Clusterin Neutralizes the Inflammatory and Cytotoxic Properties of Extracellular Histones in Sepsis

Jean-François Augusto1,2, Céline Beauvillain3,4, Caroline Poli3,4

  • 1Univ Angers, Nantes Université, INSERM, CNRS, CRCI2ICAT, Angers, France.

Insights

Clusterin (CLU) neutralizes harmful extracellular histones, reducing inflammation and cell death. CLU supplementation may improve survival in sepsis and other conditions with extensive cell death.

Area of Science:

  • Biochemistry
  • Immunology
  • Pathophysiology

Background:

  • Extracellular histones released during cell death exacerbate inflammation and mortality, particularly in sepsis.
  • Clusterin (CLU), an extracellular chaperone protein, plays a role in protein homeostasis and clearance.

Purpose of the Study:

  • To investigate the protective role of Clusterin (CLU) against the detrimental effects of extracellular histones.

Main Methods:

  • Assessed CLU and histone expression in sepsis patients.
  • Evaluated CLU's protective effects against histones in vitro and in vivo sepsis models.

Main Results:

  • CLU binds to circulating histones, mitigating their inflammatory, thrombotic, and cytotoxic impacts.
  • Decreased plasma CLU levels in sepsis patients correlated with disease severity and survival outcomes.
  • CLU deficiency increased mortality in experimental sepsis models, while CLU supplementation improved survival.

Conclusions:

  • Clusterin (CLU) acts as an endogenous molecule that neutralizes extracellular histones.
  • CLU supplementation presents a potential therapeutic strategy to enhance disease tolerance and survival in conditions characterized by extensive cell death, such as sepsis.

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