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Fungal beta-glucan interacts with vitronectin and stimulates tumor necrosis factor alpha release from macrophages

E J Olson1, J E Standing, N Griego-Harper

  • 1Department of Medicine, Mayo Clinic, Rochester, Minnesota 55905, USA.

Infection and Immunity
|September 1, 1996
PubMed

Insights

Fungal beta-glucans modulate tumor necrosis factor alpha (TNF-alpha) release from macrophages. The glycoprotein vitronectin binds beta-glucans, enhancing this immune response.

Area of Science:

  • Immunology
  • Biochemistry
  • Mycology

Background:

  • Beta-glucans are key fungal cell wall components.
  • Fungi interact with macrophages via beta-glucan receptors, triggering tumor necrosis factor alpha (TNF-alpha) release.
  • Vitronectin, a host glycoprotein, enhances fungal recognition by macrophages.

Purpose of the Study:

  • To investigate the direct effect of fungal beta-glucans on macrophage TNF-alpha release.
  • To determine if vitronectin binds to fungal beta-glucans.
  • To examine how vitronectin binding influences macrophage TNF-alpha production in response to beta-glucans.

Main Methods:

  • Assessed TNF-alpha release from alveolar macrophages stimulated with varying concentrations of fungal beta-glucan.
  • Investigated the interaction between radiolabeled vitronectin and particulate fungal beta-glucan.
  • Measured the effect of vitronectin-treated beta-glucan on macrophage TNF-alpha release.

Main Results:

  • Moderate beta-glucan concentrations (100-200 µg/ml) maximized TNF-alpha release.
  • High beta-glucan concentrations (≥500 µg/ml) suppressed measured TNF-alpha activity by binding to soluble TNF-alpha.
  • Vitronectin specifically bound to fungal beta-glucan in a dose-dependent manner.
  • Vitronectin treatment significantly augmented macrophage TNF-alpha release induced by beta-glucan.

Conclusions:

  • Fungal beta-glucan directly modulates TNF-alpha release from macrophages.
  • High beta-glucan concentrations can inhibit TNF-alpha measurement through direct binding.
  • Vitronectin specifically binds fungal beta-glucans and enhances macrophage cytokine release, suggesting a role in immune recognition of fungi.

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