Literature DB >> 7932285

Is schizophrenia due to excessive synaptic pruning in the prefrontal cortex? The Feinberg hypothesis revisited.

M S Keshavan1, S Anderson, J W Pettegrew.   

Abstract

Several lines of evidence support the notion that a substantial reorganization of cortical connections, involving a programmed synaptic pruning, takes place during adolescence in humans. A review of neurobiological abnormalities in schizophrenia indicates that the neurobiological parameters that undergo peripubertal regressive changes may be abnormal in this disorder. An excessive pruning of the prefrontal corticocortical, and corticosubcortical synapses, perhaps involving the excitatory glutamatergic inputs to pyramidal neurons, may underlie schizophrenia. A reciprocal failure of pruning in certain subcortical structures, such as lenticular nuclei, may also occur. Several developmental trajectories, related to early brain insults as well as genetic factors affecting postnatal neurodevelopment, could lead to the illness. These models would have heuristic value and may be consistent with several known facts of the schizophrenic illness, such as its onset in adolescence and the gender differences in its onset and natural course. The relationship between these models and other etiological models of schizophrenia are summarized and approaches to test relevant hypotheses are discussed.

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Year:  1994        PMID: 7932285     DOI: 10.1016/0022-3956(94)90009-4

Source DB:  PubMed          Journal:  J Psychiatr Res        ISSN: 0022-3956            Impact factor:   4.791


  131 in total

Review 1.  Animal models of schizophrenia: a critical review.

Authors:  E R Marcotte; D M Pearson; L K Srivastava
Journal:  J Psychiatry Neurosci       Date:  2001-11       Impact factor: 6.186

Review 2.  The hippocampus in schizophrenia: a review of the neuropathological evidence and its pathophysiological implications.

Authors:  Paul J Harrison
Journal:  Psychopharmacology (Berl)       Date:  2004-03-06       Impact factor: 4.530

3.  Could stress cause psychosis in individuals vulnerable to schizophrenia?

Authors:  Cheryl Corcoran; Lilianne Mujica-Parodi; Scott Yale; David Leitman; Dolores Malaspina
Journal:  CNS Spectr       Date:  2002-01       Impact factor: 3.790

Review 4.  Approaches for adolescents with an affected family member with schizophrenia.

Authors:  Vaibhav A Diwadkar; Konasale M Prasad; Matcheri S Keshavan
Journal:  Curr Psychiatry Rep       Date:  2004-08       Impact factor: 5.285

5.  Blockade of N-methyl-D-aspartate receptor activation suppresses learning-induced synaptic elimination.

Authors:  J Bock; K Braun
Journal:  Proc Natl Acad Sci U S A       Date:  1999-03-02       Impact factor: 11.205

Review 6.  The environment and susceptibility to schizophrenia.

Authors:  Alan S Brown
Journal:  Prog Neurobiol       Date:  2010-10-16       Impact factor: 11.685

7.  The anatomical distance of functional connections predicts brain network topology in health and schizophrenia.

Authors:  Aaron F Alexander-Bloch; Petra E Vértes; Reva Stidd; François Lalonde; Liv Clasen; Judith Rapoport; Jay Giedd; Edward T Bullmore; Nitin Gogtay
Journal:  Cereb Cortex       Date:  2012-01-23       Impact factor: 5.357

Review 8.  The development of psychotic disorders in adolescence: a potential role for hormones.

Authors:  Hanan D Trotman; Carrie W Holtzman; Arthur T Ryan; Daniel I Shapiro; Allison N MacDonald; Sandra M Goulding; Joy L Brasfield; Elaine F Walker
Journal:  Horm Behav       Date:  2013-07       Impact factor: 3.587

9.  Using Cognitive Neuroscience to Improve Mental Health Treatment: A Comprehensive Review.

Authors:  Jessica A Wojtalik; Shaun M Eack; Matthew J Smith; Matcheri S Keshavan
Journal:  J Soc Social Work Res       Date:  2018-04-27

Review 10.  Biomarkers in psychosis: an approach to early identification and individualized treatment.

Authors:  Heline Mirzakhanian; Fiza Singh; Kristin S Cadenhead
Journal:  Biomark Med       Date:  2014       Impact factor: 2.851

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