1. Inhibin α-subunit inhibits BMP9-induced osteogenic differentiation through blocking BMP/Smad signal and activating NF-κB signal in mesenchymal stem cells
    Min Huang et al, 2018, J. Cell. Biochem. CrossRef
  2. CCN3 and DLL1 co-regulate osteogenic differentiation of mouse embryonic fibroblasts in a Hey1-dependent manner
    Xin Su et al, 2018, Cell Death Dis CrossRef
  3. Wnt Pathway in Bone Repair and Regeneration – What Do We Know So Far
    Khosrow S. Houschyar et al, 2019, Front. Cell Dev. Biol. CrossRef
  4. Mechanism of Action of Icariin in Bone Marrow Mesenchymal Stem Cells
    Aofei Yang et al, 2019, Stem Cells International CrossRef
  5. Contextual Regulation of Skeletal Physiology by Notch Signaling
    Daniel W. Youngstrom et al, 2019, Curr Osteoporos Rep CrossRef
  6. Delta Like-1 Gene Mutation: A Novel Cause of Congenital Vertebral Malformation
    Tlili Barhoumi et al, 2019, Front. Genet. CrossRef
  7. Crosstalk between BMP and Notch Induces Sox2 in Cerebral Endothelial Cells
    Xiuju Wu et al, 2019, Cells CrossRef
  8. Notch Signaling Inhibition by LY411575 Attenuates Osteoblast Differentiation and Decreased Ectopic Bone Formation Capacity of Human Skeletal (Mesenchymal) Stem Cells
    Nihal AlMuraikhi et al, 2019, Stem Cells International CrossRef
  9. BMP9 prevents induction of osteopontin in JNK-inactivated osteoblasts via Hey1-Id4 interaction
    Joji Kusuyama et al, 2019, The International Journal of Biochemistry & Cell Biology CrossRef
  10. Activation and Biological Properties of Human β Defensin 4 in Stem Cells Derived From Human Exfoliated Deciduous Teeth
    Yue Zhai et al, 2019, Front. Physiol. CrossRef
  11. MicroRNAs and long noncoding RNAs: new regulators in cell fate determination of mesenchymal stem cells
    Zixiang Wu et al, 2019, RSC Adv. CrossRef
  12. Dose-dependent mechanism of Notch action in promoting osteogenic differentiation of mesenchymal stem cells
    Daria Semenova et al, 2019, Cell Tissue Res CrossRef
  13. BMP-9 Modulates the Hepatic Responses to LPS
    Haristi Gaitantzi et al, 2020, Cells CrossRef
  14. Bone‐Inspired Tube Filling Decellularized Matrix of Toad Cartilage Provided an Osteoinductive Microenvironment for Mesenchymal Stem Cells to Facilitate the Radius Defect Repair of Rabbit
    He‐Lin Xu et al, 2020, Biotechnol. J. CrossRef
  15. Chikungunya Virus Infection Impairs the Function of Osteogenic Cells
    Enakshi Roy et al, 2020, mSphere CrossRef
  16. BMP9 is a potential therapeutic agent for use in oral and maxillofacial bone tissue engineering
    Liu Liu et al, 2020 CrossRef
  17. Notch-dependent activation of periodontal cells osteogenic potential
    D. S. Semenova et al, 2020, Transl. med. (Print) CrossRef
  18. Canonical Notch signaling is required for bone morphogenetic protein-mediated human osteoblast differentiation
    Yadav Wagley et al, 2020, Stem Cells CrossRef
  19. Notch‑1 inhibition reduces proliferation and promotes osteogenic differentiation of bone marrow mesenchymal stem cells
    Ying He et al, 2019, Exp Ther Med CrossRef
  20. Nanomaterial-based scaffolds for bone tissue engineering and regeneration
    Guo Ye et al, 2020, Nanomedicine CrossRef
  21. JAGGED1 stimulates cranial neural crest cell osteoblast commitment pathways and bone regeneration independent of canonical NOTCH signaling
    Archana Kamalakar et al, 2020, Bone CrossRef
  22. Crucial Role of Lamin A/C in the Migration and Differentiation of MSCs in Bone
    Natividad Alcorta-Sevillano et al, 2020, Cells CrossRef
  23. Influence of the TGF-β Superfamily on Osteoclasts/Osteoblasts Balance in Physiological and Pathological Bone Conditions
    Jessica Jann et al, 2020, IJMS CrossRef
  24. The Role of Notch and Wnt Signaling in MSC Communication in Normal and Leukemic Bone Marrow Niche
    Paul Takam Kamga et al, 2021, Front. Cell Dev. Biol. CrossRef
  25. Relevance of Notch Signaling for Bone Metabolism and Regeneration
    Tobias M. Ballhause et al, 2021, IJMS CrossRef
