İndeksli Yayınlar Koleksiyonu [2023]



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