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Takehito Ouchi

Showing results (1-10 of 40) with videos related to

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Biomolecules|August 26, 2023
Cellular Signaling for Dental Physiological FunctionsTakehito Ouchi, Taneaki Nakagawa
Regenerative Therapy|January 24, 2020
Mesenchymal stem cell-based tissue regeneration therapies for periodontitisTakehito Ouchi, Taneaki Nakagawa
Biomolecules|November 27, 2021
Tissue Regeneration and Physiological Functional Recovery in Dental and Craniofacial FieldsTakehito Ouchi, Taneaki Nakagawa
Anticancer Research|March 28, 2025
Platelet-derived Growth Factor Receptor-α as a Biomarker for Tongue Spindle Cell CarcinomaTakehito Ouchi, Satoru Morikawa, Taneaki Nakagawa, et al.
Science Signaling|October 21, 2025
Injury-induced niche factors Cxcl12 and Shh/Ihh coordinate suture stem cell activation during calvarial bone regenerationBo Li, Takehito Ouchi, Jie Liu, et al.
Biochemical and Biophysical Research Communications|March 12, 2022
Glycosaminoglycans promote osteogenesis from human induced pluripotent stem cells via neural crest inductionTakuma Yanagisawa, Takehito Ouchi, Shinsuke Shibata, et al.
Biomolecules|December 23, 2022
Gα<sub>s</sub>-Coupled CGRP Receptor Signaling Axis from the Trigeminal Ganglion Neuron to Odontoblast Negatively Regulates Dentin MineralizationNatsuki Saito, Maki Kimura, Takehito Ouchi, et al.
International Endodontic Journal|July 12, 2025
Activation of G protein-coupled parathyroid hormone receptors in rat incisor odontoblasts promotes mineralization via cyclic adenosine monophosphate, not Ca<sup>2+</sup> signalling: In vitro studyNatsuki Saito, Takehito Ouchi, Maki Kimura, et al.
Frontiers in Bioscience (Landmark Edition)|November 2, 2023
Etiology of Oral Potentially Malignant Disorders and Squamous Cell Carcinoma Based on Cellular Stress Regulation and Matrix StiffnessToshihiro Hasegawa, Takehito Ouchi, Yoshiyuki Shibukawa, et al.
Biomolecules|June 28, 2023
Functional Expression of IP, 5-HT<sub>4</sub>, D<sub>1</sub>, A<sub>2A</sub>, and VIP Receptors in Human Odontoblast Cell LineEri Kitayama, Maki Kimura, Takehito Ouchi, et al.
Pageof 4

Showing results (1-10 of 40) with videos related to

Sort By:
Pageof 4
Biomolecules|August 26, 2023
Cellular Signaling for Dental Physiological FunctionsTakehito Ouchi, Taneaki Nakagawa
Regenerative Therapy|January 24, 2020
Mesenchymal stem cell-based tissue regeneration therapies for periodontitisTakehito Ouchi, Taneaki Nakagawa
Biomolecules|November 27, 2021
Tissue Regeneration and Physiological Functional Recovery in Dental and Craniofacial FieldsTakehito Ouchi, Taneaki Nakagawa
Anticancer Research|March 28, 2025
Platelet-derived Growth Factor Receptor-α as a Biomarker for Tongue Spindle Cell CarcinomaTakehito Ouchi, Satoru Morikawa, Taneaki Nakagawa, et al.
Science Signaling|October 21, 2025
Injury-induced niche factors Cxcl12 and Shh/Ihh coordinate suture stem cell activation during calvarial bone regenerationBo Li, Takehito Ouchi, Jie Liu, et al.
Biochemical and Biophysical Research Communications|March 12, 2022
Glycosaminoglycans promote osteogenesis from human induced pluripotent stem cells via neural crest inductionTakuma Yanagisawa, Takehito Ouchi, Shinsuke Shibata, et al.
Biomolecules|December 23, 2022
Gα<sub>s</sub>-Coupled CGRP Receptor Signaling Axis from the Trigeminal Ganglion Neuron to Odontoblast Negatively Regulates Dentin MineralizationNatsuki Saito, Maki Kimura, Takehito Ouchi, et al.
International Endodontic Journal|July 12, 2025
Activation of G protein-coupled parathyroid hormone receptors in rat incisor odontoblasts promotes mineralization via cyclic adenosine monophosphate, not Ca<sup>2+</sup> signalling: In vitro studyNatsuki Saito, Takehito Ouchi, Maki Kimura, et al.
Frontiers in Bioscience (Landmark Edition)|November 2, 2023
Etiology of Oral Potentially Malignant Disorders and Squamous Cell Carcinoma Based on Cellular Stress Regulation and Matrix StiffnessToshihiro Hasegawa, Takehito Ouchi, Yoshiyuki Shibukawa, et al.
Biomolecules|June 28, 2023
Functional Expression of IP, 5-HT<sub>4</sub>, D<sub>1</sub>, A<sub>2A</sub>, and VIP Receptors in Human Odontoblast Cell LineEri Kitayama, Maki Kimura, Takehito Ouchi, et al.
Pageof 4