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Fluids and flows in brain cancer and neurological disorders

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WIRES MECHANISMS OF DISEASE
卷 15, 期 1, 页码 -

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WILEY
DOI: 10.1002/wsbm.1582

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brain cancer; fluid flow; neuroscience

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Interstitial fluid (IF) and cerebrospinal fluid (CSF) are essential for brain function and protection, but their role in brain cancer and neurobiological disease is still limited. Changes in the composition and flow of these fluids during disease development can lead to brain cell dysfunction.
Interstitial fluid (IF) and cerebrospinal fluid (CSF) are an integral part of the brain, serving to cushion and protect the brain parenchymal cells against damage and aid in their function. The brain IF contains various ions, nutrients, waste products, peptides, hormones, and neurotransmitters. IF moves primarily by pressure-dependent bulk flow through brain parenchyma, draining into the ventricular CSF. The brain ventricles and subarachnoid spaces are filled with CSF which circulates through the perivascular spaces. It also flows into the IF space regulated, in part, by aquaporin channels, removing waste solutes through a process of IF-CSF mixing. During disease development, the composition, flow, and volume of these fluids changes and can lead to brain cell dysfunction. With the improvement of imaging technology and the help of genomic profiling, more information has been and can be obtained from brain fluids; however, the role of CSF and IF in brain cancer and neurobiological disease is still limited. Here we outline recent advances of our knowledge of brain fluid flow in cancer and neurodegenerative disease based on our understanding of its dynamics and composition. This article is categorized under: Cancer > Biomedical Engineering Neurological Diseases > Biomedical Engineering

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