Astrocytes play an important role in nervous system homeostasis. In particular, they contribute to the regulation of local energy metabolism and to oxidative stress defence. In previous experiments, we showed that long-term treatment with interleukin 1alpha (IL-1alpha) or tumor necrosis factor-alpha (TNFalpha) alone increases glucose utilization in primary culture of mouse astrocytes. In our study, we report that a combination of IL-1beta and TNFalpha exerts a synergistic effect on glucose utilization and markedly modifies the metabolic phenotype of astrocytes. Thus, IL-1beta+TNFalpha treated astrocytes show a marked decrease in glycogen levels, a slight but not significant decrease in lactate release as well as a massive increase in both t...
Astrocytes play critical roles in central nervous system homeostasis and support of neuronal functio...
International audienceAstrocytes play critical roles in central nervous system homeostasis and suppo...
Astrocytes become activated in Alzheimer's disease (AD), contributing to and reinforcing an inflamma...
Cytokines can be produced within the nervous system by various cell types, including astrocytes, whi...
Interleukin-1alpha (IL-1alpha) and tumor necrosis factor-alpha (TNF-alpha) markedly stimulate glucos...
Astrogliosis has been abundantly studied in rodents but relatively poorly in human cells due to limi...
We have previously reported that the pro-inflammatory cytokines tumor necrosis factor-α (TNFα) and i...
Inflammation and metabolism are intrinsically linked with inflammatory stimuli inducing metabolic ch...
A complex relationship exists between astrocytes and neurons involving astrocytic uptake of glucose ...
International audienceHigh energy demands of neurons make them vulnerable to adverse effects of ener...
High energy demands of neurons make them vulnerable to adverse effects of energy impairment. Recentl...
Glial cells in the CNS are supportive and nutritive for neurons. Furthermore, they regulate the ion ...
Therapeutic interventions are greatly needed for age-related neurodegenerative diseases. Astrocytes ...
Microglia sustain normal brain functions continuously monitoring cerebral parenchyma to detect neuro...
Neurodegenerative and psychiatric disorders including Alzheimer's, Parkinson's or Huntington's disea...
Astrocytes play critical roles in central nervous system homeostasis and support of neuronal functio...
International audienceAstrocytes play critical roles in central nervous system homeostasis and suppo...
Astrocytes become activated in Alzheimer's disease (AD), contributing to and reinforcing an inflamma...
Cytokines can be produced within the nervous system by various cell types, including astrocytes, whi...
Interleukin-1alpha (IL-1alpha) and tumor necrosis factor-alpha (TNF-alpha) markedly stimulate glucos...
Astrogliosis has been abundantly studied in rodents but relatively poorly in human cells due to limi...
We have previously reported that the pro-inflammatory cytokines tumor necrosis factor-α (TNFα) and i...
Inflammation and metabolism are intrinsically linked with inflammatory stimuli inducing metabolic ch...
A complex relationship exists between astrocytes and neurons involving astrocytic uptake of glucose ...
International audienceHigh energy demands of neurons make them vulnerable to adverse effects of ener...
High energy demands of neurons make them vulnerable to adverse effects of energy impairment. Recentl...
Glial cells in the CNS are supportive and nutritive for neurons. Furthermore, they regulate the ion ...
Therapeutic interventions are greatly needed for age-related neurodegenerative diseases. Astrocytes ...
Microglia sustain normal brain functions continuously monitoring cerebral parenchyma to detect neuro...
Neurodegenerative and psychiatric disorders including Alzheimer's, Parkinson's or Huntington's disea...
Astrocytes play critical roles in central nervous system homeostasis and support of neuronal functio...
International audienceAstrocytes play critical roles in central nervous system homeostasis and suppo...
Astrocytes become activated in Alzheimer's disease (AD), contributing to and reinforcing an inflamma...