Title of article :
the ability of 3d alginate/polyvinyl alcohol cross-linked hybrid hydrogel to differentiate periodontal ligament stem cells into osteoblasts
Author/Authors :
bahrami, naghmeh Craniomaxillofacial Research Center - Tehran University of Medical Sciences , bayat, mohammad Craniomaxillofacial Research Center - Tehran University of Medical Sciences , farzin, ali Research Center for Science and Technology in Medicine - Tehran University of Medical Sciences , sadredin hajseyedjavadi, maryamossadat School of Dentistry - Tehran University of Medical Sciences , goodarzi, arash Department of Tissue Engineering and Applied Cell Sciences - School of Advanced Technologies in Medicine - Tehran University of Medical Sciences , salehi, majid Department of Tissue Engineering - School of Medicine - Shahroud University of Medical Sciences , karimi, roya Department of Tissue Engineering and Applied Cell Sciences - School of Advanced Technologies in Medicine - Tehran University of Medical Sciences , ,mohamadnia, abdolreza Chronic Respiratory Diseases Research Center - National Research Institute of Tuberculosis and Lung Diseases - Shahid Beheshti University of Medical Sciences
Abstract :
Porous alginate/polyvinyl alcohol hybrid sca olds have been extensively used in cartilage, bone, and dental tissue substitute ap-plications. However, its mechanical and osteogenesis properties are not good enough to meet the requirement for use in hard tissues repair applications. In this study, to achieve the best mechanical and physical properties, we carried out the cross-linking of PVA physically and alginate chemically. Hydroxyapatite nanoparticles (nHA), the important component of hard tissues, was added to the hydrogel to improve its mechanical properties and osteoconductivity. The results showed that the fabricated algi-nate/polyvinyl alcohol-nHA sca old has around 81% interconnected porosity, hydrophilic surface with the contact angle of water on the surface in the range of 38 ± 0.29°, 3.51 MPa compressive strength, and a degradation rate of 71%. The periodontal ligament stem cells (PDLSCs) culture results showed that both fabricated alginate/polyvinyl alcohol hybrid sca olds with and without nHA had good cell attachment ability and could promote PDLSCs ingrowth. The real-time RT-PCR assay showed that the presence of nHA in the alginate/polyvinyl alcohol hybrid sca old could significantly accelerate the expression of specific markers of pre- and mature osteoblast stages such as osteocalcin, alkaline phosphate, and osteopontin genes. These results showed that alginate/polyvinyl alco-hol hybrid sca olds with hydroxyapatite nanoparticles can be used in bone and dental substitute applications as osteoconductive and reinforcement components.
Keywords :
Modified Freeze-Drying Method , Nano Hydroxyapatite , Alginate
Journal title :
Astroparticle Physics