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The Importance of Studying Human Brain Cover
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|Aug 2021

References

  1. 1. DeFelipe J. Neuroanatomy and global neuroscience. Neuron 2017;95(1): 14-18.10.1016/j.neuron.2017.05.02728683264
  2. 2. Williams MF. Primate encephalization and intelligence. Med Hypotheses 2002;58(4): 284–90.10.1054/mehy.2001.151612027521
  3. 3. Pontarotti, Pierre (2016) Evolutionary Biology: Convergent Evolution, Evolution of Complex Traits. Springer. p. 74.
  4. 4. Juric-Sekhar G, Hevner RF. Malformations of cerebral cortex development: molecules and mechanisms. Annu Rev Pathol 2019;14: 293-318.10.1146/annurev-pathmechdis-012418-012927693868730677308
  5. 5. Jones EG. Neuroanatomy: Cajal and after Cajal. Brain Res Brain Res Rev 2007;55: 248.10.1016/j.brainresrev.2007.06.00117659350
  6. 6. Defelipe J. The evolution of the brain, the human nature of cortical circuits, and intellectual creativity Front Neuroanat 2011;5: 29.
  7. 7. Ferreira FR, Nogueira MI, Defelipe J. The influence of James and Darwin on Cajal and his research into the neuron theory and evolution of the nervous system. Front Neuroanat 2014;8: 1.10.3389/fnana.2014.00001390523824523676
  8. 8. Jones EG. The origins of cortical interneurons: mouse versus monkey and human. Cereb Cortex 2009;19(9): 1953-6.10.1093/cercor/bhp08819429862
  9. 9. Duque A, Krsnik Z, Kostović I, Rakic P. Secondary expansion of the transient subplate zone in the developing cerebrum of human and nonhuman primates. Proc Natl Acad Sci U S A 2016;113(35): 9892-7.10.1073/pnas.1610078113502458927503885
  10. 10. Rash BG, Duque A, Morozov YM, Arellano JI, Micali N, Rakic P. Gliogenesis in the outer subventricular zone promotes enlargement and gyrification of the primate cerebrum. Proc Natl Acad Sci U S A 2019;116(14): 7089-94.10.1073/pnas.1822169116645269430894491
  11. 11. Radonjić NV, Ayoub AE, Memi F, Yu X, Maroof A, Jakovcevski I, Anderson SA, Rakic P, Zecevic N. Diversity of cortical interneurons in primates: the role of the dorsal proliferative niche. Cell Rep 2014a;9(6):2139-2151.10.1016/j.celrep.2014.11.026430645925497090
  12. 12. Saper CB. An open letter to our readers on the use of antibodies. J Comp Neurol 2005;493: 477–8.10.1002/cne.2083916304632
  13. 13. Jakovcevski I, Zecevic N. Olig transcription factors are expressed in oligodendrocyte and neuronal cells in human fetal CNS. J Neurosci 2005;25(44): 10064-73.10.1523/JNEUROSCI.2324-05.2005672579816267213
  14. 14. Jakovcevski I, Filipovic R, Mo Z, Rakic S, Zecevic N. Oligodendrocyte development and the onset of myelination in the human fetal brain. Front Neuroanat 2009;3:5.10.3389/neuro.05.005.2009269467419521542
  15. 15. Ortega JA, Memi F, Radonjic N, Filipovic R, Bagasrawala I, Zecevic N, Jakovcevski I. The subventricular zone: a key player in human neocortical development. Neuroscientist 2018;24(2): 156-70.10.1177/107385841769100929254416
  16. 16. Letinic K, Zoncu R, Rakic P. Origin of GABAergic neurons in the human neocortex. Nature 2002;417(6889): 645-9.10.1038/nature0077912050665
  17. 17. Kohwi M, Petryniak MA, Long JE, Ekker M, Obata K, Yanagawa Y, Rubenstein JL, Alvarez-Buylla A. A subpopulation of olfactory bulb GABAergic interneurons is derived from Emx1- and Dlx5/6-expressing progenitors. J Neurosci 2007;27: 6878-91.10.1523/JNEUROSCI.0254-07.2007491736217596436
  18. 18. Inta D, Alfonso J, von Engelhardt J, Kreuzberg MM, Meyer AH, van Hooft JA, Monyer H. Neurogenesis and widespread forebrain migration of distinct GABAergic neurons from the postnatal subventricular zone. Proc Natl Acad Sci U S A 2008;105: 20994-9.10.1073/pnas.0807059105260541719095802
  19. 19. Haeckel, E. (1866) Generelle morphologie der organismen, vol 1, 2. Verlag Georg Reimer, Berlin.10.1515/9783110848281
  20. 20. Sousa AMM, Zhu Y, Raghanti MA, et al. Molecular and cellular reorganization of neural circuits in the human lineage. Science 2017;358(6366): 1027-32.10.1126/science.aan3456577607429170230