  26. Identification of key genes and pathways of BMP-9-induced osteogenic differentiation of mesenchymal stem cells by integrated bioinformatics analysis
    Jia-qi Wu et al, 2021, J Orthop Surg Res CrossRef
  27. Different phenotypes and chondrogenic responses of human menstrual blood and bone marrow mesenchymal stem cells to activin A and TGF-β3
    Ilona Uzieliene et al, 2021, Stem Cell Res Ther CrossRef
  28. Interleukin 15 participates in Jagged1-induced mineralization in human dental pulp cells
    Chatvadee Kornsuthisopon et al, 2021, Archives of Oral Biology CrossRef
  29. Gradient bimetallic ion–based hydrogels for tissue microstructure reconstruction of tendon-to-bone insertion
    Renhao Yang et al, 2021, Sci. Adv. CrossRef
  30. null
    Suchandra Chowdhury et al, 2021 CrossRef
  31. Mesenchymal Stem Cells, Bioactive Factors, and Scaffolds in Bone Repair: From Research Perspectives to Clinical Practice
    Sandra Stamnitz et al, 2021, Cells CrossRef
  32. null
    Sébastien Sart et al, 2022 CrossRef
  33. Circular RNA Hsa_circ_0006766 targets microRNA miR-4739 to regulate osteogenic differentiation of human bone marrow mesenchymal stem cells
    Zhaodi Guo et al, 2021, Bioengineered CrossRef
  34. Nanomaterials-based Cell Osteogenic Differentiation and Bone Regeneration
    Tianxu Zhang et al, 2021, CSCR CrossRef
  35. null
    Tianxu Zhang et al, 2021 CrossRef
  36. Signaling network regulating osteogenesis in mesenchymal stem cells.
    Sachin Thomas et al, 2022, J Cell Commun Signal CrossRef
  37. null
    Emma Payne et al, 2022 CrossRef
  38. microRNA-211-5p predicts the progression of postmenopausal osteoporosis and attenuates osteogenesis by targeting dual specific phosphatase 6
    Huan Wang et al, 2022, Bioengineered CrossRef
  39. Preclinical Evaluation of BMP-9-Treated Human Bone-like Substitutes for Alveolar Ridge Preservation following Tooth Extraction
    Fabien Kawecki et al, 2022, IJMS CrossRef
  40. Bone formation and bone repair: the roles and crosstalk of osteoinductive signaling pathways
    Zhan Jing et al, 2022, Process Biochemistry CrossRef
  41. Probing Notch1-Dll4 signaling in regulating osteogenic differentiation of human mesenchymal stem cells using single cell nanobiosensor
    Yuwen Zhao et al, 2022, Sci Rep CrossRef
  42. Gene Expression Profiles of Human Mesenchymal Stromal Cells Derived from Wharton’s Jelly and Amniotic Membrane before and after Osteo-Induction Using NanoString Platform
    Vun Vun Hiew et al, 2022, CIMB CrossRef
  43. Notch signaling and fluid shear stress in regulating osteogenic differentiation
    Yuwen Zhao et al, 2022, Front. Bioeng. Biotechnol. CrossRef
  44. Regulation of Molecular Targets in Osteosarcoma Treatment
    Betul Celik et al, 2022, IJMS CrossRef
  45. The role of Notch signaling pathway in metabolic bone disease
    Yongguang Gao et al, 2022, Biochemical Pharmacology CrossRef
  46. EGFL7 affects the migration of epidermal stem cells in refractory diabetic wounds by regulating Notch signaling pathway
    Jinyuan Chang et al, 2022, Regenerative Medicine CrossRef
  47. null
    Vaishak Kaviarasan et al, 2023 CrossRef
  48. Osteohematology: To be or Notch to be
    Emel Rothzerg et al, 2023, Journal Cellular Physiology CrossRef
  49. A review on the effect of nanocomposite scaffolds reinforced with magnetic nanoparticles in osteogenesis and healing of bone injuries
    Hadi Sadeghzadeh et al, 2023, Stem Cell Res Ther CrossRef
  50. Targeting WNT Signalling Pathways as New Therapeutic Strategies for Osteoarthritis
    Iqbal Zoya et al, 2023, Journal of Drug Targeting CrossRef
  51. Osteogenically committed hUCMSCs-derived exosomes promote the recovery of critical-sized bone defects with enhanced osteogenic properties
    Shuyi Li et al, 2024 CrossRef
  52. Crosstalk between Wnt and bone morphogenetic protein signaling during osteogenic differentiation
    Pakkath Narayanan Arya et al, 2024, World J Stem Cells CrossRef