Analysis of the CPZ/Wnt4 osteogenic pathway for high-bonding-strength composite-coated magnesium scaffolds through transcriptomics

Author:

Shi ZewenORCID,Yang Fang,Du Tianyu,Pang Qian,Liu Chen,Hu Yiwei,Zhu Weilai,Chen Xianjun,Chen Zeming,Song Baiyang,Yu Xueqiang,Ye Zhewei,Shi Lin,Zhu Yabin,Pang QingjiangORCID

Publisher

Elsevier BV

Reference82 articles.

1. Electroactive barium titanate coated titanium scaffold improves osteogenesis and osseointegration with low-intensity pulsed ultrasound for large segmental bone defects;Fan;Bioact. Mater.,2020

2. Mechanical, biological, and antibacterial characteristics of plasma-sprayed (Sr,Zn) substituted hydroxyapatite coating;Ullah;ACS Biomater. Sci. Eng.,2020

3. Tanfloc/heparin polyelectrolyte multilayers improve osteogenic differentiation of adipose-derived stem cells on titania nanotube surfaces;Sabino;Carbohydr. Polym.,2021

4. Surface modification of titanium implants with Mg-containing coatings to promote osseointegration;Wang;Acta Biomater.,2023

5. The effect of different coatings on bone response and degradation behavior of porous magnesium-strontium devices in segmental defect regeneration;Zhang;Bioact. Mater.,2021

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