Kiyokazu Agata

Department of Biophysics Kyoto University (Japan) 
"Kiyokazu Agata"


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Tokindo S. Okada grad student (Neurotree)


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Ekasit Sonpho grad student (Neurotree)
Rio Tsutsumi grad student Gakushuin University
Francesc Cebrià post-doc 2000-2002 RIKEN Center for Developmental Biology (Evolution Tree)
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Satoh A, Kashimoto R, Ohashi A, et al. (2022) An approach for elucidating dermal fibroblast dedifferentiation in amphibian limb regeneration. Zoological Letters. 8: 6
Auwal MA, Kashima M, Nishimura O, et al. (2020) Identification and characterization of a fibroblast growth factor gene in the planarian Dugesia japonica. Development, Growth & Differentiation
Sonpho E, Wootthichairangsan C, Ishida M, et al. (2020) ECM-Body: A Cell-Free 3D Biomimetic Scaffold Derived from Intact Planarian Body. Zoological Science. 37: 307-313
Kashima M, Agata K, Shibata N. (2020) What is the role of PIWI family proteins in adult pluripotent stem cells?: Insights from asexually reproducing animals, planarians. Development, Growth & Differentiation
Miura S, Tsutsumi R, Agata K, et al. (2020) Maturating Articular Cartilage Can Induce Ectopic Joint-Like Structures in Neonatal Mice Regenerative Engineering and Translational Medicine. 6: 373-382
Nakanoh S, Agata K. (2019) Evolutionary view of pluripotency seen from early development of non-mammalian amniotes. Developmental Biology
Matsunami M, Suzuki M, Haramoto Y, et al. (2019) A comprehensive reference transcriptome resource for the Iberian ribbed newt Pleurodeles waltl, an emerging model for developmental and regeneration biology. Dna Research : An International Journal For Rapid Publication of Reports On Genes and Genomes
Cao PL, Kumagai N, Inoue T, et al. (2019) JmjC domain-encoding genes are conserved in highly regenerative metazoans and are associated with planarian whole-body regeneration. Genome Biology and Evolution
Hayashi T, Agata K. (2018) Correction to: A Subtractive FACS Method for Isolation of Planarian Stem Cells and Neural Cells. Methods in Molecular Biology (Clifton, N.J.). 1774: E1
Suzuki M, Hayashi T, Inoue T, et al. (2018) Cas9 ribonucleoprotein complex allows direct and rapid analysis of coding and noncoding regions of target genes in Pleurodeles waltl development and regeneration. Developmental Biology
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