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Review
. 2019 Oct 23:8:F1000 Faculty Rev-1791.
doi: 10.12688/f1000research.20332.1. eCollection 2019.

Recent advances in understanding neocortical development

Affiliations
Review

Recent advances in understanding neocortical development

Victor Borrell. F1000Res. .

Abstract

The neocortex is the largest part of the mammalian brain and is the seat of our higher cognitive functions. This outstanding neural structure increased massively in size and complexity during evolution in a process recapitulated today during the development of extant mammals. Accordingly, defects in neocortical development commonly result in severe intellectual and social deficits. Thus, understanding the development of the neocortex benefits from understanding its evolution and disease and also informs about their underlying mechanisms. Here, I briefly summarize the most recent and outstanding advances in our understanding of neocortical development and focus particularly on dorsal progenitors and excitatory neurons. I place special emphasis on the specification of neural stem cells in distinct classes and their proliferation and production of neurons and then discuss recent findings on neuronal migration. Recent discoveries on the genetic evolution of neocortical development are presented with a particular focus on primates. Progress on all these fronts is being accelerated by high-throughput gene expression analyses and particularly single-cell transcriptomics. I end with novel insights into the involvement of microglia in embryonic brain development and how improvements in cultured cerebral organoids are gradually consolidating them as faithful models of neocortex development in humans.

Keywords: OSVZ; Radial Glia; basal progenitors; cell lineage; cerebral cortex evolution; cortex folding; human-specific neocortex; neocortical development; neurogenesis; progenitor proliferation.

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Conflict of interest statement

No competing interests were disclosed.Competing interests: Laurent Nguyen has written with Victor Borrell on one consortium paper in the last three years.No competing interests were disclosed.

References

    1. Malatesta P, Hartfuss E, Götz M: Isolation of radial glial cells by fluorescent-activated cell sorting reveals a neuronal lineage. Development. 2000;127(24):5253–63. - PubMed
    1. Noctor SC, Flint AC, Weissman TA, et al. : Neurons derived from radial glial cells establish radial units in neocortex. Nature. 2001;409(6821):714–20. 10.1038/35055553 - DOI - PubMed
    2. F1000 Recommendation

    1. Noctor SC, Martínez-Cerdeño V, Ivic L, et al. : Cortical neurons arise in symmetric and asymmetric division zones and migrate through specific phases. Nat Neurosci. 2004;7(2):136–44. 10.1038/nn1172 - DOI - PubMed
    2. F1000 Recommendation

    1. Haubensak W, Attardo A, Denk W, et al. : Neurons arise in the basal neuroepithelium of the early mammalian telencephalon: a major site of neurogenesis. Proc Natl Acad Sci U S A. 2004;101(9):3196–201. 10.1073/pnas.0308600100 - DOI - PMC - PubMed
    2. F1000 Recommendation

    1. Miyata T, Kawaguchi A, Saito K, et al. : Asymmetric production of surface-dividing and non-surface-dividing cortical progenitor cells. Development. 2004;131(13):3133–45. 10.1242/dev.01173 - DOI - PubMed