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Updated: Jun 16, 2026

Live-cell Video Microscopy of Fungal Pathogen Phagocytosis
Published on: January 9, 2013
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.
Abstract:
Central nervous system (CNS) microglia (MG) and peripheral tissue macrophages (MO) remove pathogens by phagocytosis. Zymosan, a model yeast pathogen, is a beta-glucan rich particle that readily activates the complement system and then becomes C3bi-opsonized (op). Complement receptor-3 (CR3) has initially been implicated in mediating the phagocytosis of both C3bi-op and non-opsonized (nop) zymosan by MO through C3bi and beta-glucan binding sites, respectively. Later, the role of CR3 as a phagocytic beta-glucan receptor has been questioned and the supremacy of beta-glucan receptor Dectin-1 advocated. We compare here between primary mouse CNS MG and peripheral tissue MO with respect to CR3 and Dectin-1 mediated phagocytosis of C3bi-op and nop zymosan. We report that MG and MO display similar as well as dissimilar functional properties in this respect. Although CR3 and Dectin-1 function both as beta-glucan/non-opsonic receptors in MG during nop zymosan phagocytosis, Dectin-1, but not CR3, does so in MO. CR3 functions also as a C3bi/opsonic receptor in MG and MO during C3bi-op zymosan phagocytosis, leading to phagocytosis which is more efficient than that of nop zymosan. Dectin-1 contributes, albeit less than CR3, to phagocytosis of C3bi-op zymosan in MG and further less in MO, suggesting that C3bi-opsonization does not block all beta-glucan sites on zymosan from binding Dectin-1 on phagocytes. Thus, altogether CR3 and Dectin-1 contribute both to phagocytosis of nop and C3bi-op zymosan in MG, whereas MO switch from CR3-independent/Dectin-1-dependent phagocytosis of nop zymosan to phagocytosis of C3bi-op zymosan where CR3 dominates over Dectin-1.
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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