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Updated: Jul 4, 2026

Renal Ischaemia Reperfusion Injury: A Mouse Model of Injury and Regeneration
Published on: June 7, 2014
Cross-talk among novel programmed cell death pathways: a decisive network in renal ischemia-reperfusion injury
Yalin Lou1, Jueheng Wu1, Shilei Cheng1,2
1Department of Anesthesiology, the First Affiliated Hospital of Shandong First Medical University & Shandong Provincial Qianfoshan Hospital, Shandong Institute of Anesthesia and Respiratory Critical Medicine, Shandong Provincial Clinical Research Center for Anesthesiology, Jinan, China.
Abstract:
Renal ischemia-reperfusion injury (IRI) is a major pathological driver of acute kidney injury (AKI), for which effective therapeutic strategies remain lacking. Recently, novel forms of programmed cell death (PCD), including pyroptosis, ferroptosis, cuproptosis and necroptosis, have been identified as key mediators of tubular damage and inflammation in renal IRI. This review delineates a hierarchically organized and spatiotemporally regulated PCD network, positioning it as a central determinant of cellular fate following renal IRI. We systematically characterize the distinct molecular signatures of each death modality and critically examine their extensive crosstalk within the pathological renal microenvironment. Synthesizing current evidence, we demonstrate that this network operates in a cell type- and phase-specific manner, driving a vicious cycle of inflammation and oxidative stress. Targeting this interconnected network rather than isolated pathways represents a paradigm shift. We critically assess current therapeutic strategies and their limitations in the context of this network. Finally, we propose a forward-looking roadmap that emphasizes combination therapies guided by spatial transcriptomics, patient stratification using PCD-specific biomarkers and the development of smart nanosystems capable of dynamically modulating key network nodes. Deciphering and therapeutically intervening in this PCD network is pivotal for developing effective treatments for renal IRI.
Insights
Novel programmed cell death (PCD) pathways drive kidney injury after ischemia-reperfusion. Targeting the interconnected PCD network offers a promising therapeutic strategy for acute kidney injury (AKI).
Area of Science:
- Nephrology
- Pathology
- Molecular Biology
Background:
- Renal ischemia-reperfusion injury (IRI) is a primary cause of acute kidney injury (AKI).
- Effective treatments for renal IRI are currently limited.
- Emerging research highlights programmed cell death (PCD) pathways as key contributors to kidney damage in IRI.
Purpose of the Study:
- To review the role of diverse PCD modalities (pyroptosis, ferroptosis, cuproptosis, necroptosis) in renal IRI.
- To elucidate the interconnected network of PCD and its spatiotemporal regulation in the renal microenvironment.
- To propose novel therapeutic strategies targeting the PCD network for renal IRI.
Main Methods:
- Systematic review of current literature on PCD in renal IRI.
- Characterization of molecular signatures of different PCD types.
- Analysis of crosstalk between PCD pathways and the renal microenvironment.
Main Results:
- PCD pathways are central determinants of cellular fate in renal IRI.
- The PCD network exhibits cell type- and phase-specific activity, promoting inflammation and oxidative stress.
- Existing therapies targeting isolated pathways have limitations due to the interconnected nature of PCD.
Conclusions:
- The PCD network is a critical therapeutic target for renal IRI.
- Future strategies should focus on combination therapies, spatial transcriptomics, PCD biomarkers, and advanced nanosystems.
- Intervening in the PCD network is essential for developing effective treatments for AKI caused by IRI.
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Acute Kidney Injury II: Pathophysiology
Cellular Injury IV: Necrosis
Cellular Injury I: Introduction
Acute Kidney Injury I: Introduction
Cellular Injury V: Apoptosis and Autophagy
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