Microglia are the resident immune cells of the central nervous system (CNS) and participate in physiological and pathological processes. Their unique developmental nature suggests age-dependent structural and functional impairments that might contribute to neurodegenerative diseases. In the present study, we addressed the age-dependent changes in cortical microglia gene expression patterns and the expression of M1- and M2-like activation markers. Iba1 immunohistochemistry, isolation of cortical microglia followed by fluorescence-activated cell sorting and RNA isolation to analyze transcriptional changes in aged cortical microglia was performed. We provide evidence that aging is associated with decreased numbers of cortical microglia and the...
To understand how microglial cell function may change with aging, various protocols have been develo...
To understand how microglial cell function may change with aging, various protocols have been develo...
To understand how microglial cell function may change with aging, various protocols have been develo...
Microglia are the resident immune cells of the central nervous system (CNS) and participate in physi...
Microglia are essential for CNS homeostasis and innate neuroimmune function, and play important role...
Age-related neurodegenerative diseases have been associated with chronic neuroinflammation and micro...
Microglia are essential for CNS homeostasis and innate neuroimmune function, and play important role...
Abstract Microglia are the resident innate immune cells of the central nervous system. Limited turno...
Microglia are essential for CNS homeostasis and innate neuroimmune function, and play important role...
Microglia are essential for CNS homeostasis and innate neuroimmune function, and play important role...
Microglia, the primary immune cells of the central nervous system, hold a multitude of tasks in orde...
Microglia are essential for CNS homeostasis and innate neuroimmune function, and play important role...
Microglia are essential for CNS homeostasis and innate neuroimmune function, and play important role...
Chronic neuroinflammation, which is primarily mediated by microglia, plays an essential role in agin...
Astrocytes and microglia become reactive in many neurological disorders resulting in phenotypic and ...
To understand how microglial cell function may change with aging, various protocols have been develo...
To understand how microglial cell function may change with aging, various protocols have been develo...
To understand how microglial cell function may change with aging, various protocols have been develo...
Microglia are the resident immune cells of the central nervous system (CNS) and participate in physi...
Microglia are essential for CNS homeostasis and innate neuroimmune function, and play important role...
Age-related neurodegenerative diseases have been associated with chronic neuroinflammation and micro...
Microglia are essential for CNS homeostasis and innate neuroimmune function, and play important role...
Abstract Microglia are the resident innate immune cells of the central nervous system. Limited turno...
Microglia are essential for CNS homeostasis and innate neuroimmune function, and play important role...
Microglia are essential for CNS homeostasis and innate neuroimmune function, and play important role...
Microglia, the primary immune cells of the central nervous system, hold a multitude of tasks in orde...
Microglia are essential for CNS homeostasis and innate neuroimmune function, and play important role...
Microglia are essential for CNS homeostasis and innate neuroimmune function, and play important role...
Chronic neuroinflammation, which is primarily mediated by microglia, plays an essential role in agin...
Astrocytes and microglia become reactive in many neurological disorders resulting in phenotypic and ...
To understand how microglial cell function may change with aging, various protocols have been develo...
To understand how microglial cell function may change with aging, various protocols have been develo...
To understand how microglial cell function may change with aging, various protocols have been develo...