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Pregled bibliografske jedinice broj: 1195742

Prenatal development of the human entorhinal cortex


Šimić, Goran; Krsnik, Željka; Knezović, Vinka; Kelović, Zlatko; Mathiasen, Mathias Lysholt; Junaković, Alisa; Radoš, Milan; Mulc, Damir; Španić, Ena; Quattrocolo, Giulia et al.
Prenatal development of the human entorhinal cortex // Journal of comparative neurology, 530 (2022), 15; 2711-2748 doi:10.1002/cne.25344 (međunarodna recenzija, članak, znanstveni)


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Naslov
Prenatal development of the human entorhinal cortex

Autori
Šimić, Goran ; Krsnik, Željka ; Knezović, Vinka ; Kelović, Zlatko ; Mathiasen, Mathias Lysholt ; Junaković, Alisa ; Radoš, Milan ; Mulc, Damir ; Španić, Ena ; Quattrocolo, Giulia ; Hall, Vanessa Jane ; Zaborszky, Laszlo ; Vukšić, Mario ; Olucha Bordonau, Francisco ; Kostović, Ivica ; Witter, Menno P. ; Hof, Patrick R.

Izvornik
Journal of comparative neurology (0021-9967) 530 (2022), 15; 2711-2748

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
acetylcholinesterase ; Alzheimer’s disease ; consciousness ; cytoarchitecture ; entorhinal cortex ; lamina dissecans ; perforant path ; periallocortex ; schizophrenia ; temporal lobe epilepsy

Sažetak
Little is known about the development of the human entorhinal cortex (EC), a major hub in a widespread network for learning and memory, spatial navigation, high-order processing of object information, multimodal integration, attention and awareness, emotion, motivation, and perception of time. We analyzed a series of 20 fetal and two adult human brains using Nissl stain, acetylcholinesterase (AChE) histochemistry, and immunocytochemistry for myelin basic protein (MBP), neuronal nuclei antigen (NeuN), a pan-axonal neurofilament marker, and synaptophysin, as well as postmortem 3T MRI. In comparison with other parts of the cerebral cortex, the cytoarchitectural differentiation of the EC begins remarkably early, in the 10th week of gestation (w.g.). The differentiation occurs in a superficial magnocellular layer in the deep part of the marginal zone, accompanied by cortical plate (CP) condensation and multilayering of the deep part of CP. These processes last until the 13-14th w.g. At 14 w.g., the superficial lamina dissecans (LD) is visible, which divides the CP into the lamina principalis externa (LPE) and interna (LPI). Simultaneously, the rostral LPE separates into vertical cell-dense islands, whereas in the LPI, the deep LD emerges as a clear acellular layer. In the 16th w.g., the LPE remodels into vertical cell-dense and cell-sparse zones with a caudorostral gradient. At 20 w.g., NeuN immunoreactivity is most pronounced in the islands of layer II cells, whereas migration and differentiation inside-out gradients are seen simultaneously in both the upper (LPE) and the lower (LPI) pyramidal layers. At this stage, the EC adopts for the first time an adult-like cytoarchitectural organization, the superficial LD becomes discernible by 3T MRI, MBP- expressing oligodendrocytes first appear in the fimbria and the perforant path (PP) penetrates the subiculum to reach its molecular layer and travels along through the Cornu Ammonis fields to reach the suprapyramidal blade of the dentate gyrus, whereas the entorhinal-dentate branch perforates the hippocampal sulcus about 2-3 weeks later. The first AChE reactivity appears as longitudinal stripes at 23 w.g. in layers I and II of the rostrolateral EC and then also as AChE-positive in-growing fibers in islands of superficial layer III and layer II neurons. At 40 w.g., myelination of the PP starts as patchy MBP-immunoreactive oligodendrocytes and their processes. Our results refute the possibility of an inside-out pattern of the EC development and support the key role of layer II prospective stellate cells in the EC lamination. As the early cytoarchitectural differentiation of the EC is paralleled by the neurochemical development, these developmental milestones in EC structure and connectivity have implications for understanding its normal function, including its puzzling modular organization and potential contribution to consciousness content (awareness), as well as for its insufficiently explored deficits in developmental, psychiatric, and degenerative brain disorders.

