Literature DB >> 29111135

Digital gene atlas of neonate common marmoset brain.

Tomomi Shimogori1, Ayumi Abe2, Yasuhiro Go3, Tsutomu Hashikawa2, Noriyuki Kishi4, Satomi S Kikuchi2, Yoshiaki Kita2, Kimie Niimi5, Hirozumi Nishibe2, Misako Okuno4, Kanako Saga2, Miyano Sakurai2, Masae Sato2, Tsuna Serizawa6, Sachie Suzuki2, Eiki Takahashi5, Mami Tanaka2, Shoji Tatsumoto7, Mitsuhiro Toki6, Mami U2, Yan Wang2, Karl J Windak2, Haruhiko Yamagishi6, Keiko Yamashita2, Tomoko Yoda2, Aya C Yoshida2, Chihiro Yoshida2, Takuro Yoshimoto5, Hideyuki Okano8.   

Abstract

Interest in the common marmoset (Callithrix jacchus) as a primate model animal has grown recently, in part due to the successful demonstration of transgenic marmosets. However, there is some debate as to the suitability of marmosets, compared to more widely used animal models, such as the macaque monkey and mouse. Especially, the usage of marmoset for animal models of human cognition and mental disorders, is still yet to be fully explored. To examine the prospects of the marmoset model for neuroscience research, the Marmoset Gene Atlas (https://gene-atlas.bminds.brain.riken.jp/) provides a whole brain gene expression atlas in the common marmoset. We employ in situ hybridization (ISH) to systematically analyze gene expression in neonate marmoset brains, which allows us to compare expression with other model animals such as mouse. We anticipate that these data will provide sufficient information to develop tools that enable us to reveal marmoset brain structure, function, cellular and molecular organization for primate brain research.
Copyright © 2017 Elsevier Ireland Ltd and Japan Neuroscience Society. All rights reserved.

Entities:  

Keywords:  Common marmoset; Comparative analysis; Digital atlas; High throughput ISH analysis; Mental disorder

Mesh:

Year:  2017        PMID: 29111135     DOI: 10.1016/j.neures.2017.10.009

Source DB:  PubMed          Journal:  Neurosci Res        ISSN: 0168-0102            Impact factor:   3.304


  11 in total

Review 1.  Interplay of gut microbiota and oxidative stress: Perspective on neurodegeneration and neuroprotection.

Authors:  Shruti Shandilya; Sandeep Kumar; Niraj Kumar Jha; Kavindra Kumar Kesari; Janne Ruokolainen
Journal:  J Adv Res       Date:  2021-09-17       Impact factor: 12.822

2.  Role of an Atypical Cadherin Gene, Cdh23 in Prepulse Inhibition, and Implication of CDH23 in Schizophrenia.

Authors:  Shabeesh Balan; Tetsuo Ohnishi; Akiko Watanabe; Hisako Ohba; Yoshimi Iwayama; Manabu Toyoshima; Tomonori Hara; Yasuko Hisano; Yuki Miyasaka; Tomoko Toyota; Chie Shimamoto-Mitsuyama; Motoko Maekawa; Shusuke Numata; Tetsuro Ohmori; Tomomi Shimogori; Yoshiaki Kikkawa; Takeshi Hayashi; Takeo Yoshikawa
Journal:  Schizophr Bull       Date:  2021-07-08       Impact factor: 9.306

3.  Measurement of the α1-proteinase inhibitor (α1-antitrypsin) of common marmoset and intestinal protein loss in wasting syndrome.

Authors:  Kimie Niimi; Hiromasa Morishita; Masaya Usui; Reiko Ito; Shino Kurata; Nobuko Mataga; Eiki Takahashi
Journal:  Biosci Rep       Date:  2019-07-08       Impact factor: 3.840

Review 4.  The nonhuman primate neuroimaging and neuroanatomy project.

Authors:  Takuya Hayashi; Yujie Hou; Matthew F Glasser; Joonas A Autio; Kenneth Knoblauch; Miho Inoue-Murayama; Tim Coalson; Essa Yacoub; Stephen Smith; Henry Kennedy; David C Van Essen
Journal:  Neuroimage       Date:  2021-01-20       Impact factor: 6.556

5.  Cellular-resolution gene expression profiling in the neonatal marmoset brain reveals dynamic species- and region-specific differences.

Authors:  Yoshiaki Kita; Hirozumi Nishibe; Yan Wang; Tsutomu Hashikawa; Satomi S Kikuchi; Mami U; Aya C Yoshida; Chihiro Yoshida; Takashi Kawase; Shin Ishii; Henrik Skibbe; Tomomi Shimogori
Journal:  Proc Natl Acad Sci U S A       Date:  2021-05-04       Impact factor: 11.205

6.  Conservation of the Direct and Indirect Pathway Dichotomy in Mouse Caudal Striatum With Uneven Distribution of Dopamine Receptor D1- and D2-Expressing Neurons.

Authors:  Kumiko Ogata; Fuko Kadono; Yasuharu Hirai; Ken-Ichi Inoue; Masahiko Takada; Fuyuki Karube; Fumino Fujiyama
Journal:  Front Neuroanat       Date:  2022-02-04       Impact factor: 3.856

7.  A natural marmoset model of genetic generalized epilepsy.

Authors:  Xiangyu Yang; Zhitang Chen; Ziying Wang; Guang He; Zhiqiang Li; Yongyong Shi; Neng Gong; Binglei Zhao; Yifang Kuang; Eiki Takahashi; Weidong Li
Journal:  Mol Brain       Date:  2022-02-10       Impact factor: 4.041

8.  Transcriptomic architecture of nuclei in the marmoset CNS.

Authors:  Jing-Ping Lin; Hannah M Kelly; Yeajin Song; Riki Kawaguchi; Daniel H Geschwind; Steven Jacobson; Daniel S Reich
Journal:  Nat Commun       Date:  2022-09-21       Impact factor: 17.694

9.  Molecular cell identities in the mediodorsal thalamus of infant mice and marmoset.

Authors:  Kohei Onishi; Satomi S Kikuchi; Takaya Abe; Tomoko Tokuhara; Tomomi Shimogori
Journal:  J Comp Neurol       Date:  2021-07-05       Impact factor: 3.215

10.  ECE2 regulates neurogenesis and neuronal migration during human cortical development.

Authors:  Isabel Y Buchsbaum; Pavel Kielkowski; Grazia Giorgio; Adam C O'Neill; Rossella Di Giaimo; Christina Kyrousi; Shahryar Khattak; Stephan A Sieber; Stephen P Robertson; Silvia Cappello
Journal:  EMBO Rep       Date:  2020-03-24       Impact factor: 8.807

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