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Atherosclerosis is a progressive disorder characterized by the buildup of plaques on the arterial inner wall, causing them to narrow and harden over time. These plaques comprise lipids, calcium, blood components, carbohydrates, and fibrous tissue. The process primarily affects the intima of large and medium-sized arteries, reducing blood flow in any artery.Etiology and risk factorsThe cause of atherosclerosis is multifactorial, involving a complex interplay among endothelial injury, lipid...
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Atherosclerotic Plaque Crystals Induce Endothelial Dysfunction.

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Endogenous crystals like cholesterol crystals (CC) and monosodium urate (MSU) activate endothelial cells, driving inflammation and mitochondrial dysfunction. These crystal-induced signals are key drivers of early atherosclerosis.

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Area of Science:

  • Vascular Biology
  • Immunology
  • Crystallization in Disease

Background:

  • Endothelial dysfunction is a critical early step in atherosclerosis.
  • The specific roles of endogenous crystals, such as cholesterol crystals (CC) and monosodium urate (MSU), in endothelial activation are not fully understood.

Purpose of the Study:

  • To investigate the impact of CC and MSU on endothelial cells.
  • To assess inflammatory signaling, mitochondrial respiration, and neutrophil recruitment in response to crystalline stimuli.

Main Methods:

  • Human umbilical vein endothelial cells were exposed to CC and MSU in dose- and time-controlled experiments.
  • Analysis included inflammatory signaling pathways (NF-κB, STAT3), cytokine profiles, mitochondrial respiration, and neutrophil adhesion assays.

Main Results:

  • CC and MSU were internalized by endothelial cells, activating NF-κB and STAT3 pathways.
  • Crystals induced pro-inflammatory cytokines and impaired mitochondrial respiration, particularly CC.
  • Crystal stimulation and conditioned media promoted endothelial adhesion molecule expression and neutrophil adhesion.

Conclusions:

  • Crystalline stimuli act as potent vascular danger signals, inducing endothelial inflammation and mitochondrial dysfunction.
  • These crystal-induced responses contribute to vascular inflammation and immune cell engagement, hallmarks of early atherogenesis.
  • The study provides mechanistic insights into crystal-driven vascular dysfunction in the early stages of atherosclerosis.