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Pyroptosis-induced tissue damage in kidney disease
Zhiyuan Zhang1, Xiaodi Li1, Yang Han2
1Tianjin University of Traditional Chinese Medicine, Tianjin, China.
Abstract:
Pyroptosis is a form of programmed cell death that differs mechanistically from apoptosis and is characterized by a robust inflammatory response. It is primarily mediated by proteins of the gasdermin family, which form pores in the cell membrane, leading to osmotic cell lysis and the release of pro-inflammatory cytokines. As a process triggered by various pathological stimuli like infection, inflammation, and oxidative stress, pyroptosis contributes to a range of diseases, including autoimmune disorders and cancer. Evidence indicates that pyroptosis, a crucial innate immune component, promotes host defense by facilitating immune cell recruitment and tissue repair. However, dysregulated pyroptosis is a key driver of pathology, contributing to chronic inflammation, fibrosis, and tissue damage in a range of conditions such as kidney, cardiovascular, and metabolic disorders. More evidence suggests that pyroptosis may dominate the process of irreversible damage to renal tissue and may accelerate the time for patients to enter end-stage renal disease. At present, when diagnosing kidney diseases and performing kidney biopsy, more attention is paid to the extent of kidney tissue damage, which is strongly related to the prognosis of patients. Given that many kidney diseases, especially acute kidney injury, involve inflammatory responses, targeting dysregulated pyroptosis presents a potential strategy for alleviating irreversible renal damage. This review will provide a detailed description of the signaling pathways of pyroptosis, with a focus on the mechanisms of pyroptosis-induced renal tissue damage and new advances in treatment.
Insights
Pyroptosis, a programmed cell death, drives kidney damage and end-stage renal disease by causing inflammation. Targeting pyroptosis offers a potential strategy to reduce irreversible renal injury and improve patient prognosis.
Area of Science:
- Cell Biology
- Immunology
- Pathology
Background:
- Pyroptosis is a pro-inflammatory programmed cell death pathway mediated by gasdermin proteins.
- It plays a dual role in host defense and disease pathogenesis, including autoimmune disorders and cancer.
- Dysregulated pyroptosis contributes to chronic inflammation and tissue damage in kidney, cardiovascular, and metabolic disorders.
Purpose of the Study:
- To detail pyroptosis signaling pathways.
- To focus on mechanisms of pyroptosis-induced renal tissue damage.
- To review new therapeutic advances targeting pyroptosis in kidney disease.
Main Methods:
- Literature review of pyroptosis mechanisms and renal pathology.
- Analysis of signaling pathways involved in pyroptosis.
- Synthesis of current research on pyroptosis-targeted therapies for kidney diseases.
Main Results:
- Pyroptosis is implicated in irreversible renal tissue damage and progression to end-stage renal disease.
- Inflammatory responses in kidney diseases, particularly acute kidney injury, are linked to pyroptosis.
- Targeting pyroptosis presents a promising therapeutic avenue for mitigating renal damage.
Conclusions:
- Pyroptosis is a critical factor in kidney disease progression and prognosis.
- Understanding pyroptosis pathways is essential for developing effective treatments.
- Targeting pyroptosis holds potential for alleviating irreversible renal damage and improving outcomes in kidney disease patients.
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