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  2. Astrocyte - Wikipedia

    en.wikipedia.org/wiki/Astrocyte

    Astrocytes (green) in the context of neurons (red) in a mouse cortex cell culture 23-week-old fetal brain culture human astrocyte Astrocytes (red-yellow) among neurons (green) in the living cerebral cortex. Astrocytes are a sub-type of glial cells in the central nervous system. They are also known as astrocytic glial cells.

  3. Ependyma - Wikipedia

    en.wikipedia.org/wiki/Ependyma

    Early monociliated ependymal cells are differentiated to multiciliated ependymal cells for their function in circulating cerebrospinal fluid. [3] The basal membranes of these cells are characterized by tentacle-like extensions that attach to astrocytes. The apical side is covered in cilia and microvilli. [4]

  4. Glia - Wikipedia

    en.wikipedia.org/wiki/Glia

    Glia, also called glial cells (gliocytes) or neuroglia, are non-neuronal cells in the central nervous system (the brain and the spinal cord) and in the peripheral nervous system that do not produce electrical impulses. The neuroglia make up more than one half the volume of neural tissue in the human body. [1]

  5. Glia limitans - Wikipedia

    en.wikipedia.org/wiki/Glia_limitans

    The astrocytes of the glia limitans are responsible for separating the brain into two primary compartments. The first compartment is the immune-privileged brain and spinal cord parenchyma. This compartment contains multiple immunosuppressive cell surface proteins such as CD200 and CD95L and it allows for the release of anti-inflammatory factors.

  6. Cerebrospinal fluid - Wikipedia

    en.wikipedia.org/wiki/Cerebrospinal_fluid

    Cerebrospinal fluid (CSF) is a clear, colorless body fluid found within the tissue that surrounds the brain and spinal cord of all vertebrates. CSF is produced by specialised ependymal cells in the choroid plexus of the ventricles of the brain, and absorbed in the arachnoid granulations .

  7. Cellular extensions - Wikipedia

    en.wikipedia.org/wiki/Cellular_extensions

    The blood-brain barrier and the blood-spinal cord barrier: Pericytes and astrocytes endfeet (Astrocytic endfeet envelop the abluminal surface of brain capillaries, accounting for 70% to nearly 100% of their total surface area). [34] The inner blood retinal barrier (iBRB) [35] Pericytes and endfeet of glial cells like astrocytes and Müller cells.

  8. Microglia - Wikipedia

    en.wikipedia.org/wiki/Microglia

    These cells (and other neuroglia including astrocytes) are distributed in large non-overlapping regions throughout the CNS. [5] [6] Microglia are key cells in overall brain maintenance – they are constantly scavenging the CNS for plaques, damaged or unnecessary neurons and synapses, and infectious agents. [7]

  9. Glymphatic system - Wikipedia

    en.wikipedia.org/wiki/Glymphatic_system

    Studies in 1985 indicated that cerebrospinal fluid and interstitial fluid may flow along specific anatomical pathways within the brain, with CSF moving into the brain along the outside of blood vessels; such 'paravascular channels' were possibly analogous to peripheral lymph vessels, facilitating the clearance of interstitial wastes from the brain.