Losing the sugar coating: Potential impact of perineuronal net abnormalities on interneurons in schizophrenia

被引:122
作者
Berretta, Sabina [1 ,2 ,3 ]
Pantazopoulos, Harry [1 ,2 ]
Markota, Matej [1 ,2 ]
Brown, Christopher [1 ]
Batzianouli, Eleni T. [1 ,2 ]
机构
[1] McLean Hosp, Translat Neurosci Lab, Belmont, MA 02478 USA
[2] Harvard Univ, Sch Med, Dept Psychiat, Boston, MA 02115 USA
[3] Harvard Univ, Sch Med, Program Neurosci, Boston, MA 02115 USA
基金
美国国家卫生研究院;
关键词
Perineuronal nets; Extracellular matrix; Schizophrenia; Amygdala; Entorhinal cortex; Prefrontal cortex; CHONDROITIN SULFATE PROTEOGLYCANS; PARVALBUMIN-IMMUNOREACTIVE NEURONS; EXTRACELLULAR-MATRIX; PREFRONTAL CORTEX; BIPOLAR DISORDER; TENASCIN-R; MOLECULAR HETEROGENEITY; RECEPTOR COMPOSITION; SYNAPTIC PLASTICITY; REELIN EXPRESSION;
D O I
10.1016/j.schres.2014.12.040
中图分类号
R749 [精神病学];
学科分类号
100205 ;
摘要
Perineuronal nets (PNNs) were shown to be markedly altered in subjects with schizophrenia. In particular, decreases of PNNs have been detected in the amygdala, entorhinal cortex and prefrontal cortex. The formation of these specialized extracellular matrix (ECM) aggregates during postnatal development, their functions, and association with distinct populations of GABAergic interneurons, bear great relevance to the pathophysiology of schizophrenia. PNNs gradually mature in an experience-dependent manner during late stages of postnatal development, overlapping with the prodromal period/age of onset of schizophrenia. Throughout adulthood, PNNs regulate neuronal properties, including synaptic remodeling, cell membrane compartmentalization and subsequent regulation of glutamate receptors and calcium channels, and susceptibility to oxidative stress. With the present paper, we discuss evidence for PNN abnormalities in schizophrenia, the potential functional impact of such abnormalities on inhibitory circuits and, in turn, cognitive and emotion processing. We integrate these considerations with results from recent genetic studies showing genetic susceptibility for schizophrenia associated with genes encoding for PNN components, matrix-regulating molecules and immune system factors. Notably, the composition of PNNs is regulated dynamically in response to factors such as fear, reward, stress, and immune response. This regulation occurs through families of matrix metalloproteinases that cleave ECM components, altering their functions and affecting plasticity. Several metalloproteinases have been proposed as vulnerability factors for schizophrenia. We speculate that the physiological process of PNN remodeling may be disrupted in schizophrenia as a result of interactions between matrix remodeling processes and immune system dysregulation. In turn, these mechanisms may contribute to the dysfunction of GABAergic neurons. (C) 2015 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
引用
收藏
页码:18 / 27
页数:10
相关论文
共 185 条
[51]   Contributions of astrocytes to synapse formation and maturation - Potential functions of the perisynaptic extracellular matrix [J].
Faissner, Andreas ;
Pyka, Martin ;
Geissler, Maren ;
Sobik, Thomas ;
Frischknecht, Renato ;
Gundelfinger, Eckart D. ;
Seidenbecher, Constanze .
BRAIN RESEARCH REVIEWS, 2010, 63 (1-2) :26-38
[52]   Reelin glycoprotein in autism and schizophrenia [J].
Fatemi, SH .
GABA IN AUTISM AND RELATED DISORDERS, 2005, 71 :179-187
[53]   Reelin mutations in mouse and man: from reeler mouse to schizophrenia, mood disorders, autism and lissencephaly [J].
Fatemi, SH .
MOLECULAR PSYCHIATRY, 2001, 6 (02) :129-133
[54]   Molecular control of brain plasticity and repair [J].
Fawcett, James .
NEUROTHERAPY: PROGRESS IN RESTORATIVE NEUROSCIENCE AND NEUROLOGY, 2009, 175 :501-509
[55]   Markers of inflammation and stress distinguish subsets of individuals with schizophrenia and bipolar disorder [J].
Fillman, S. G. ;
Sinclair, D. ;
Fung, S. J. ;
Webster, M. J. ;
Weickert, C. Shannon .
TRANSLATIONAL PSYCHIATRY, 2014, 4 :e365-e365
[56]   Markers of inflammation in the prefrontal cortex of individuals with schizophrenia [J].
Fillman, S. G. ;
Cloonan, N. ;
Miller, L. C. ;
Weickert, C. S. .
MOLECULAR PSYCHIATRY, 2013, 18 (02) :133-133
[57]   Epigenetic Factors and Autism Spectrum Disorders [J].
Flashner, Bess M. ;
Russo, Mark E. ;
Boileau, Jenine E. ;
Leong, Derek W. ;
Gallicano, G. Ian .
NEUROMOLECULAR MEDICINE, 2013, 15 (02) :339-350
[58]   The involvement of Reelin in neurodevelopmental disorders [J].
Folsom, Timothy D. ;
Fatemi, S. Hossein .
NEUROPHARMACOLOGY, 2013, 68 :122-135
[59]   Perineuronal nets and GABAergic cells in the inferior colliculus of guinea pigs [J].
Foster, Nichole L. ;
Mellott, Jeffrey G. ;
Schofield, Brett R. .
FRONTIERS IN NEUROANATOMY, 2014, 7
[60]   Extracellular Matrix Functions During Neuronal Migration and Lamination in the Mammalian Central Nervous System [J].
Franco, Santos J. ;
Mueller, Ulrich .
DEVELOPMENTAL NEUROBIOLOGY, 2011, 71 (11) :889-900