Addition of Adipose Derived Stem Cell to Beta Tricalcium Phosphate and Human Cancellous Bone for Craniofacial Bone Tissue Engineering : An In Vitro Study
Introduction: Autologous bone graft remains the method of choice for correction of osseous defects despite its shortcomings related to its limited availability, donor side effects and post-surgical potential complications of the recipient. It is imperative to develop more innovative substitute that...
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Faculty of Medicine and Health Sciences University Putra Malaysia
2020
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id-langga.1168342023-04-13T02:33:27Z https://repository.unair.ac.id/116834/ Addition of Adipose Derived Stem Cell to Beta Tricalcium Phosphate and Human Cancellous Bone for Craniofacial Bone Tissue Engineering : An In Vitro Study Indri Lakhsmi Putri, - Arif Rachman, - Pratiwi Soesilawati, - Lukman Hakim, - Fedik Abdul Rantam, - David Sontani Perdanakusuma, - R Medicine RK Dentistry Introduction: Autologous bone graft remains the method of choice for correction of osseous defects despite its shortcomings related to its limited availability, donor side effects and post-surgical potential complications of the recipient. It is imperative to develop more innovative substitute that offers little to no adverse effects. We aimed to assess the impact of addition human adiposed derived stem cell to Beta tricalcium phosphate (βTCP) and human cancellous bone in vitro. Methods: Experimental study was carried out in vitro, where βTCP and human cancellous freeze-dried bone graft were seeded onto a 24-well microplate (each well containing 2x106 hADSCs). A colorimetric assay (3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide/MTT) was carried out for three days using the second passage of hADSCs to calculate the cell viability using ELISA reader at optical density (OD) 590nm. Results: MTT Assay showed that the percentage of viable cells in both groups were more than 70%, of which the βTCP showed significantly higher percentage than cancellous bone groups. Conclusion: This study proved that the addition of human adipose derived stem cell to βTCP and human cancellous bone in vitro is harmless and significantly improve cell viability in vitro. Faculty of Medicine and Health Sciences University Putra Malaysia 2020 Article PeerReviewed text en https://repository.unair.ac.id/116834/2/Addition%20Of%20Adipose%20Derived%20Stem%20Cell%20To%20Beta%20Tricalcium.pdf text en https://repository.unair.ac.id/116834/1/11.%20Addition%20of%20Adipose%20Derived%20Stem%20Cell%20To%20Beta%20Tricalcium%20Phosphate%20and%20Human%20Cancellous%20Bone%20for%20Craniofacial%20Bone%20Tissue%20Engineering%20An%20in%20Vitro%20Study.pdf text id https://repository.unair.ac.id/116834/3/11.Dr.Pratiwi%20%28Addition%20of%20Adipose...%29.pdf Indri Lakhsmi Putri, - and Arif Rachman, - and Pratiwi Soesilawati, - and Lukman Hakim, - and Fedik Abdul Rantam, - and David Sontani Perdanakusuma, - (2020) Addition of Adipose Derived Stem Cell to Beta Tricalcium Phosphate and Human Cancellous Bone for Craniofacial Bone Tissue Engineering : An In Vitro Study. Malaysian Journal of Medicine and Health Sceinces, 16. pp. 83-86. ISSN 16758544 |
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R Medicine RK Dentistry Indri Lakhsmi Putri, - Arif Rachman, - Pratiwi Soesilawati, - Lukman Hakim, - Fedik Abdul Rantam, - David Sontani Perdanakusuma, - Addition of Adipose Derived Stem Cell to Beta Tricalcium Phosphate and Human Cancellous Bone for Craniofacial Bone Tissue Engineering : An In Vitro Study |
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Introduction: Autologous bone graft remains the method of choice for correction of osseous defects despite its shortcomings related to its limited availability, donor side effects and post-surgical potential complications of the recipient. It is imperative to develop more innovative substitute that offers little to no adverse effects. We aimed to assess the impact of addition human adiposed derived stem cell to Beta tricalcium phosphate (βTCP) and human cancellous bone in vitro. Methods: Experimental study was carried out in vitro, where βTCP and human cancellous freeze-dried bone graft were seeded onto a 24-well microplate (each well containing 2x106 hADSCs). A colorimetric assay (3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide/MTT) was carried out for three days using the second passage of hADSCs to calculate the cell viability using ELISA reader at optical density (OD) 590nm. Results: MTT Assay showed that the percentage of viable cells in both groups were more than 70%, of which the βTCP showed significantly higher percentage than cancellous bone groups. Conclusion: This study proved that the addition of human adipose derived stem cell to βTCP and human cancellous bone in vitro is harmless and significantly improve cell viability in vitro. |
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Article PeerReviewed |
author |
Indri Lakhsmi Putri, - Arif Rachman, - Pratiwi Soesilawati, - Lukman Hakim, - Fedik Abdul Rantam, - David Sontani Perdanakusuma, - |
author_facet |
Indri Lakhsmi Putri, - Arif Rachman, - Pratiwi Soesilawati, - Lukman Hakim, - Fedik Abdul Rantam, - David Sontani Perdanakusuma, - |
author_sort |
Indri Lakhsmi Putri, - |
title |
Addition of Adipose Derived Stem Cell to Beta Tricalcium Phosphate and Human Cancellous Bone for Craniofacial Bone Tissue Engineering : An In Vitro Study |
title_short |
Addition of Adipose Derived Stem Cell to Beta Tricalcium Phosphate and Human Cancellous Bone for Craniofacial Bone Tissue Engineering : An In Vitro Study |
title_full |
Addition of Adipose Derived Stem Cell to Beta Tricalcium Phosphate and Human Cancellous Bone for Craniofacial Bone Tissue Engineering : An In Vitro Study |
title_fullStr |
Addition of Adipose Derived Stem Cell to Beta Tricalcium Phosphate and Human Cancellous Bone for Craniofacial Bone Tissue Engineering : An In Vitro Study |
title_full_unstemmed |
Addition of Adipose Derived Stem Cell to Beta Tricalcium Phosphate and Human Cancellous Bone for Craniofacial Bone Tissue Engineering : An In Vitro Study |
title_sort |
addition of adipose derived stem cell to beta tricalcium phosphate and human cancellous bone for craniofacial bone tissue engineering : an in vitro study |
publisher |
Faculty of Medicine and Health Sciences University Putra Malaysia |
publishDate |
2020 |
url |
https://repository.unair.ac.id/116834/2/Addition%20Of%20Adipose%20Derived%20Stem%20Cell%20To%20Beta%20Tricalcium.pdf https://repository.unair.ac.id/116834/1/11.%20Addition%20of%20Adipose%20Derived%20Stem%20Cell%20To%20Beta%20Tricalcium%20Phosphate%20and%20Human%20Cancellous%20Bone%20for%20Craniofacial%20Bone%20Tissue%20Engineering%20An%20in%20Vitro%20Study.pdf https://repository.unair.ac.id/116834/3/11.Dr.Pratiwi%20%28Addition%20of%20Adipose...%29.pdf https://repository.unair.ac.id/116834/ |
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