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Involvement of nitric oxide and cyclooxygenase products in photoactivation-induced microvascular occlusion

R A Lindberg1, D W Slaaf, A B Lentsch

  • 1Department of Physiology and Biophysics, University of Louisville, Kentucky 40292.

Insights

Photoactivation of intravascular dyes triggers microvascular effects. Nitric oxide and prostaglandins modulate thrombus formation and vasoconstriction, influencing tumor treatment outcomes.

Area of Science:

  • Vascular Biology
  • Photodynamic Therapy
  • Microcirculation Research

Background:

  • Photoactivation of intravascular dyes is a clinical tumor treatment.
  • This process causes arteriolar constriction and microvascular stasis.
  • The role of endothelial prostaglandins and nitric oxide in these effects is unclear.

Purpose of the Study:

  • To investigate the involvement of endothelial nitric oxide and prostaglandins in microvascular responses to photoactivation.
  • To quantify thrombus formation and vasoconstriction in arterioles and venules during photoactivation.

Main Methods:

  • Utilized in vivo microscopy to observe cremaster muscle microvasculature in Sprague-Dawley rats.
  • Quantitated arteriolar and venular diameter changes and thrombus formation during intravascular dye photoactivation.
  • Administered cyclooxygenase and nitric oxide synthase inhibitors to assess their effects.

Main Results:

  • Photoactivation induced dose-dependent thrombus growth and arteriolar constriction.
  • Inhibition of nitric oxide synthase (L-NAME) augmented thrombus growth and constriction.
  • Inhibition of cyclooxygenase (mefenamic acid) enhanced thrombus growth but altered constriction.
  • Thrombocytopenia delayed thrombus growth but not constriction, indicating non-platelet origin of vasoconstrictor prostanoid.

Conclusions:

  • Endothelial nitric oxide release inhibits photoactivation-induced thrombus development and arteriolar constriction.
  • Cyclooxygenase products modulate thrombus growth and induce vasoconstriction.
  • The vasoconstrictor prostanoid involved in photoactivation is not of platelet origin.

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