Any pathologic event in the brain leads to the activation of microglia, the immunocompetent cells of the central nervous system. In recent decades diverse molecular pathways have been identified by which microglial activation is controlled and by which the activated microglia affects neurons. In the normal brain microglia were considered “resting,” but it has recently become evident that they constantly scan the brain environment and contact synapses. Activated microglia can remove damaged cells as well as dysfunctional synapses, a process termed “synaptic stripping.” Here we summarize evidence that molecular pathways characterized in pathology are also utilized by microglia in the normal and developing brain to influence synaptic developme...
For decades, microglia, the resident macrophages of the brain, have been recognized mostly for their...
Abstract Microglia are the principal resident immune cells in the central nervous system and are bel...
Microglia are largely known as the major orchestrators of the brain inflammatory response. As such, ...
Any pathologic event in the brain leads to the activation of microglia, the immunocompetent cells of...
Any pathologic event in the brain leads to the activation of microglia, the immunocompetent cells of...
We focus on emerging roles for microglia in synaptic plasticity, cognition and disease. We outline e...
Microglia are resident brain cells that sense pathological tissue alterations. They can develop into...
Synaptic plasticity is critical for elaboration and adaptation in the developing and developed brain...
Microglia are essential for the development and function of the adult brain. Their ontogeny, togethe...
As the principal immune cell of the brain, microglia cells are responsible for monitoring the activi...
Microglia are the resident immune cells of the central nervous system (CNS) parenchyma, which perfor...
Microglia are dynamic cells, constantly surveying their surroundings and interacting with neurons an...
Microglia are the immune competent cells of the central nervous system (CNS). During development, mi...
Recent findings challenge the concept that microglia solely function in disease states in the centra...
Microglia are highly motile phagocytic cells that infiltrate and take up residence in the developing...
For decades, microglia, the resident macrophages of the brain, have been recognized mostly for their...
Abstract Microglia are the principal resident immune cells in the central nervous system and are bel...
Microglia are largely known as the major orchestrators of the brain inflammatory response. As such, ...
Any pathologic event in the brain leads to the activation of microglia, the immunocompetent cells of...
Any pathologic event in the brain leads to the activation of microglia, the immunocompetent cells of...
We focus on emerging roles for microglia in synaptic plasticity, cognition and disease. We outline e...
Microglia are resident brain cells that sense pathological tissue alterations. They can develop into...
Synaptic plasticity is critical for elaboration and adaptation in the developing and developed brain...
Microglia are essential for the development and function of the adult brain. Their ontogeny, togethe...
As the principal immune cell of the brain, microglia cells are responsible for monitoring the activi...
Microglia are the resident immune cells of the central nervous system (CNS) parenchyma, which perfor...
Microglia are dynamic cells, constantly surveying their surroundings and interacting with neurons an...
Microglia are the immune competent cells of the central nervous system (CNS). During development, mi...
Recent findings challenge the concept that microglia solely function in disease states in the centra...
Microglia are highly motile phagocytic cells that infiltrate and take up residence in the developing...
For decades, microglia, the resident macrophages of the brain, have been recognized mostly for their...
Abstract Microglia are the principal resident immune cells in the central nervous system and are bel...
Microglia are largely known as the major orchestrators of the brain inflammatory response. As such, ...