  21. 21. Fazzari P, Mortimer N, Yabut O, Vogt D, Pla R. Cortical distribution of GABAergic interneurons is determined by migration time and brain size. Development 2020;dev.185033. doi:10.1242/dev.18503310.1242/dev.185033739063732586977
  22. 22. Anderson S, Mione M, Yun K, Rubenstein JL. Differential origins of neocortical projection and local circuit neurons: role of Dlx genes in neocortical interneuronogenesis. Cereb Cortex 1999;9(6): 646-54.10.1093/cercor/9.6.64610498283
  23. 23. Rakic S, Zecevic N. Emerging complexity of layer I in human cerebral cortex. Cereb Cortex 2003;13(10): 1072-83.10.1093/cercor/13.10.107212967924
  24. 24. Marín O, Yaron A, Bagri A, Tessier-Lavigne M, Rubenstein JL. Sorting of striatal and cortical interneurons regulated by semaphorin-neuropilin interactions. Science 2001;293(5531): 872-5.10.1126/science.106189111486090
  25. 25. Jakovcevski I, Mayer N, Zecevic N. Multiple origins of human neocortical interneurons are supported by distinct expression of transcription factors. Cereb Cortex 2011;21(8): 1771-82.10.1093/cercor/bhq245313851121139075
  26. 26. Zecevic N, Hu F, Jakovcevski I. Interneurons in the developing human neocortex. Dev Neurobiol 2011;71(1): 18-33.10.1002/dneu.20812311705921154907
  27. 27. Hansen, DV, Lui, JH, Flandin, P, Yoshikawa, K, Rubenstein, JL, Alvarez-Buylla, A, et al. Non-epithelial stem cells and cortical interneuron production in the human ganglionic eminences. Nat Neurosci 2013;16: 1576–87.10.1038/nn.3541419171824097039
  28. 28. Ma, T, Wang, C, Wang, L, Zhou, X, Tian, M, Zhang, Q et al. Subcortical origins of human and monkey neocortical interneurons. Nat Neurosci 2013;16: 1588–97.10.1038/nn.353624097041
  29. 29. Arshad, A, Vose, LR, Vinukonda, G, Hu, F, Yoshikawa, K, Csiszar, A et al. Extended production of cortical interneurons into the third trimester of human gestation. Cereb Cortex 2016;26: 2242–56.10.1093/cercor/bhv074483029725882040
  30. 30. Raju CS, Spatazza J, Stanco A, et al. Secretagogin is Expressed by Developing Neocortical GABAergic Neurons in Humans but not Mice and Increases Neurite Arbor Size and Complexity. Cereb Cortex 2018;28(6): 1946-58.10.1093/cercor/bhx101601905228449024
  31. 31. Molnár Z, Clowry GJ, Šestan N, et al. New insights into the development of the human cerebral cortex. J Anat 2019;235(3): 432-51.10.1111/joa.13055670424531373394
  32. 32. Altman J, Das GD. Autoradiographic and histological evidence of postnatal hippocampal neurogenesis in rats. J Comp Neurol 1965;124(3): 319-35.10.1002/cne.9012403035861717
  33. 33. Gross CG. Neurogenesis in the adult brain: death of a dogma. Nat Rev Neurosci 2000;1: 67–73.10.1038/35036235
  34. 34. Sorrells S, Paredes M, Cebrian-Silla A. et al. Human hippocampal neurogenesis drops sharply in children to undetectable levels in adults. Nature 2018;555: 377–81.10.1038/nature25975
  35. 35. Boldrini M, Fulmore CA, Tartt AN, et al. Human hippocampal neurogenesis persists throughout aging. Cell Stem Cell 2018;22(4): 589-99.e5.10.1016/j.stem.2018.03.015
  36. 36. Kempermann G, Gage FH, Aigner L, et al. Human adult neurogenesis: evidence and remaining questions. Cell Stem Cell 2018;23(1): 25-30.10.1016/j.stem.2018.04.004
  37. 37. Boldog E, Bakken TE, Hodge RD, et al. Transcriptomic and morphophysiological evidence for a specialized human cortical GABAergic cell type. Nat Neurosci 2018;21(9): 1185-95.10.1038/s41593-018-0205-2
  38. 38. Gabbott PL, Jays PR, Bacon SJ. Calretinin neurons in human medial prefrontal cortex (areas 24a,b,c, 32’, and 25). J Comp Neurol.1997;381(4): 389-410.10.1002/(SICI)1096-9861(19970519)381:4<;389::AID-CNE1>3.0.CO;2-Z
  39. 39. Radonjić NV, Ortega JA, Memi F, Dionne K, Jakovcevski I, Zecevic N. The complexity of the calretinin-expressing progenitors in the human cerebral cortex. Front Neuroanat 2014b;8: 82.10.3389/fnana.2014.00082
  40. 40. Reinchisi G, Ijichi K, Glidden N, Jakovcevski I, Zecevic N. COUP-TFII expressing interneurons in human fetal forebrain. Cereb Cortex 2012;22(12): 2820-30.10.1093/cercor/bhr359
  41. 41. Stanković-Vulović M, Zivanović-Macuzić I, Sazdanović P, Jeremić D, Tosevski J. [Morphology of neurons of human subiculum proper]. Med Pregl 2010;63(5-6): 356-60.10.2298/MPNS1006356S
