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RSS FeedsIJMS, Vol. 20, Pages 942: 3D-Printed Bioactive Calcium Silicate/Poly-?-Caprolactone Bioscaffolds Modified with Biomimetic Extracellular Matrices for Bone Regeneration (International Journal of Molecular Sciences)

 
 

22 february 2019 02:04:50

 
IJMS, Vol. 20, Pages 942: 3D-Printed Bioactive Calcium Silicate/Poly-?-Caprolactone Bioscaffolds Modified with Biomimetic Extracellular Matrices for Bone Regeneration (International Journal of Molecular Sciences)
 


Currently, clinically available orthopedic implants are extremely biocompatible but they lack specific biological characteristics that allow for further interaction with surrounding tissues. The extracellular matrix (ECM)-coated scaffolds have received considerable interest for bone regeneration due to their ability in upregulating regenerative cellular behaviors. This study delves into the designing and fabrication of three-dimensional (3D)-printed scaffolds that were made out of calcium silicate (CS), polycaprolactone (PCL), and decellularized ECM (dECM) from MG63 cells, generating a promising bone tissue engineering strategy that revolves around the concept of enhancing osteogenesis by creating an osteoinductive microenvironment with osteogenesis-promoting dECM. We cultured MG63 on scaffolds to obtain a dECM-coated CS/PCL scaffold and further studied the biological performance of the dECM hybrid scaffolds. The results indicated that the dECM-coated CS/PCL scaffolds exhibited excellent biocompatibility and effectively enhanced cellular adhesion, proliferation, and differentiation of human Wharton’s Jelly mesenchymal stem cells by increasing the expression of osteogenic-related genes. They also presented anti-inflammatory characteristics by showing a decrease in the expression of tumor necrosis factor-alpha (TNF-α) and interleukin-1 (IL-1). Histological analysis of in vivo experiments presented excellent bone regenerative capabilities of the dECM-coated scaffold. Overall, our work presented a promising technique for producing bioscaffolds that can augment bone tissue regeneration in numerous aspects.


 
59 viewsCategory: Biochemistry, Biophysics, Molecular Biology
 
IJMS, Vol. 20, Pages 943: Root Proteomics Reveals the Effects of Wood Vinegar on Wheat Growth and Subsequent Tolerance to Drought Stress (International Journal of Molecular Sciences)
IJMS, Vol. 20, Pages 959: Realizing the Clinical Potential of Immunogenic Cell Death in Cancer Chemotherapy and Radiotherapy (International Journal of Molecular Sciences)
 
 
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