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Inductive ability of human developing and differentiated dental mesenchyme
ISSN号:1422-6405
期刊名称:Cells Tissues Organs
时间:2013.10
页码:-
相关项目:ETV1/5在ES-ECs成釉细胞向分化中的调控机制研究
作者:
Ryo Kunimatsu|Ophir Klein|Pamela K. DenBesten|Yan Zhang|
同期刊论文项目
ETV1/5在ES-ECs成釉细胞向分化中的调控机制研究
期刊论文 29
会议论文 2
同项目期刊论文
microRNA Expression in Rat Apical Periodontitis Bone Lesion
Cell cycle control, DNA damage repair, and apoptosis-related pathways control pre-ameloblasts differ
BMP7 and EREG Contribute to the Inductive Potential of Dental Mesenchyme.
Restoration of miR-34a in p53 deficient cells unexpectedly promotes the cell survival by increasing
The similarity between human embryonic stem cell-derived epithelial cells and ameloblast-lineage cel
Modulation of Wnt/β-catenin signaling Attenuates Periapical Bone Lesion
Dental Mesenchymal Stem Cells in Inflamed Microenvironment: Potentials and Challenges for Regenerati
Stem Cell-based Tooth Engineering and their Potential in Dental Medicine.
难治性根尖周炎的病因探讨与治疗新理念
Crosstalk between miR-34a and Notch Signaling Promotes Differentiation in Apical Papilla Stem Cells
醋的牙齿美白作用及其对牙硬组织的影响
木糖醇口香糖咀嚼时间对口腔微生物群落的影响
Editorial: Essentials in Tooth Development and Regeneration.
Expression and Function of MicroRNAs in Enamel Development.
Epigenetic Control of Gene Function in Enamel Development.
MicroRNA Regulation of Embryonic Stem Cell Pluripotency and Differentiation.
Histone Modification in Osteogenic Differentiation of Skeletal Stem Cells.
Modulation of Wnt/beta-catenin signaling attenuates periapical bone lesions.
Bivalent histone modifications during tooth development.
microRNA在骨髓间充质干细胞成骨分化中的作用
微小RNA与牙发育的研究进展
Enamel Regeneration in Making a Bioengineered Tooth.
MicroRNA 224 Regulates Ion Transporter Expression in Ameloblasts To Coordinate Enamel Mineralization
Bivalent histone modifications during tooth development