CNS immune privilege: hiding in plain sight
Top Cited Papers
- 14 September 2006
- journal article
- review article
- Published by Wiley in Immunological Reviews
- Vol. 213 (1) , 48-65
- https://doi.org/10.1111/j.1600-065x.2006.00441.x
Abstract
Summary: Central nervous system (CNS) immune privilege is an experimentally defined phenomenon. Tissues that are rapidly rejected by the immune system when grafted in sites, such as the skin, show prolonged survival when grafted into the CNS. Initially, CNS immune privilege was construed as CNS isolation from the immune system by the blood–brain barrier (BBB), the lack of draining lymphatics, and the apparent immunoincompetence of microglia, the resident CNS macrophage. CNS autoimmunity and neurodegeneration were presumed automatic consequences of immune cell encounter with CNS antigens. Recent data have dramatically altered this viewpoint by revealing that the CNS is neither isolated nor passive in its interactions with the immune system. Peripheral immune cells can cross the intact BBB, CNS neurons and glia actively regulate macrophage and lymphocyte responses, and microglia are immunocompetent but differ from other macrophage/dendritic cells in their ability to direct neuroprotective lymphocyte responses. This newer view of CNS immune privilege is opening the door for therapies designed to harness autoreactive lymphocyte responses and also implies (i) that CNS autoimmune diseases (i.e. multiple sclerosis) may result as much from neuronal and/or glial dysfunction as from immune system dysfunctions and (ii) that the severe neuronal and glial dysfunction associated with neurodegenerative disorders (i.e. Alzheimer’s disease) likely alters CNS‐specific regulation of lymphocyte responses affecting the utility of immune‐based therapies (i.e. vaccines).Keywords
This publication has 140 references indexed in Scilit:
- Microglia and the control of autoreactive T cell responsesNeurochemistry International, 2006
- Immune cells contribute to the maintenance of neurogenesis and spatial learning abilities in adulthoodNature Neuroscience, 2006
- Permeability Studies on In Vitro Blood–Brain Barrier Models: Physiology, Pathology, and PharmacologyCellular and Molecular Neurobiology, 2005
- Neural Stem Cells in the Subventricular Zone Are a Source of Astrocytes and Oligodendrocytes, but Not MicrogliaDevelopmental Neuroscience, 2003
- Three or more routes for leukocyte migration into the central nervous systemNature Reviews Immunology, 2003
- The Push-Me Pull-You of T Cell ActivationScience, 2001
- Cloning and characterization of a novel mouse myeloid DAP12-associated receptor familyEuropean Journal of Immunology, 2001
- A role for non-MHC genetic polymorphism in susceptibility to spontaneous autoimmunityPublished by Elsevier ,1994
- Cervical lymphatics, the blood-brain barrier and the immunoreactivity of the brain: a new viewImmunology Today, 1992
- Identification of the 64K autoantigen in insulin-dependent diabetes as the GABA-synthesizing enzyme glutamic acid decarboxylaseNature, 1990