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The blood cerebrospinal fluid barrier orchestrates immunosurveillance, immunoprotection, and immunopathology in the central nervous system

期刊

BMB REPORTS
卷 54, 期 4, 页码 196-202

出版社

KOREAN SOCIETY BIOCHEMISTRY & MOLECULAR BIOLOGY
DOI: 10.5483/BMBRep.2021.54.4.205

关键词

Brain barriers; Choroid plexus; Immunoregulation; Neuroimmune communication

资金

  1. NRF - Korean government, MSIT [2017R1A4A1015652, 2020R1A2C3006875, 2020R 1A2C3006734]
  2. National Research Foundation of Korea [2017R1A4A1015652, 2020R1A2C3006875] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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Recent scientific advances have shown that the central nervous system is both immunologically active and specialized. The brain barriers and coverings endow the brain with specificity for immune cell entry. Different cellular trafficking via barriers results in distinct phenotypic and cellular changes in the brain.
Once characterized as an immune privileged area, recent scientific advances have demonstrated that the central nervous system (CNS) is both immunologically active and a specialized site. The anatomical and cellular features of the brain barriers, the glia limitans, and other superficial coverings of the CNS endow the brain with specificity for immune cell entry and other macro- and micro-elements to the brain. Cellular trafficking via barriers comprised of tightly junctioned non-fenestrated endothelium or tightly regulated fenestrated epithelium results in different phenotypic and cellular changes in the brain, that is, inflammatory versus regulatory changes. Based on emerging evidence, we described the unique ability of the blood cerebrospinal fluid barrier (BCSFB) to recruit, skew, and suppress immune cells. Additionally, we sum up the current knowledge on both cellular and molecular mechanisms governed by the choroid plexus and the cerebrospinal fluid at the BCSFB for immunosurveillance, immunoprotection, and immunopathology.

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