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  1. Tailoring the Microenvironment of Cells Towards Osteogenic Differentiation Using Multilayers of Glycosaminoglycans and Growth Factor Immobilization

    The extracellular matrix (ECM) provides the structural support and signals important for cell fate, tissue homeostasis and regeneration....
    Chapter 2023
  2. Acrylamide-based hydrogels with distinct osteogenic and chondrogenic differentiation potential

    Regeneration solutions for the osteochondral interface depth are limited, where multi-material implants have the potential to delaminate affecting...

    Z. M. Younus, P. Roach, N. R. Forsyth in Progress in Biomaterials
    Article Open access 16 July 2022
  3. Ternary MXene-loaded PLCL/collagen nanofibrous scaffolds that promote spontaneous osteogenic differentiation

    Conventional bioinert bone grafts often have led to failure in osseointegration due to low bioactivity, thus much effort has been made up to date to...

    Seok Hyun Lee, Sangheon Jeon, ... Suck Won Hong in Nano Convergence
    Article Open access 27 August 2022
  4. Single-Dose Induction of Osteogenic Differentiation of Mesenchymal Stem Cells Using a Cyclic AMP Activator, Forskolin

    Abstract

    Small molecule-based bone regenerative engineering has been proposed as a promising approach in repairing bone tissue and circumventing the...

    Guleid M. Awale, Mohammed A. Barajaa, ... Cato T. Laurencin in Regenerative Engineering and Translational Medicine
    Article 05 July 2022
  5. Electrically controlled mRNA delivery using a polypyrrole-graphene oxide hybrid film to promote osteogenic differentiation of human mesenchymal stem cells

    Direct messenger ribonucleic acid (mRNA) delivery to target cells or tissues has revolutionized the field of biotechnology. However, the...

    Huijung Kim, Kübra Solak, ... Tae-Hyung Kim in Nano Research
    Article 23 July 2022
  6. Enhanced osteogenic differentiation of alendronate-conjugated nanodiamonds for potential osteoporosis treatment

    Background

    Alendronate (Alen) is promising material used for bone-targeted drug delivery due to its high bone affinity and therapeutic effects on bone...

    Guk Young Ahn, Sung-Eun Kim, ... Sung-Wook Choi in Biomaterials Research
    Article Open access 23 September 2021
  7. Black Phosphorus Nanoparticles Promote Osteogenic Differentiation of EMSCs Through Upregulated TG2 Expression

    At bio-safe concentrations, black phosphorus nanoparticles activated TG2, and promote the expression of ECM, which further promoted osteogenic...

    Naiyan Lu, **nhe Wang, ... Yuyan Weng in Nanoscale Research Letters
    Article Open access 12 October 2021
  8. Sustainably releasing osteogenic trace elements from montmorillonite intercalated hybrid nanocomposites accelerates bone regeneration

    Optimizing scaffold components and architectures to achieve endogenous osteogenesis is a prospective advancement for bone tissue engineering. Here,...

    Lei Tong, Quanying Liu, ... Yong Sun in Science China Materials
    Article 12 June 2024
  9. 3D printed OCP bone scaffold with alginate enhancing osteogenic differentiation in MG-63 cells

    3D printing technology using calcium phosphate materials such as octacalcium phosphate (OCP, Ca 8 H 2 [PO 4 ] 6 ·5H 2 O) has emerged as a precise approach for...

    Jooseong Kim, Woong Kim, ... Seok-Jun Kim in MRS Communications
    Article 06 October 2023
  10. Plasma Electrolytic Oxidation (PEO) Coated CP-Ti: Wear Performance on Reciprocating Mode and Chondrogenic–Osteogenic Differentiation

    Biocompatible oxide coatings obtained by plasma electrolyte oxidation (PEO) have been used to improve the surface properties of bone grafts made of...

    Estela Kerstner Baldin, Pedro Bell Santos, ... Célia de Fraga Malfatti in Journal of Bio- and Tribo-Corrosion
    Article 29 December 2021
  11. Monocytes and pyrophosphate promote mesenchymal stem cell viability and early osteogenic differentiation

    Pyrophosphate-containing calcium phosphate implants promote osteoinduction and bone regeneration. The role of pyrophosphate for inflammatory...

