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An Animal Model Study for Bone Repair With Encapsulated Differentiated Osteoblasts From Adipose-Derived Stem Cells in Alginate



Hashemibeni B1 ; Esfandiari E1 ; Sadeghi F1 ; Heidary F2 ; Roshankhah S1 ; Mardani M1 ; Goharian V3, 4
Authors
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Authors Affiliations
  1. 1. Department of Anatomical Sciences, Medical School, Isfahan University of Medical Sciences, Isfahan, Iran
  2. 2. Torabinegad Research Center, Dental School, Isfahan University of Medical Sciences, Isfahan, Iran
  3. 3. Cancer Prevention Research Center, Medical School, Isfahan University of Medical Sciences, Isfahan, Iran
  4. 4. Institute of Novin Tahlilgarane Nesfe-jahan, Isfahan, Iran

Source: Iranian Journal of Basic Medical Sciences Published:2014

Abstract

Materials and Methods: In this study, 6 canine’s ADSCs were encapsulated in alginate and differentiated into osteoblasts. Alkaline phosphatase assay (ALP) and RT-PCR method were applied to confirm the osteogenic induction. Then, encapsulated differentiated cells (group 1) and cell-free alginate (group 2) implanted in defected part of dog's tibia for 4 and 8 weeks. Regenerated tissues and compressive strength of samples were evaluated by histological and Immunohistochemical (IHC) methods and Tensometer Universal Machine.; Objective(s): Adipose derived stem cells (ADSCs) can be engineered to express bone specific markers. The aim of this study is to evaluate repairing tibia in animal model with differentiated osteoblasts from autologous ADSCs in alginate scaffold.; Results: Our results showed that ADSCs were differentiated into osteoblasts in vitro, and type I collagen and osteocalcin genes expression in differentiated osteoblasts was proved by RT-PCR. In group 2, ossification and thickness of trabecula were low compared to group 1, and in both groups woven bone was observed instead of control group's compact bone. Considering time, we found bone trabeculae regression and ossification reduction after 8 weeks compared with 4 weeks in group 2, but in group 1 bone formation was increased in 8 weeks. Presence of differentiated cells caused significantly more compressive strength in comparison with group 2 (P-value ≤0.05).; Conclusion: This research showed that engineering bone from differentiated adipose-derived stem cells, encapsulated in alginate can repair tibia defects. © 2014, Mashhad University of Medical Sciences. All rights reserved.
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