Choroid plexus: biology and pathology

The choroid plexus is an epithelial–endothelial vascular convolute within the ventricular system of the vertebrate brain. It consists of epithelial cells, fenestrated blood vessels, and the stroma, dependent on various physiological or pathological conditions, which may contain fibroblasts, mast cel...

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Published inActa neuropathologica Vol. 119; no. 1; pp. 75 - 88
Main Authors Wolburg, Hartwig, Paulus, Werner
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer-Verlag 2010
Springer Nature B.V
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Abstract The choroid plexus is an epithelial–endothelial vascular convolute within the ventricular system of the vertebrate brain. It consists of epithelial cells, fenestrated blood vessels, and the stroma, dependent on various physiological or pathological conditions, which may contain fibroblasts, mast cells, macrophages, granulocytes or other infiltrates, and a rich extracellular matrix. The choroid plexus is mainly involved in the production of cerebrospinal fluid (CSF) by using the free access to the blood compartment of the leaky vessels. In order to separate blood and CSF compartments, choroid plexus epithelial cells and tanycytes of circumventricular organs constitute the blood–CSF–brain barrier. As non-neuronal cells in the brain and derived from neuroectoderm, choroid plexus epithelia are defined as a subtype of macroglia. The choroid plexus is involved in a variety of neurological disorders, including neurodegenerative, inflammatory, infectious, traumatic, neoplastic, and systemic diseases. Aβ and Biondi ring tangles accumulate in the Alzheimer’s disease choroid plexus. In multiple sclerosis, the choroid plexus could represent a site for lymphocyte entry in the CSF and brain, and for presentation of antigens. Recent studies have provided new diagnostic markers and potential molecular targets for choroid plexus papilloma and carcinoma, which represent the most common brain tumors in the first year of life. We here revive some of the classical studies and review recent insight into the biology and pathology of the choroid plexus.
AbstractList The choroid plexus is an epithelial-endothelial vascular convolute within the ventricular system of the vertebrate brain. It consists of epithelial cells, fenestrated blood vessels, and the stroma, dependent on various physiological or pathological conditions, which may contain fibroblasts, mast cells, macrophages, granulocytes or other infiltrates, and a rich extracellular matrix. The choroid plexus is mainly involved in the production of cerebrospinal fluid (CSF) by using the free access to the blood compartment of the leaky vessels. In order to separate blood and CSF compartments, choroid plexus epithelial cells and tanycytes of circumventricular organs constitute the blood-CSF-brain barrier. As non-neuronal cells in the brain and derived from neuroectoderm, choroid plexus epithelia are defined as a subtype of macroglia. The choroid plexus is involved in a variety of neurological disorders, including neurodegenerative, inflammatory, infectious, traumatic, neoplastic, and systemic diseases. Abeta and Biondi ring tangles accumulate in the Alzheimer's disease choroid plexus. In multiple sclerosis, the choroid plexus could represent a site for lymphocyte entry in the CSF and brain, and for presentation of antigens. Recent studies have provided new diagnostic markers and potential molecular targets for choroid plexus papilloma and carcinoma, which represent the most common brain tumors in the first year of life. We here revive some of the classical studies and review recent insight into the biology and pathology of the choroid plexus.
The choroid plexus is an epithelial–endothelial vascular convolute within the ventricular system of the vertebrate brain. It consists of epithelial cells, fenestrated blood vessels, and the stroma, dependent on various physiological or pathological conditions, which may contain fibroblasts, mast cells, macrophages, granulocytes or other infiltrates, and a rich extracellular matrix. The choroid plexus is mainly involved in the production of cerebrospinal fluid (CSF) by using the free access to the blood compartment of the leaky vessels. In order to separate blood and CSF compartments, choroid plexus epithelial cells and tanycytes of circumventricular organs constitute the blood–CSF–brain barrier. As non-neuronal cells in the brain and derived from neuroectoderm, choroid plexus epithelia are defined as a subtype of macroglia. The choroid plexus is involved in a variety of neurological disorders, including neurodegenerative, inflammatory, infectious, traumatic, neoplastic, and systemic diseases. Aβ and Biondi ring tangles accumulate in the Alzheimer’s disease choroid plexus. In multiple sclerosis, the choroid plexus could represent a site for lymphocyte entry in the CSF and brain, and for presentation of antigens. Recent studies have provided new diagnostic markers and potential molecular targets for choroid plexus papilloma and carcinoma, which represent the most common brain tumors in the first year of life. We here revive some of the classical studies and review recent insight into the biology and pathology of the choroid plexus.