  42. 42. Vulovic M, Zivanovic-Macuzic I, Jeremic D, Stojadinovic D, Tanaskovic I, Popovic-Deusic S, Peljto A, Tosevski J. Morphometric characteristics of the neurons of the human subiculum proper. Archives of Biological Sciences 2012;64(3): 1157-63.10.2298/ABS1203157V
  43. 43. Radonjić NV, Jakovcevski I, Bumbaširević V, Petronijević ND. Perinatal phencyclidine administration decreases the density of cortical interneurons and increases the expression of neuregulin-1. Psychopharmacology (Berl) 2013;227(4): 673-83.10.1007/s00213-013-2999-723380917
  44. 44. Schmalbach B, Lepsveridze E, Djogo N, Papashvili G, Kuang F, Leshchyns’ka I, Sytnyk V, Nikonenko AG, Dityatev A, Jakovcevski I, Schachner M. Age-dependent loss of parvalbumin-expressing hippocampal interneurons in mice deficient in CHL1, a mental retardation and schizophrenia susceptibility gene. J Neurochem 2015;135(4): 830-44.10.1111/jnc.1328426285062
  45. 45. Koszła O, Targowska-Duda KM, Kędzierska E, Kaczor AA. In vitro and in vivo models for the investigation of potential drugs against schizophrenia. Biomolecules 2020;10(1): 160.10.3390/biom10010160702257831963851
  46. 46. Cui YF, Hargus G, Xu JC, et al. Embryonic stem cellderived L1 overexpressing neural aggregates enhance recovery in Parkinsonian mice. Brain 2010;133(Pt 1): 189-204.10.1093/brain/awp29019995872
  47. 47. Djogo N, Jakovcevski I, Müller C, et al. Adhesion molecule L1 binds to amyloid beta and reduces Alzheimer’s disease pathology in mice. Neurobiol Dis 2013;56: 104-15.10.1016/j.nbd.2013.04.01423639788
  48. 48. Hargus G, Bernreuther C, Dihné M, Johann V, et al. Neural cell adhesion molecule L1-transfected embryonic stem cells promote functional recovery after excitotoxic lesion of the mouse striatum. J Neurosci 2006;26(45): 11532-9.10.1523/JNEUROSCI.2688-06.2006667477917093074
  49. 49. Momčilović M, Stamenković V, Jovanović M, Andjus PR, Jakovčevski I, Schachner M, Miljković Đ. Tenascin- C deficiency protects mice from experimental autoimmune encephalomyelitis. J Neuroimmunol 2017;302: 1-6.10.1016/j.jneuroim.2016.12.00127974153
  50. 50. Filipovic R, Jakovcevski I, Zecevic N. GRO-alpha and CXCR2 in the human fetal brain and multiple sclerosis lesions. Dev Neurosci 2003;25(2-4): 279-90.10.1159/00007227512966224
  51. 51. Alzheimer A, Stelzmann RA, Schnitzlein HN, Murtagh FR. An English translation of Alzheimer’s 1907 paper, “Uber eine eigenartige Erkankung der Hirnrinde”. Clin Anat 1995;8(6): 429-31.10.1002/ca.9800806128713166
  52. 52. Lewy FH. Zur pathologischen Anatomie der Paralysis agitans. Dtsch Ztschr Nervenheilkunde 1914;50: 50–5.
  53. 53. Scoville WB, Milner B. Loss of recent memory after bilateral hippocampal lesions. J Neurol Neurosurg Psychiatry 1957;20(1): 11–21.10.1136/jnnp.20.1.1149722913406589
  54. 54. Anderson, P., Morris, R., Amaral, D., Bliss, T. & I’Keefe. (2007) The hippocampus book (first ed.). New York: Oxford University Press.10.1093/acprof:oso/9780195100273.001.0001
  55. 55. Corkin S, Amaral DG, González RG, Johnson KA, Hyman BT. H. M.’s medial temporal lobe lesion: findings from magnetic resonance imaging. J Neurosci 1997;17(10): 3964-79.10.1523/JNEUROSCI.17-10-03964.1997
  56. 56. Annese J, Schenker-Ahmed NM, Bartsch H, Maechler P, Sheh C, Thomas N, Kayano J, Ghatan A, Bresler N, Frosch MP, Klaming R, Corkin S. Postmortem examination of patient H.M.’s brain based on histological sectioning and digital 3D reconstruction. Nat Commun 2014;5: 3122.10.1038/ncomms4122391684324473151
DOI: https://doi.org/10.2478/sjecr-2020-0065 | Journal eISSN: 2956-2090 | Journal ISSN: 2956-0454
Language: English
Submitted on: Jul 31, 2020
Accepted on: Aug 20, 2020
Published on: Aug 5, 2021
Published by: University of Kragujevac, Faculty of Medical Sciences
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2021 Maja Jakovcevski, Slobodanka Mitrović, Igor Jakovcevski, published by University of Kragujevac, Faculty of Medical Sciences
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.

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