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March 5, 2026Journal of the American Society of Nephrology3 citations

Apoptotic Bodies in Kidney Disease

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MCMario CozzolinoUniversity of MilanPCPaola CiceriAOL (United States)

Key Points

  • The study investigates the roles of apoptotic bodies in kidney disease, focusing on their impact on inflammation and tissue repair.
  • Review existing literature on apoptotic bodies in kidney physiology and pathology.
  • Analyze the effects of apoptotic body clearance on inflammation and fibrosis in kidney disease models.
  • Examine the bioactive content of apoptotic bodies and their implications for renal health.
  • Apoptotic bodies influence both inflammation and repair mechanisms in acute and chronic kidney disease.
  • Impaired efferocytosis leads to prolonged inflammation and fibrosis due to the accumulation of apoptotic bodies.
  • Apoptotic bodies carry bioactive substances that drive vascular calcification and kidney fibrosis.

Abstract

Abstract Apoptotic bodies are membrane-bound vesicles generated during the terminal stages of programmed cell death and traditionally viewed as inert cellular debris. Emerging evidence, however, positions apoptotic bodies as dynamic mediators of intercellular communication with critical roles in renal physiology and pathology. In the healthy kidney, efficient efferocytosis of apoptotic bodies maintains tissue homeostasis by ensuring immunologically silent clearance of apoptotic remnants. In acute kidney injury (AKI), extensive tubular epithelial apoptosis generates a high burden of apoptotic bodies that can amplify inflammation, endothelial dysfunction, and adaptive immune activation when clearance is impaired, yet promote resolution and epithelial repair when efficiently removed. In chronic kidney disease (CKD), persistent low-grade apoptosis combined with defective efferocytosis leads to progressive accumulation of apoptotic bodies in the interstitium, where their bioactive cargo—including DAMPs, cytokines, growth factors, and profibrotic microRNAs—drives fibroblast activation, extracellular matrix expansion, and fibrosis. In the vasculature, apoptotic bodies derived from vascular smooth muscle cells act as nucleation sites for calcium-phosphate crystal deposition, linking apoptosis to the development of medial vascular calcification in CKD. Together, these findings highlight apoptotic bodies as active regulators of injury, inflammation, fibrosis, regeneration, and vascular pathology. Understanding the determinants of their pathogenic versus reparative effects could yield new biomarkers and therapeutic strategies, including modulation of efferocytosis, targeting apoptotic body-derived signaling pathways, and engineering apoptotic bodies-based delivery systems.

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Cite This Study

Cozzolino et al. (2026) studied this question.

synapsesocial.com/papers/69a91d8dd6127c7a504c05fehttps://doi.org/10.1681/asn.0000001073
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