Izvorni jezik
Engleski

Znanstvena područja
Biologija, Temeljne medicinske znanosti, Kliničke medicinske znanosti, Psihologija, Kognitivna znanost (prirodne, tehničke, biomedicina i zdravstvo, društvene i humanističke znanosti)



POVEZANOST RADA


Ustanove:
Medicinski fakultet, Zagreb

Poveznice na cjeloviti tekst rada:

doi

Citiraj ovu publikaciju:

Šimić, Goran; Krsnik, Željka; Knezović, Vinka; Kelović, Zlatko; Mathiasen, Mathias Lysholt; Junaković, Alisa; Radoš, Milan; Mulc, Damir; Španić, Ena; Quattrocolo, Giulia et al.
Prenatal development of the human entorhinal cortex // Journal of comparative neurology, 530 (2022), 15; 2711-2748 doi:10.1002/cne.25344 (međunarodna recenzija, članak, znanstveni)
Šimić, G., Krsnik, Ž., Knezović, V., Kelović, Z., Mathiasen, M., Junaković, A., Radoš, M., Mulc, D., Španić, E. & Quattrocolo, G. (2022) Prenatal development of the human entorhinal cortex. Journal of comparative neurology, 530 (15), 2711-2748 doi:10.1002/cne.25344.
@article{article, author = {\v{S}imi\'{c}, Goran and Krsnik, \v{Z}eljka and Knezovi\'{c}, Vinka and Kelovi\'{c}, Zlatko and Mathiasen, Mathias Lysholt and Junakovi\'{c}, Alisa and Rado\v{s}, Milan and Mulc, Damir and \v{S}pani\'{c}, Ena and Quattrocolo, Giulia and Hall, Vanessa Jane and Zaborszky, Laszlo and Vuk\v{s}i\'{c}, Mario and Olucha Bordonau, Francisco and Kostovi\'{c}, Ivica and Witter, Menno P. and Hof, Patrick R.}, year = {2022}, pages = {2711-2748}, DOI = {10.1002/cne.25344}, keywords = {acetylcholinesterase, Alzheimer’s disease, consciousness, cytoarchitecture, entorhinal cortex, lamina dissecans, perforant path, periallocortex, schizophrenia, temporal lobe epilepsy}, journal = {Journal of comparative neurology}, doi = {10.1002/cne.25344}, volume = {530}, number = {15}, issn = {0021-9967}, title = {Prenatal development of the human entorhinal cortex}, keyword = {acetylcholinesterase, Alzheimer’s disease, consciousness, cytoarchitecture, entorhinal cortex, lamina dissecans, perforant path, periallocortex, schizophrenia, temporal lobe epilepsy} }
@article{article, author = {\v{S}imi\'{c}, Goran and Krsnik, \v{Z}eljka and Knezovi\'{c}, Vinka and Kelovi\'{c}, Zlatko and Mathiasen, Mathias Lysholt and Junakovi\'{c}, Alisa and Rado\v{s}, Milan and Mulc, Damir and \v{S}pani\'{c}, Ena and Quattrocolo, Giulia and Hall, Vanessa Jane and Zaborszky, Laszlo and Vuk\v{s}i\'{c}, Mario and Olucha Bordonau, Francisco and Kostovi\'{c}, Ivica and Witter, Menno P. and Hof, Patrick R.}, year = {2022}, pages = {2711-2748}, DOI = {10.1002/cne.25344}, keywords = {acetylcholinesterase, Alzheimer’s disease, consciousness, cytoarchitecture, entorhinal cortex, lamina dissecans, perforant path, periallocortex, schizophrenia, temporal lobe epilepsy}, journal = {Journal of comparative neurology}, doi = {10.1002/cne.25344}, volume = {530}, number = {15}, issn = {0021-9967}, title = {Prenatal development of the human entorhinal cortex}, keyword = {acetylcholinesterase, Alzheimer’s disease, consciousness, cytoarchitecture, entorhinal cortex, lamina dissecans, perforant path, periallocortex, schizophrenia, temporal lobe epilepsy} }

Časopis indeksira:


  • Current Contents Connect (CCC)
  • Web of Science Core Collection (WoSCC)
    • Science Citation Index Expanded (SCI-EXP)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus
  • MEDLINE


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