Javascript must be enabled to continue!
In vivo activation of macrophage C3 receptors for phagocytosis.
View through CrossRef
We assessed the effects of exposure to immune complexes in vivo on macrophages' Fc receptor function and C3 receptor function. Peritoneal macrophages from mice injected intraperitoneally with immune complexes were markedly impaired in their ability to phagocytize via their Fc receptors but had acquired the ability to phagocytize via their C3 receptors. In vivo activation of macrophages' C3 receptors for phagocytosis required T lymphocytes, because macrophages from athymic mice could not be activated by injection of immune complexes. The requirement for both T lymphocytes and immune complexes for activation of macrophages' C3 receptors in vivo is identical to the requirements for activation of macrophages' C3 receptors in vitro, suggesting that the mechanisms we have identified for activation of these receptors in vitro are the same mechanisms by which the receptors are activated for phagocytosis in vivo. The susceptibility of macrophages' Fc receptors to blockade by immune complexes and the activation of their C3 receptors for phagocytosis in a milieu containing immune complexes suggest that it may be macrophages' C3 receptors, not their Fc receptors, that are primarily responsible for promoting phagocytosis of opsonized microorganisms in immune hosts.
Title: In vivo activation of macrophage C3 receptors for phagocytosis.
Description:
We assessed the effects of exposure to immune complexes in vivo on macrophages' Fc receptor function and C3 receptor function.
Peritoneal macrophages from mice injected intraperitoneally with immune complexes were markedly impaired in their ability to phagocytize via their Fc receptors but had acquired the ability to phagocytize via their C3 receptors.
In vivo activation of macrophages' C3 receptors for phagocytosis required T lymphocytes, because macrophages from athymic mice could not be activated by injection of immune complexes.
The requirement for both T lymphocytes and immune complexes for activation of macrophages' C3 receptors in vivo is identical to the requirements for activation of macrophages' C3 receptors in vitro, suggesting that the mechanisms we have identified for activation of these receptors in vitro are the same mechanisms by which the receptors are activated for phagocytosis in vivo.
The susceptibility of macrophages' Fc receptors to blockade by immune complexes and the activation of their C3 receptors for phagocytosis in a milieu containing immune complexes suggest that it may be macrophages' C3 receptors, not their Fc receptors, that are primarily responsible for promoting phagocytosis of opsonized microorganisms in immune hosts.
Related Results
Propofol inhibits pressure-stimulated macrophage phagocytosis via the GABAA receptor and dysregulation of p130cas phosphorylation
Propofol inhibits pressure-stimulated macrophage phagocytosis via the GABAA receptor and dysregulation of p130cas phosphorylation
Surgical stress and anesthesia result in systemic immunosuppression. Propofol, a commonly used anesthetic agent, alters immune cell functions. Previously, we demonstrated that extr...
miR-301a Deficiency Attenuates the Macrophage Migration and Phagocytosis through YY1/CXCR4 Pathway
miR-301a Deficiency Attenuates the Macrophage Migration and Phagocytosis through YY1/CXCR4 Pathway
(1) Background: the miR-301a is well known involving the proliferation and migration of tumor cells. However, the role of miR-301a in the migration and phagocytosis of macrophages ...
Target cell adhesion limits macrophage phagocytosis and promotes trogocytosis
Target cell adhesion limits macrophage phagocytosis and promotes trogocytosis
Abstract
Macrophage phagocytosis is an essential immune response that eliminates pathogens, antibody-opsonized cancer cells and debris. Macrophages can also trogocy...
TIM-4 mediated phagocytosis of apoptotic cells induces regulatory cytokine secretion by mouse peritoneal macrophages (136.47)
TIM-4 mediated phagocytosis of apoptotic cells induces regulatory cytokine secretion by mouse peritoneal macrophages (136.47)
Abstract
TIM-4 is a member of the T cell immunoglobubulin mucin (TIM) family and is expressed on macrophage and dendritic cell populations. TIM-4 specifically bin...
Two mechanisms for IgG Fc-receptor-mediated phagocytosis by human neutrophils
Two mechanisms for IgG Fc-receptor-mediated phagocytosis by human neutrophils
Abstract
Neutrophils (PMN) stimulated with the chemo-attractant FMLP, with platelet activating factor (PAF), and with phorbol dibutyrate exhibited a three- to fiv...
Impaired Function of Fancc-/- Immune Cells.
Impaired Function of Fancc-/- Immune Cells.
Abstract
Abstract 1494
Fanconi anemia (FA) is a genetic disorder characterized by bone marrow (BM) failure, developmental defects and cancer predispos...
Abstract 11998: ADAR1 Mediates Macrophage Activation by Its Non-Editing Activity-Mediated Pri-miRNA Processing in Abdominal Aortic Aneurysm
Abstract 11998: ADAR1 Mediates Macrophage Activation by Its Non-Editing Activity-Mediated Pri-miRNA Processing in Abdominal Aortic Aneurysm
Introduction:
Macrophage activation plays a critical role in abdominal aortic aneurysm (AAA) development. However, molecular mechanisms controlling macrophage activatio...
A Novel PHOX/CD38/MCOLN1/TFEB Axis Important For Macrophage Activation During Bacterial Phagocytosis
A Novel PHOX/CD38/MCOLN1/TFEB Axis Important For Macrophage Activation During Bacterial Phagocytosis
Abstract
Macrophages are a key and heterogenous class of phagocytic cells of the innate immune system, which act as sentinels in peripheral tissu...