    Sara Svensson, Michael Palmer, ... Peter Thomsen in Journal of Materials Science: Materials in Medicine
    Article Open access 15 January 2022
  12. Osteogenic differentiation of rat bone mesenchymal stem cells cultured on poly (hydroxybutyrate-co-hydroxyvalerate), poly (ε-caprolactone) scaffolds

    Bioresorbable biomaterials can fill bone defects and act as temporary scaffold to recruit MSCs to stimulate their differentiation. Among the...

    Ana A. Rodrigues, Nilza A. Batista, ... William D. Belangero in Journal of Materials Science: Materials in Medicine
    Article Open access 30 October 2021
  13. Enhancing osteogenic bioactivities of coaxial electrospinning nano-scaffolds through incorporating iron oxide nanoparticles and icaritin for bone regeneration

    Bone tissue engineering provides a promising strategy for the treatment of bone defects. Nonetheless, the clinical utilization of biomaterial-based...

    Peng Wang, Qian** Wang, ... Qing Jiang in Nano Research
    Article 08 May 2024
  14. Poly(dopamine)-assisted Bioactive Coating on the Surface of Porous Poly (Ether Ether Ketone) to Promote Osteogenic Differentiation of rBMSC

    A facile modification strategy is developed to promote the proliferation and osteogenic differentiation of rat bone marrow stromal cells (rBMSCs)...

    Article 01 October 2021
  15. Antibacterial wollastonite supported excellent proliferation and osteogenic differentiation of human bone marrow derived mesenchymal stromal cells

    Biocompatibility and bacterial infections are the primary concerns associated with the current bone graft substitutes. The application of...

    Senthil Kumar Venkatraman, Rajan Choudhary, ... Sasikumar Swamiappan in Journal of Sol-Gel Science and Technology
    Article 19 November 2021
  16. Effect of dexamethasone as osteogenic supplementation in in vitro osteogenic differentiation of stem cells from human exfoliated deciduous teeth

    In in vitro culture systems, dexamethasone (DEX) has been applied with ascorbic acid (ASC) and β-glycerophosphate (βGLY) as culture media...

    Mariane Beatriz Sordi, Raissa Borges Curtarelli, ... Ariadne Cristiane Cabral da Cruz in Journal of Materials Science: Materials in Medicine
    Article Open access 19 January 2021
  17. Silk sericin-hydroxyapatite nanoribbons toward structurally stable osteogenic scaffolds

    Building a successful, cost-effective, and natural solution toward improving the bone-implant interface is an outstanding challenge. Silkworm sericin...

    Nazan Goksen Tosun, Ali Ozer, ... Tugba Ozdemir in Journal of the Australian Ceramic Society
    Article 29 June 2023
  18. Osteogenic Properties of Titanium Alloy Ti6Al4V-Hydroxyapatite Composites Fabricated by Selective Laser Melting

    Hydroxyapatite (HA) has been widely used for coating metal bone implants. However, HA coating may separate from the metal substrates, resulting in...

    Yu**g Lin, Mohamed Balbaa, ... Jianyu Chen in Journal of Materials Engineering and Performance
    Article 29 August 2023
  19. ZnO-NPs-Coated Implants with Osteogenic Properties for Enhanced Osseointegration

    The failure of orthopedic implantsImplant due to prosthesis-associated infections and aseptic loosening emphasizes the pressing need to enhance their...
    Kate E. Mokobia, Ikhazuagbe H. Ifijen, Esther U. Ikhuoria in TMS 2023 152nd Annual Meeting & Exhibition Supplemental Proceedings
    Conference paper 2023
  20. Improved drug incorporation and in vitro osteogenic effect of baicalin coating on different modified titanium surfaces

    Poor osseointegration has been regarded as a cause of implant failure in the early stage of healing. Baicalin (BC) is a flavonoid that can promote...

    Jiacheng Cai, Kai Yang, ... **ao Li in Journal of Materials Research
    Article 31 January 2023
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