Title of article :
Cell Therapy and Tissue Engineering in Bone Defect Reconstruction; A Review
Author/Authors :
Khoshsirat, Shahrokh Hearing Disorders Research Center - Loghman Hakim Medical Center - Shahid Beheshti University of Medical Sciences - Tehran, Iran , Abbaszadeh, Hojjat-Allah Hearing Disorders Research Center - Loghman Hakim Medical Center - Shahid Beheshti University of Medical Sciences - Tehran, Iran , Khoramgah, Maryam Sadat Hearing Disorders Research Center - Loghman Hakim Medical Center - Shahid Beheshti University of Medical Sciences - Tehran, Iran , Keramatinia, Aliasghar Hearing Disorders Research Center - Loghman Hakim Medical Center - Shahid Beheshti University of Medical Sciences - Tehran, Iran , Niknazar, Somayeh Hearing Disorders Research Center - Loghman Hakim Medical Center - Shahid Beheshti University of Medical Sciences - Tehran, Iran , Darabi, Shahram Cellular and Molecular Research Center - Qazvin University of Medical Sciences - Qazvin, Iran , Tahmasebinia, Foozhan Hearing Disorders Research Center - Loghman Hakim Medical Center - Shahid Beheshti University of Medical Sciences - Tehran, Iran , Peyvandi, Hassan Hearing Disorders Research Center - Loghman Hakim Medical Center - Shahid Beheshti University of Medical Sciences - Tehran, Iran
Pages :
8
From page :
1
To page :
8
Abstract :
Background: Extensive research on bone tissue engineering as a novel therapeutic approach to design and fabricate suitable scaffolds is in progress to overcome the limitations of conventional bone repair techniques. In recent years, tissue engineering and remedial medicine have come up with the strategy of designing, fabricating, and optimizing synthetic and natural scaffolds containing cells and growth factors to facilitate the direct and indirect mechanisms of bone tissue repair in the body. Based on many studies, cellular source, cell medium condition, and biological scaffolds are critical factors in bone defect repair in the field of tissue engineering. Aim: In this review, we focus on the combination of mesenchymal cells derived from the human adipose tissue, stem cell-to-bone differentiation medium, and biocompatible polyvinyl alcohol-graphene oxide scaffolds in bone lesion repair to gain a better understanding of each factor. This would, in turn, help us design and develop optimal therapeutic approaches for bone repair and regeneration. Conclusion: The combination of mesenchymal cells and biocompatible scaffolds proved promising in the process of bone lesion repair.
Keywords :
Bone defect , Cell therapy , Tissue engineering
Journal title :
Otorhinolaryngology and Facial Plastic Surgery
Serial Year :
2019
Record number :
2727511
Link To Document :
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