Preparation of decellularized three dimentional scaffolds as the model for tissue engineering and their functional assessments in vitro application of blastema tissue

Tissue engineering is based on three main factors including scaffolds, cells and growth factors. Natural scaffolds derived from decellularized tissues and organs have been successfully used in tissue engineering. Decellularization studies have shown that natural scaffolds which maintaine their main...

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Main Authors: N Mahdavi Shahri, M MoghaddamMatin, M Fereidoni, M BehnamRassouli, A Moghimi, AR Bahrami, MA Namini, S Naderi, M Kheirabadi, F Naseri
Format: Article
Language:English
Published: Mashhad University of Medical Sciences 2014-05-01
Series:International Journal of Pediatrics
Subjects:
Online Access:http://ijp.mums.ac.ir/pdf_2664_da2fb191722c0aa0d0e90490c2c65abe.html
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author N Mahdavi Shahri
M MoghaddamMatin
M Fereidoni
M BehnamRassouli
A Moghimi
AR Bahrami
MA Namini
S Naderi
M Kheirabadi
F Naseri
author_facet N Mahdavi Shahri
M MoghaddamMatin
M Fereidoni
M BehnamRassouli
A Moghimi
AR Bahrami
MA Namini
S Naderi
M Kheirabadi
F Naseri
author_sort N Mahdavi Shahri
collection DOAJ
description Tissue engineering is based on three main factors including scaffolds, cells and growth factors. Natural scaffolds derived from decellularized tissues and organs have been successfully used in tissue engineering. Decellularization studies have shown that natural scaffolds which maintaine their main structure and properties could be a suitable tool for studying cellular behaviors and preparation of such scaffolds is an important part of future research in biology that may have extensive applications in regenerative medicine and tissue engineering. Blastema tissue which is produced after injuries in some organisms has embryonic cell characteristics, and can be a suitable model for evaluation of cell behaviors in various tissues. In this review, the process of decellularization, process involved in preparation of 3D scaffolds derived from extracellular matrix of various tissues including cartilage, bone, gingiva, aorta and bladder, and assessment of their interactions with blastema tissue under in vitro conditions are discussed.   Keywords: Tissue engineering, Blastema tissue, Regenerative.
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spelling doaj.art-12df9c6cabed4976b926432f9c1c92812022-12-22T04:23:03ZengMashhad University of Medical SciencesInternational Journal of Pediatrics2345-50472345-50552014-05-0122.315152664Preparation of decellularized three dimentional scaffolds as the model for tissue engineering and their functional assessments in vitro application of blastema tissueN Mahdavi Shahri0M MoghaddamMatin1M Fereidoni2M BehnamRassouli3A Moghimi4AR Bahrami5MA Namini6S Naderi7M Kheirabadi8F Naseri9Professor, Histology and Cytology, Department of Biology, Faculty of Science, Stem Cell Biotechnology Research Group, Institute of Biotechnology, Ferdowsi University of Mashhad, Mashhad, Iran.Associate Professor, Molecular Biology, Department of Biology, Faculty of Science, Cell and Molecular Biotechnology Research Group, Institute of Biotechnology, Ferdowsi University of Mashhad, Mashhad,Iran.Associate Professor, Physiology, Department of Biology, Faculty of Science, Ferdowsi University of Mashhad, Mashhad, Iran.Professor, Physiology, Department of Biology, Faculty of Science, Ferdowsi University of Mashhad, Mashhad, Iran.Professor, Physiology, Department of Biology, Faculty of Science, Ferdowsi University of Mashhad, Mashhad, Iran.Professor, Molecular Biology, Department of Biology, Faculty of Science, Cell and Molecular Biotechnology Research Group, Institute of Biotechnology, Ferdowsi University of Mashhad, Mashhad, Iran.MSc of Physiology, Department of Biology, Faculty of Sciences, Ferdowsi University of Mashhad, Mashhad, Iran.MSc of Developmental Biology, Department of Biology, Faculty of Sciences, Ferdowsi University of Mashhad, Mashhad, Iran.MSc of Physiology, Department of Biology, Faculty of Sciences, Ferdowsi University of Mashhad, Mashhad, Iran.MSc of Physiology, Central Laboratory, Ferdowsi University of Mashhad, Mashhad, Iran.Tissue engineering is based on three main factors including scaffolds, cells and growth factors. Natural scaffolds derived from decellularized tissues and organs have been successfully used in tissue engineering. Decellularization studies have shown that natural scaffolds which maintaine their main structure and properties could be a suitable tool for studying cellular behaviors and preparation of such scaffolds is an important part of future research in biology that may have extensive applications in regenerative medicine and tissue engineering. Blastema tissue which is produced after injuries in some organisms has embryonic cell characteristics, and can be a suitable model for evaluation of cell behaviors in various tissues. In this review, the process of decellularization, process involved in preparation of 3D scaffolds derived from extracellular matrix of various tissues including cartilage, bone, gingiva, aorta and bladder, and assessment of their interactions with blastema tissue under in vitro conditions are discussed.   Keywords: Tissue engineering, Blastema tissue, Regenerative.http://ijp.mums.ac.ir/pdf_2664_da2fb191722c0aa0d0e90490c2c65abe.htmlOral Presentation
spellingShingle N Mahdavi Shahri
M MoghaddamMatin
M Fereidoni
M BehnamRassouli
A Moghimi
AR Bahrami
MA Namini
S Naderi
M Kheirabadi
F Naseri
Preparation of decellularized three dimentional scaffolds as the model for tissue engineering and their functional assessments in vitro application of blastema tissue
International Journal of Pediatrics
Oral Presentation
title Preparation of decellularized three dimentional scaffolds as the model for tissue engineering and their functional assessments in vitro application of blastema tissue
title_full Preparation of decellularized three dimentional scaffolds as the model for tissue engineering and their functional assessments in vitro application of blastema tissue
title_fullStr Preparation of decellularized three dimentional scaffolds as the model for tissue engineering and their functional assessments in vitro application of blastema tissue
title_full_unstemmed Preparation of decellularized three dimentional scaffolds as the model for tissue engineering and their functional assessments in vitro application of blastema tissue
title_short Preparation of decellularized three dimentional scaffolds as the model for tissue engineering and their functional assessments in vitro application of blastema tissue
title_sort preparation of decellularized three dimentional scaffolds as the model for tissue engineering and their functional assessments in vitro application of blastema tissue
topic Oral Presentation
url http://ijp.mums.ac.ir/pdf_2664_da2fb191722c0aa0d0e90490c2c65abe.html
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