Astrogliosis has been abundantly studied in rodents but relatively poorly in human cells due to limited access to the brain. Astrocytes play important roles in cerebral energy metabolism, and are also key players in neuroinflammation. Astroglial metabolic and inflammatory changes as a function of age have been reported, leading to the hypothesis that mitochondrial metabolism and inflammatory responses are interconnected in supporting a functional switch of astrocytes from neurotrophic to neurotoxic. This study aimed to explore the metabolic changes occurring in astrocytes during their activation. Astrocytes were derived from human ReN cell neural progenitors and characterized. They were activated by exposure to tumor necrosis factor alpha (...
As part of the blood-brain-barrier, astrocytes are ideally positioned between cerebral vasculature a...
Background: Astrocytes have critical roles in the human CNS in health and disease. They provide trop...
As part of the blood-brain-barrier, astrocytes are ideally positioned between cerebral vasculature a...
Astrogliosis has been abundantly studied in rodents but relatively poorly in human cells due to limi...
Inflammation and metabolism are intrinsically linked with inflammatory stimuli inducing metabolic ch...
Astrocyte reaction is a complex cellular process involving astrocytes in response to various types o...
Astrocyte reaction is a complex cellular process involving astrocytes in response to various types o...
Astrocytes play an important role in nervous system homeostasis. In particular, they contribute to t...
International audienceHigh energy demands of neurons make them vulnerable to adverse effects of ener...
We have previously reported that the pro-inflammatory cytokines tumor necrosis factor-α (TNFα) and i...
High energy demands of neurons make them vulnerable to adverse effects of energy impairment. Recentl...
International audienceHere, we examine the cellular changes triggered by tumor necrosis factor alpha...
Astrocytes, the most abundant glial cell population in the central nervous system, have important fu...
AbstractAstrocytes, the most abundant glial cell population in the central nervous system, have impo...
Astrocytes perform critical homeostatic functions in the central nervous system (CNS). In CNS injury...
As part of the blood-brain-barrier, astrocytes are ideally positioned between cerebral vasculature a...
Background: Astrocytes have critical roles in the human CNS in health and disease. They provide trop...
As part of the blood-brain-barrier, astrocytes are ideally positioned between cerebral vasculature a...
Astrogliosis has been abundantly studied in rodents but relatively poorly in human cells due to limi...
Inflammation and metabolism are intrinsically linked with inflammatory stimuli inducing metabolic ch...
Astrocyte reaction is a complex cellular process involving astrocytes in response to various types o...
Astrocyte reaction is a complex cellular process involving astrocytes in response to various types o...
Astrocytes play an important role in nervous system homeostasis. In particular, they contribute to t...
International audienceHigh energy demands of neurons make them vulnerable to adverse effects of ener...
We have previously reported that the pro-inflammatory cytokines tumor necrosis factor-α (TNFα) and i...
High energy demands of neurons make them vulnerable to adverse effects of energy impairment. Recentl...
International audienceHere, we examine the cellular changes triggered by tumor necrosis factor alpha...
Astrocytes, the most abundant glial cell population in the central nervous system, have important fu...
AbstractAstrocytes, the most abundant glial cell population in the central nervous system, have impo...
Astrocytes perform critical homeostatic functions in the central nervous system (CNS). In CNS injury...
As part of the blood-brain-barrier, astrocytes are ideally positioned between cerebral vasculature a...
Background: Astrocytes have critical roles in the human CNS in health and disease. They provide trop...
As part of the blood-brain-barrier, astrocytes are ideally positioned between cerebral vasculature a...