Literature DB >> 26417888

Brain size and limits to adult neurogenesis.

Mercedes F Paredes1, Shawn F Sorrells1,2, Jose M Garcia-Verdugo3, Arturo Alvarez-Buylla4.   

Abstract

The walls of the cerebral ventricles in the developing embryo harbor the primary neural stem cells from which most neurons and glia derive. In many vertebrates, neurogenesis continues postnatally and into adulthood in this region. Adult neurogenesis at the ventricle has been most extensively studied in organisms with small brains, such as reptiles, birds, and rodents. In reptiles and birds, these progenitor cells give rise to young neurons that migrate into many regions of the forebrain. Neurogenesis in adult rodents is also relatively widespread along the lateral ventricles, but migration is largely restricted to the rostral migratory stream into the olfactory bulb. Recent work indicates that the wall of the lateral ventricle is highly regionalized, with progenitor cells giving rise to different types of neurons depending on their location. In species with larger brains, young neurons born in these spatially specified domains become dramatically separated from potential final destinations. Here we hypothesize that the increase in size and topographical complexity (e.g., intervening white matter tracts) in larger brains may severely limit the long-term contribution of new neurons born close to, or in, the ventricular wall. We compare the process of adult neuronal birth, migration, and integration across species with different brain sizes, and discuss how early regional specification of progenitor cells may interact with brain size and affect where and when new neurons are added.
© 2015 The Authors The Journal of Comparative Neurology Published by Wiley Periodicals, Inc.

Entities:  

Keywords:  brain evolution; comparative neuroanatomy; neuronal replacement; plasticity; regional specification

Mesh:

Year:  2015        PMID: 26417888      PMCID: PMC5047485          DOI: 10.1002/cne.23896

Source DB:  PubMed          Journal:  J Comp Neurol        ISSN: 0021-9967            Impact factor:   3.215


  198 in total

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6.  Postnatal mouse subventricular zone neuronal precursors can migrate and differentiate within multiple levels of the developing neuraxis.

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Authors:  Thomas S Jacques; Alexander Swales; Monika J Brzozowski; Nico V Henriquez; Jacqueline M Linehan; Zaman Mirzadeh; Catherine O' Malley; Heike Naumann; Arturo Alvarez-Buylla; Sebastian Brandner
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10.  Doublecortin-expressing cells persist in the associative cerebral cortex and amygdala in aged nonhuman primates.

Authors:  Xue-Mei Zhang; Yan Cai; Yaping Chu; Er-Yun Chen; Jia-Chun Feng; Xue-Gang Luo; Kun Xiong; Robert G Struble; Richard W Clough; Peter R Patrylo; Jeffrey H Kordower; Xiao-Xin Yan
Journal:  Front Neuroanat       Date:  2009-10-13       Impact factor: 3.856

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  43 in total

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6.  Secretagogin-dependent matrix metalloprotease-2 release from neurons regulates neuroblast migration.

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Journal:  Proc Natl Acad Sci U S A       Date:  2017-02-21       Impact factor: 11.205

7.  Positive Controls in Adults and Children Support That Very Few, If Any, New Neurons Are Born in the Adult Human Hippocampus.

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Journal:  Cell Stem Cell       Date:  2018-02-01       Impact factor: 24.633

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