Emerging evidence indicates that activation of microglia, the immune cells of the brain, is strictly associated to both secretion of soluble molecules and release of extracellular membrane vesicles (EMVs) into the pericellular space. Through these processes, microglia heavily influence brain cell functions, either propagating inflammation and causing damage to neurons or playing a supportive, neuroprotective role. In this review, we highlight the emerging concepts related to vesicular mechanisms of secretion operating in microglial cells, with the aim of dissecting how microglia communicate with other cell types within the brain microenvironment in health and disease
Neuroinflammation is a crucial pathogenic mechanism that commonly underlies most neurodegenerative d...
Microglia are often referred to as the immune cells of the brain. They are most definitely involved ...
Microglia, which serve as the defensive interface of the nervous system, are activated in many neuro...
Extracellular vesicles (EVs) represent a heterogeneous group of membranous structures derived from c...
Microglial cells are the neuroimmune competent cells of the central nervous system. In the adult, mi...
Microglia are the major component of the innate immune system in the central nervous system. They pr...
The brain is characterized by a complex and integrated network of interacting cells in which cell-to...
Microvesicles (MVs) are released from almost all cell brain types into the microenvironment and are ...
Extracellular vesicles, including exosomes and microvesicles, are small, nano-to-micrometer vesicles...
Microglia are ramified cells that exhibit highly motile processes, which continuously survey the bra...
Microglia act as the immune cells of the central nervous system (CNS). They play an important role i...
BackgroundActivated microglia play an essential role in inflammatory responses elicited in the centr...
Microglial cells are the resident macrophages in the central nervous system. These cells of mesoderm...
Tumor necrosis factor (TNF) is a pleiotropic cytokine powerfully influencing diverse processes of th...
Microglial cells represent the resident immune elements of the central nervous system, where they ex...
Neuroinflammation is a crucial pathogenic mechanism that commonly underlies most neurodegenerative d...
Microglia are often referred to as the immune cells of the brain. They are most definitely involved ...
Microglia, which serve as the defensive interface of the nervous system, are activated in many neuro...
Extracellular vesicles (EVs) represent a heterogeneous group of membranous structures derived from c...
Microglial cells are the neuroimmune competent cells of the central nervous system. In the adult, mi...
Microglia are the major component of the innate immune system in the central nervous system. They pr...
The brain is characterized by a complex and integrated network of interacting cells in which cell-to...
Microvesicles (MVs) are released from almost all cell brain types into the microenvironment and are ...
Extracellular vesicles, including exosomes and microvesicles, are small, nano-to-micrometer vesicles...
Microglia are ramified cells that exhibit highly motile processes, which continuously survey the bra...
Microglia act as the immune cells of the central nervous system (CNS). They play an important role i...
BackgroundActivated microglia play an essential role in inflammatory responses elicited in the centr...
Microglial cells are the resident macrophages in the central nervous system. These cells of mesoderm...
Tumor necrosis factor (TNF) is a pleiotropic cytokine powerfully influencing diverse processes of th...
Microglial cells represent the resident immune elements of the central nervous system, where they ex...
Neuroinflammation is a crucial pathogenic mechanism that commonly underlies most neurodegenerative d...
Microglia are often referred to as the immune cells of the brain. They are most definitely involved ...
Microglia, which serve as the defensive interface of the nervous system, are activated in many neuro...