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Astrocytes

169 Sentences | 9 Meanings

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Astrocytes are more numerous than neurons in the brain.
Astrocytes interact with other cells in the brain to maintain homeostasis.
The communication between astrocytes and neurons is essential for brain function.
Damage to astrocytes can lead to neuroinflammation and neurodegeneration.
Astrocytes help keep the environment around neurons stable.
The number of astrocytes in the brain is much greater than the number of neurons.
Astrocytes can help remove excess neurotransmitters from the synapse.
Astrocytes are a type of brain cell that can help repair damaged neurons.
Astrocytes are involved in the formation of fibrous scar tissue following injury to the central nervous system.
Astrocytes play a vital role in forming and maintaining synaptic connections in the brain.
Astrocytes play an important role in brain function.
Damage to the nervous tissue can trigger astrocytes to become reactive and contribute to the formation of a glial scar.
Astrocytes are involved in many different processes in the brain.
Astrocytes are being investigated for their potential to improve recovery after stroke.
Astrocytes are important for repairing the brain after injury.
Astrocytes are a type of cell in the brain that are responsible for maintaining the structural integrity of the nervous system.
Astrocytes play a key role in repairing damaged nerves.
Astrocytes help regulate the amount of glucose in the brain.
The blood-brain barrier is formed by a layer of specialized astrocytes called endfeet.
Studies have demonstrated the therapeutic potential of astrocytes for treating nervous system disorders.
Astrocytes can communicate with each other via gap junctions and form functional networks.
Astrocytes can become reactive in response to injury or disease.
Astrocytes can modulate the activity of neural circuits via the regulation of extracellular ions and neurotransmitters.
The role of astrocytes in scar formation is an important area of research in the field of neurotrauma.
Astrocytes can produce and release various signaling molecules that affect nearby neurons.
Astrocytes are involved in the regulation of blood flow to the brain.
Astrocytes are involved in the regulation of blood flow in the brain, which helps to maintain the delivery of oxygen and nutrients to neurons.
Astrocytes are involved in the repair of damaged brain tissue.
Astrocytes can form scars after nervous tissue damage, which can limit the functional recovery of the brain.
Researchers are studying the role of astrocytes in Alzheimer's disease.
Astrocytes are important cells in the brain that help repair damage.
When brain tissue is damaged, astrocytes can help repair the damage.
Astrocytes have been implicated in the regulation of circadian rhythms.
The development of astrocytes is crucial for the proper functioning of the brain.
Astrocytes are important for the formation and maintenance of synapses in the brain.
Astrocytes are involved in the response to traumatic brain injury.
The ability of astrocytes to buffer extracellular potassium and regulate neuronal excitability is critical for preventing seizures.
Astrocytes can release neurotransmitters that modulate synaptic activity.
Research has suggested that astrocytes may be involved in the pathogenesis of neurodegenerative diseases.
Astrocytes have been found to be involved in the formation and maintenance of synapses between neurons.
The main function of astrocytes is to support and maintain the structure of the nervous system.
In addition to regulating the blood-brain barrier, astrocytes also help to remove excess neurotransmitters from the synaptic cleft.
Astrocytes can also release substances that cause inflammation and damage to neurons.
Astrocytes play a crucial role in regulating the chemical environment of the brain.
Astrocytes are one of the most abundant cell types in the brain.
Injury to the brain can cause astrocytes to become activated and form a protective barrier around the damaged area.
The activation of astrocytes following brain injury can lead to the formation of a barrier that inhibits nerve regeneration.
Astrocytes have been shown to exhibit plasticity in response to various stimuli, including neuronal activity and inflammation.
Astrocytes can help repair the damage caused by neurodegenerative diseases.
Astrocytes are a promising target for the development of novel therapies for various neurological and neuropsychiatric diseases.
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Word Of The Day September 19, 2024
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