Supaporn Sangkert
Prince of Songkla University
AnatomyFibroinBiomedical engineeringSurgeryResorptionBone remodelingPulp (tooth)Extracellular matrixDecellularizationMaterials scienceScanning electron microscopeOsteoblastBiomaterialSwellingPolyvinyl alcoholGelatinChitosanTissue engineeringFibronectinScaffold
10Publications
4H-index
56Citations
Publications 10
Newest
#1Supaporn Sangkert (PSU: Prince of Songkla University)H-Index: 4
#2Suttatip Kamolmatyakul (PSU: Prince of Songkla University)H-Index: 3
Last. Jirut Meesane (PSU: Prince of Songkla University)H-Index: 8
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ABSTRACT This research investigated 3D printed scaffolds of alginate/polyvinylalcohol incorporated with silk fibroin (SF) fabricated by mimicking soft materials similar to bone extracellular matrix. The alginate/polyvinyl alcohol incorporated with 0%, 0.5%, 1%, and 2% SF were fabricated into 3D printed scaffolds. The morphology was observed using scanning electron microscopy and the structures were characterized by differential scanning calorimetry. The swelling behavior and degradation of the s...
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#1Tanchanok Parivatphun (PSU: Prince of Songkla University)
#2Supaporn SangkertH-Index: 4
Last. Matthana KhangkhamanoH-Index: 3
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Osteoarthritis (OA) is a disease that leads to the damage of subchondral bone. To treat OA, patients can have surgery to implant biomaterials into the damaged area. In this research, biomaterials of 3D porous scaffolds were fabricated by the use of air microbubbles for subchondral bone formation proposed for OA surgery. Microbubbles were generated in a polyvinyl alcohol solution at various air flow rates of 20 (F20), 100 (F100), 200 (F200), and 300 (F300) cc min-1. Molecular organization, struct...
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#1Nyein Thaik (PSU: Prince of Songkla University)H-Index: 2
#2Supaporn Sangkert (PSU: Prince of Songkla University)H-Index: 4
Last. Matthana Khangkhamano (PSU: Prince of Songkla University)H-Index: 3
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Modification of the surface of titanium into titania (TiO2) nanotube (TNT) arrays was performed by electrochemical anodization to design endoprosthesis for maxillofacial surgery. TNT arrays with different surface structures were successfully coated on titanium substrates by varying the anodizing voltages and annealed at 450 degrees C for 4 h. Phase composition and morphology of the nanotubes were examined by X-ray powder diffraction and field-emission scanning electron microscopy, respectively. ...
1 CitationsSource
#1Supaporn Sangkert (PSU: Prince of Songkla University)H-Index: 4
#2Suttatip Kamolmatyakul (PSU: Prince of Songkla University)H-Index: 3
Last. Jirut Meesane (PSU: Prince of Songkla University)H-Index: 8
view all 3 authors...
This research explored a new trend in biomaterials science. The bone-mimicking effect of calcium phosphate on chitosan composite scaffolds was evaluated. Chitosan with 2% calcium phosphate was foun...
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#1Supaporn Sangkert (PSU: Prince of Songkla University)H-Index: 4
#2Suttatip Kamolmatyakul (PSU: Prince of Songkla University)H-Index: 3
Last. Jirut Meesane (PSU: Prince of Songkla University)H-Index: 8
view all 3 authors...
Soft tissue defects in the oral maxillofacial area are critical problems for many patients and, in some cases, patients require an operation coupled with a performance scaffold substitution. In thi...
1 CitationsSource
#1Hnin Nandar Soe (PSU: Prince of Songkla University)H-Index: 1
#2Matthana Khangkhamano (PSU: Prince of Songkla University)H-Index: 3
Last. Rungrote Kokoo (King Mongkut's University of Technology North Bangkok)H-Index: 3
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Abstract Bioactive substrate of particles is an attractive choice for enhancing mineralization in bone healing. TiC-coated carbon particles (TCBs) were prepared via molten salt synthesis. The phase composition, and core-shell structure of TCBs were characterized by XRD, SEM, and TEM. TCBs with different amounts were tested for cell viability. Mineralization was evaluated with ALP activity along with calcium deposition. XRD curves showed that only TiC and carbon phases were observed on the sample...
4 CitationsSource
#1Supaporn SangkertH-Index: 4
Last. Jirut MeesaneH-Index: 8
view all 4 authors...
1 CitationsSource
Maxillofacial bone defect is a critical problem for many patients. In severe cases, the patients need an operation using a biomaterial replacement. Therefore, to design performance biomaterials is a challenge for materials scientists and maxillofacial surgeons. In this research, porous silk fibroin scaffolds with mimicked microenvironment based on decellularized pulp and fibronectin were created as for bone regeneration. Silk fibroin scaffolds were fabricated by freeze-drying before modification...
6 CitationsSource
#1Supaporn Sangkert (PSU: Prince of Songkla University)H-Index: 4
#2Suttatip Kamonmattayakul (PSU: Prince of Songkla University)H-Index: 4
Last. Jirut Meesane (PSU: Prince of Songkla University)H-Index: 8
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Abstract A modified silk fibroin scaffold with mimic reconstructed extracellular matrix of decellularized pulp/collagen/fibronectin was proposed for bone tissue engineering in alveolar bone resorption. Silk fibroin scaffolds were fabricated by freeze-drying before modification by coating in a decellularized pulp/collagen/fibronectin solution. The extracellular matrix reconstruction of the decellularized pulp/collagen/fibronectin and the morphology and biofunctionalities of the modified scaffolds...
15 CitationsSource
#1Supaporn Sangkert (PSU: Prince of Songkla University)H-Index: 4
#2Jirut Meesane (PSU: Prince of Songkla University)H-Index: 8
Last. Wen Lin Chai (UM: University of Malaya)H-Index: 12
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Cleft palate is a congenital malformation that generates a maxillofacial bone defect around the mouth area. The creation of performance scaffolds for bone tissue engineering in cleft palate is an issue that was proposed in this research. Because of its good biocompatibility, high stability, and non-toxicity, silk fibroin was selected as the scaffold of choice in this research. Silk fibroin scaffolds were prepared by freeze-drying before immerging in a solution of collagen, decellularized pulp, a...
26 CitationsSource