Title of article :
Cartilage repair using an in vitro generated scaffold-free tissue-engineered construct derived from porcine synovial mesenchymal stem cells
Author/Authors :
Wataru Ando، نويسنده , , Kosuke Tateishi، نويسنده , , David A. Hart، نويسنده , , Daisuke Katakai، نويسنده , , Yoshinari Tanaka، نويسنده , , Ken Nakata، نويسنده , , Jun Hashimoto، نويسنده , , Hiromichi Fujie، نويسنده , , Konsei Shino، نويسنده , , Hideki Yoshikawa، نويسنده , , Norimasa Nakamura، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Pages :
9
From page :
5462
To page :
5470
Abstract :
The objective was to in vitro generate a mesenchymal stem cell (MSC)-based tissue-engineered construct (TEC) to facilitate in vivo repair in a porcine chondral defect model. Porcine synovial MSCs were cultured in monolayer at high density and were subsequently detached from the substratum. The cell/matrix complex spontaneously contracted to develop a basic TEC. