Yusuke Seyama, Kazuhiro Sudo, Suguru Hirose, Yukako Hamano, Takeshi Yamada, Takashi Hiroyama, Ryosuke Sasaki, Masami Yokota Hirai, Ichinosuke Hyodo, Kiichiro Tsuchiya, et al. Identification of a gene set that maintains tumorigenicity of the hepatocellular carcinoma cell line Li-7. Human cell. 2023. 36. 6. 2074-2086
Masatoshi Sakurai, Kantaro Ishitsuka, Ryoji Ito, Adam C Wilkinson, Takaharu Kimura, Eiji Mizutani, Hidekazu Nishikii, Kazuhiro Sudo, Hans Jiro Becker, Hiroshi Takemoto, et al. Chemically defined cytokine-free expansion of human haematopoietic stem cells. Nature. 2023. 615. 7950. 127-133
Slo-Li Chu, Kazuhiro Sudo, Hideo Yokota, Kuniya Abe, Yukio Nakamura, Ming-Dar Tsai. Human induced pluripotent stem cell formation and morphology prediction during reprogramming with time-lapse bright-field microscopy images using deep learning methods. Computer methods and programs in biomedicine. 2023. 229. 107264-107264
Slo-Li Chu, Kazuhiro Sudo, Kuniya Abe, Hideo Yokota, Yukio Nakamura, Guan-Ting Liou, Ming-Dar Tsai. Prediction of Human Induced Pluripotent Stem Cell Formation Based on Deep Learning Analyses Using Time-lapse Brightfield Microscopy Images. Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference. 2022. 2022. 2029-2032
Kazuhiro Sudo, Satoshi Yamazaki, Adam C Wilkinson, Hiromitsu Nakauchi, Yukio Nakamura. Polyvinyl alcohol hydrolysis rate and molecular weight influence human and murine HSC activity ex vivo. Stem cell research. 2021. 56. 102531-102531
Slo-Li Chu, Kuniya Abe, Hideo Yokota, Kazuhiro Sudo, Yukio Nakamura, Yuan-Hsiang Chang, Liang-Che Fang, Ming-Dar Tsai. Prediction for Morphology and States of Stem Cell Colonies using a LSTM Network with Progressive Training Microscopy Images. Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference. 2020. 2020. 1820-1823
Adam C Wilkinson, Reiko Ishida, Misako Kikuchi, Kazuhiro Sudo, Maiko Morita, Ralph Valentine Crisostomo, Ryo Yamamoto, Kyle M Loh, Yukio Nakamura, Motoo Watanabe, et al. Long-term ex vivo haematopoietic-stem-cell expansion allows nonconditioned transplantation. Nature. 2019. 571. 7763. 117-121
Adam C Wilkinson, Reiko Ishida, Misako Kikuchi, Kazuhiro Sudo, Maiko Morita, Ralph Valentine Crisostomo, Ryo Yamamoto, Kyle M Loh, Yukio Nakamura, Motoo Watanabe, et al. Author Correction: Long-term ex vivo haematopoietic-stem-cell expansion allows nonconditioned transplantation. Nature. 2019. 571. 7766. E12
Yuan-Hsiang Chang, Kuniya Abe, Hideo Yokota, Kazuhiro Sudo, Yukio Nakamura, Slo-Li Chu, Chih-Yung Hsu, Ming-Dar Tsai. Human Induced Pluripotent Stem Cell Reprogramming Prediction in Microscopy Images using LSTM based RNN. Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference. 2019. 2019. 2416-2419
Yukako Sato, Takeshi Yamada, Takashi Hiroyama, Kazuhiro Sudo, Naoyuki Hasegawa, Ichinosuke Hyodo, Yukio Nakamura. A robust culture method for maintaining tumorigenic cancer stem cells in the hepatocellular carcinoma cell line Li-7. Cancer science. 2019. 110. 5. 1644-1652
Yuan-Hsiang Chang, Kuniya Abe, Hideo Yokota, Kazuhiro Sudo, Yukio Nakamura, Ming-Dar Tsai. HUMAN INDUCED PLURIPOTENT STEM CELL REGION DETECTION in BRIGHT-FIELD MICROSCOPY IMAGES USING CONVOLUTIONAL NEURAL NETWORKS. Biomedical Engineering - Applications, Basis and Communications. 2019. 31. 2
Hiroaki Yoneyama, Kazuhiro Sudo, Philippe Leproux, Vincent Couderc, Akihito Inoko, Hideaki Kano. Invited Article: CARS molecular fingerprinting using sub-100-ps microchip laser source with fiber amplifier. APL PHOTONICS. 2018. 3. 9
Yuan-Hsiang Chang, Kuniya Abe, Hideo Yokota, Kazuhiro Sudo, Yukio Nakamura, Cheng-Yu Lin, Ming-Dar Tsai. Human induced pluripotent stem cell region recognition in microscopy images using Convolutional Neural Networks. Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference. 2017. 2017. 4058-4061
Aki Ieyasu, Reiko Ishida, Takaharu Kimura, Maiko Morita, Adam C Wilkinson, Kazuhiro Sudo, Toshinobu Nishimura, Jun Ohehara, Yoko Tajima, Chen-Yi Lai, et al. An All-Recombinant Protein-Based Culture System Specifically Identifies Hematopoietic Stem Cell Maintenance Factors. Stem cell reports. 2017. 8. 3. 500-508
Ryo Kurita, Noriko Suda, Kazuhiro Sudo, Kenichi Miharada, Takashi Hiroyama, Hiroyuki Miyoshi, Kenzaburo Tani, Yukio Nakamura. Establishment of immortalized human erythroid progenitor cell lines able to produce enucleated red blood cells. PloS one. 2013. 8. 3. e59890
Kazuhiro Sudo, Jun Yasuda, Yukio Nakamura. Gene expression profiles of cryopreserved CD34(+) human umbilical cord blood cells are related to their bone marrow reconstitution abilities in mouse xenografts. Biochemical and biophysical research communications. 2010. 397. 4. 697-705
Taro Ishigaki, Kazuhiro Sudo, Takashi Hiroyama, Kenichi Miharada, Haruhiko Ninomiya, Shigeru Chiba, Toshiro Nagasawa, Yukio Nakamura. Human hematopoietic stem cells can survive in vitro for several months. Advances in hematology. 2009. 2009. 936761-936761
Kenichi Miharada, Takashi Hiroyama, Kazuhiro Sudo, Inaho Danjo, Toshiro Nagasawa, Yukio Nakamura. Lipocalin 2-mediated growth suppression is evident in human erythroid and monocyte/macrophage lineage cells. Journal of cellular physiology. 2008. 215. 2. 526-37
Takashi Hiroyama, Kenichi Miharada, Kazuhiro Sudo, Inaho Danjo, Naoko Aoki, Yukio Nakamura. Establishment of mouse embryonic stem cell-derived erythroid progenitor cell lines able to produce functional red blood cells. PloS one. 2008. 3. 2. e1544
Takashi Hiroyama, Kazuhiro Sudo, Naoko Aoki, Kenichi Miharada, Inaho Danjo, Tsuyoshi Fujioka, Toshiro Nagasawa, Yukio Nakamura. Human umbilical cord-derived cells can often serve as feeder cells to maintain primate embryonic stem cells in a state capable of producing hematopoietic cells. Cell biology international. 2008. 32. 1. 1-7