Dissimilar and similar functional properties of complement receptor-3 in microglia and macrophages in combating yeast

Smadar Hadas1, Fanny Reichert, Shlomo Rotshenker

  • 1Department of Medical Neurobiology, IMRIC, Hebrew University Hadassah Medical School and the Eric Roland Center for Neurodegenerative Diseases, Jerusalem, Israel.

Glia
|January 22, 2010
PubMed

Insights

Central nervous system microglia and peripheral macrophages differ in how they engulf pathogens. Complement receptor-3 (CR3) and Dectin-1 play distinct roles in phagocytosis depending on whether zymosan particles are opsonized.

Area of Science:

  • Immunology
  • Cell Biology
  • Neuroscience

Background:

  • Microglia (MG) in the central nervous system and macrophages (MO) in peripheral tissues are key phagocytes.
  • Zymosan, a yeast particle, activates complement and can be opsonized (op) or non-opsonized (nop).
  • Complement receptor-3 (CR3) and Dectin-1 are implicated as receptors in zymosan phagocytosis, with debated roles.

Purpose of the Study:

  • To compare CR3 and Dectin-1 mediated phagocytosis of C3bi-opsonized and non-opsonized zymosan by mouse CNS microglia and peripheral macrophages.
  • To elucidate the distinct and overlapping functions of CR3 and Dectin-1 in these immune cells.

Main Methods:

  • Primary mouse CNS microglia and peripheral tissue macrophages were isolated.
  • Phagocytosis assays were performed using C3bi-opsonized and non-opsonized zymosan particles.
  • The roles of CR3 and Dectin-1 in mediating phagocytosis were investigated.

Main Results:

  • Both microglia and macrophages showed similarities and differences in phagocytic functions.
  • In microglia, CR3 and Dectin-1 both mediated non-opsonized zymosan uptake, while CR3 also acted as an opsonic receptor for C3bi-opsonized zymosan.
  • In macrophages, Dectin-1 mediated non-opsonized zymosan uptake, and CR3 dominated C3bi-opsonized zymosan phagocytosis, with Dectin-1 contributing less.

Conclusions:

  • CR3 and Dectin-1 contribute to both non-opsonized and C3bi-opsonized zymosan phagocytosis in microglia.
  • Peripheral macrophages exhibit a functional switch, relying on Dectin-1 for non-opsonized zymosan and CR3 for C3bi-opsonized zymosan phagocytosis.

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