Microglia, the tissue-resident macrophages of the central nervous system (CNS), have characterized roles in combating infection, clearing cellular debris, and maintaining tissue homeostasis. In addition to these typical immunological roles, microglia have been revealed to be active players in complex neurodevelopmental programs such as neurogenesis and synaptic pruning, during which they interact with neurons and macroglia to provide trophic support, respond to cytokine, and metabolic signals derived from the local neural environment, and drive the refinement of functional neuronal circuits. Microglia appear to be developmentally regulated by the host microbiome, and have been shown to dynamically respond to metabolic products from gut micr...
Many diverse factors, ranging from stress to infections, can perturb brain homeostasis and alter the...
Microglia are the brain’s resident macrophages, which guide various developmental processes crucial ...
Maternal immune activation (MIA) disrupts the central innate immune system during a critical neurode...
From immunology to neuroscience, interactions between the microbiome and host are increasingly appre...
Microglia cells are the unique residential macrophages of the central nervous system (CNS). They ha...
Microglia represent a specialized population of macrophages-like cells in the central nervous system...
Microglia cells are the unique residential macrophages of the central nervous system (CNS). They hav...
Microglia cells are the unique residential macrophages of the central nervous system (CNS). They hav...
Microglia are macrophages that colonize the brain during development to establish a resident populat...
Microglia are macrophages that colonize the brain during development to establish a resident populat...
Microglia are essential for the development and function of the adult brain. Microglia arise from er...
peer reviewedMicroglia are essential for the development and function of the adult brain. Microglia ...
Microglia are macrophages that colonize the brain during development to establish a resident populat...
Microglia cells are the unique residential macrophages of the central nervous system (CNS). They hav...
peer reviewedMicroglia, the resident immune cells of the central nervous system (CNS), have received...
Many diverse factors, ranging from stress to infections, can perturb brain homeostasis and alter the...
Microglia are the brain’s resident macrophages, which guide various developmental processes crucial ...
Maternal immune activation (MIA) disrupts the central innate immune system during a critical neurode...
From immunology to neuroscience, interactions between the microbiome and host are increasingly appre...
Microglia cells are the unique residential macrophages of the central nervous system (CNS). They ha...
Microglia represent a specialized population of macrophages-like cells in the central nervous system...
Microglia cells are the unique residential macrophages of the central nervous system (CNS). They hav...
Microglia cells are the unique residential macrophages of the central nervous system (CNS). They hav...
Microglia are macrophages that colonize the brain during development to establish a resident populat...
Microglia are macrophages that colonize the brain during development to establish a resident populat...
Microglia are essential for the development and function of the adult brain. Microglia arise from er...
peer reviewedMicroglia are essential for the development and function of the adult brain. Microglia ...
Microglia are macrophages that colonize the brain during development to establish a resident populat...
Microglia cells are the unique residential macrophages of the central nervous system (CNS). They hav...
peer reviewedMicroglia, the resident immune cells of the central nervous system (CNS), have received...
Many diverse factors, ranging from stress to infections, can perturb brain homeostasis and alter the...
Microglia are the brain’s resident macrophages, which guide various developmental processes crucial ...
Maternal immune activation (MIA) disrupts the central innate immune system during a critical neurode...