The choroid plexus is an epithelial-endothelial vascular convolute within the ventricular system of the vertebrate brain. It consists of epithelial cells, fenestrated blood vessels, and the stroma, dependent on various physiological or pathological conditions, which may contain fibroblasts, mast cells, macrophages, granulocytes or other infiltrates, and a rich extracellular matrix. The choroid plexus is mainly involved in the production of cerebrospinal fluid (CSF) by using the free access to the blood compartment of the leaky vessels. In order to separate blood and CSF compartments, choroid plexus epithelial cells and tanycytes of circumventricular organs constitute the blood-CSF-brain barrier. As non-neuronal cells in the brain and derived from neuroectoderm, choroid plexus epithelia are defined as a subtype of macroglia. The choroid plexus is involved in a variety of neurological disorders, including neurodegenerative, inflammatory, infectious, traumatic, neoplastic, and systemic diseases. Ab and Biondi ring tangles accumulate in the Alzheimer's disease choroid plexus. In multiple sclerosis, the choroid plexus could represent a site for lymphocyte entry in the CSF and brain, and for presentation of antigens. Recent studies have provided new diagnostic markers and potential molecular targets for choroid plexus papilloma and carcinoma, which represent the most common brain tumors in the first year of life. We here revive some of the classical studies and review recent insight into the biology and pathology of the choroid plexus.
Author Paulus, Werner
Wolburg, Hartwig
Author_xml – sequence: 1
  givenname: Hartwig
  surname: Wolburg
  fullname: Wolburg, Hartwig
  email: hartwig.wolburg@med.uni-tuebingen.de
  organization: Institute of Pathology, University Hospital Tübingen
– sequence: 2
  givenname: Werner
  surname: Paulus
  fullname: Paulus, Werner
  organization: Institute of Neuropathology, University Hospital Münster
BackLink https://www.ncbi.nlm.nih.gov/pubmed/20033190$$D View this record in MEDLINE/PubMed
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Sat Sep 28 07:46:32 EDT 2024
Sat Dec 16 12:02:11 EST 2023
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Issue 1
Keywords Choroid plexus
Blood–cerebrospinal fluid barrier
Choroid plexus papilloma
Blood–brain barrier
Language English
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PublicationDate 1-2010
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2010-1-00
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PublicationPlace Berlin/Heidelberg
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PublicationTitle Acta neuropathologica
PublicationTitleAbbrev Acta Neuropathol
PublicationTitleAlternate Acta Neuropathol
PublicationYear 2010
Publisher Springer-Verlag
Springer Nature B.V
Publisher_xml – name: Springer-Verlag
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Snippet The choroid plexus is an epithelial–endothelial vascular convolute within the ventricular system of the vertebrate brain. It consists of epithelial cells,...
The choroid plexus is an epithelial-endothelial vascular convolute within the ventricular system of the vertebrate brain. It consists of epithelial cells,...
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StartPage 75
SubjectTerms Alzheimer's disease
Animals
Biology
Blood vessels
Brain
Central Nervous System Diseases - pathology
Central Nervous System Diseases - physiopathology
Cerebrospinal Fluid - metabolism
Choroid Plexus - growth & development
Choroid Plexus - pathology
Choroid Plexus - physiology
Epithelial Cells - cytology
Epithelial Cells - pathology
Epithelial Cells - physiology
Humans
Medicine
Medicine & Public Health
Models, Neurological
Neurosciences
Pathology
Physiology
Review
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Title Choroid plexus: biology and pathology
URI https://link.springer.com/article/10.1007/s00401-009-0627-8
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