International journal of molecular sciences

Stress-Related NF-κB Signaling in Sudden Kidney Damage: Connecting Inflammation, Cell Recycling, and Cell Death

Updated

Abstract

Essence

This review frames NF-κB as a stress-linked hub connecting inflammation, , mitochondrial dysfunction, and apoptosis in .

Evidence

Review summarizes AKI evidence across ischemia-reperfusion, sepsis, nephrotoxins, ROS, DAMPs, TLR4/NF-κB signaling, NLRP3 activation, LC3B, and Beclin-1.

Caveat

It synthesizes mechanisms and future directions rather than presenting new AKI outcome data or testing an NF-κB-targeted therapy.

Simplified

Key numbers

13.3 million
Global Impact
Estimated number of individuals with globally.
2 million
Mortality Rate
Estimated annual mortality associated with .

Full Text

What this is

  • This review examines the role of (NF-κB) in ().
  • It discusses how NF-κB signaling is linked to inflammation, , and apoptosis, which are critical processes in pathophysiology.
  • The review also highlights potential therapeutic targets for modulating NF-κB signaling to improve outcomes.

Essence

  • NF-κB signaling is pivotal in regulating inflammation, , and apoptosis during (). Its activation can lead to both protective and damaging effects, making it a potential therapeutic target.

Key takeaways

  • NF-κB signaling is activated by various stimuli during , including ischemia-reperfusion and nephrotoxins. This activation can lead to inflammation and kidney damage.
  • , regulated by NF-κB, plays a dual role in ; early activation promotes cell survival, while prolonged activation can contribute to cell death and renal injury.
  • Targeting NF-κB pathways may provide therapeutic benefits in by mitigating inflammation and promoting renal recovery.

Caveats

  • The review primarily discusses existing literature and does not present new empirical data. Thus, the conclusions are based on previously published studies.
  • The complex nature of NF-κB signaling means that therapeutic targeting could have unintended consequences, necessitating careful evaluation in clinical settings.

Definitions

  • Acute Kidney Injury (AKI): A sudden loss of renal function characterized by elevated serum levels of waste products.
  • Nuclear factor-κB (NF-κB): A protein complex that regulates gene expression related to inflammation, immune response, and cell survival.
  • Autophagy: A cellular process that degrades and recycles damaged organelles and proteins to maintain cellular homeostasis.

Simplified

Funding

Competing interests

0 of 1
author reports competing interests
1 reports none
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