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館長・顧問論文

原著論文

Yoshihi K, Iida H, Teramoto M, Ishii Y, Kato K and Kondoh H

Epiblast cells gather onto the anterior mesendoderm and initiate brain development without the direct involvement of the node in avian embryos: Insights from broad-fieldlive imaging.

Frontiers in Cell and Developmental Biology 10:1019845

解説を見る

Kondoh, H., & Fujii, M.

Definitive Endoderm from EpiSC Aggregates in Matrigel.

Methods in molecular biology, 2490, 205–212.

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Yoshihi, K., Kato, K., Iida, H., Teramoto, M., Kawamura, A., Watanabe, Y., Nunome, M., Nakano, M., Matsuda, Y., Sato, Y., Mizuno, H., Iwasato, T., Ishii, Y., & Kondoh, H.

Live imaging of avian epiblast and anterior mesendoderm grafting reveals the complexity of cell dynamics during early brain development.

Development, 149(6), dev199999.

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Taira Y, Ikuta Y, Inamori S, Nunome M, Nakano M, Suzuki T, Matsuda Y, Tsudzuki M, Teramoto M, Iida H, Kondoh H.

The formation of multiple pituitary pouches from the oral ectoderm causes ectopic lens development in hedgehog signaling-defective avian embryos.

Dev Dyn. 2020 249(12):1425-1439. doi: 10.1002/dvdy.222.

Iwanami N, Takeshita K, Lawir DF, Suetake I, Tajima S, Sikora K, Trancoso I, ÓMeara C, Siamishi I, Takahama Y, Furutani-Seiki M, Kondoh H, Yonezawa Y, Schorpp M, Boehm T.

Epigenetic Protection of Vertebrate Lymphoid Progenitor Cells by Dnmt1.

iScience. 2020 24;23(7):101260. doi: 10.1016/j.isci.2020.101260.

Inamori S, Fujii M, Satake S, Iida H, Teramoto M, Sumi T, Meno C, Ishii Y, Kondoh H.

Modeling early stages of endoderm development in epiblast stem cell aggregates with supply of extracellular matrices.

Dev Growth Differ. 2020 62(4):243-259. doi: 10.1111/dgd.12663.

Iida H, Furukawa Y, Teramoto M, Suzuki H, Takemoto T, Uchikawa M, Kondoh H.

Sox2 gene regulation via the D1 enhancer in embryonic neural tube and neural crest by the combined action of SOX2 and ZIC2.

Genes Cells. 2020 25(4):242-256. doi: 10.1111/gtc.12753.

Teramoto M, Sugawara R, Minegishi K, Uchikawa M, Takemoto T, Kuroiwa A, Ishii Y, Kondoh H.

The absence of SOX2 in the anterior foregut alters the esophagus into trachea and bronchi in both epithelial and mesenchymal components.

Biol Open. 2020 9(2):bio048728. doi: 10.1242/bio.048728.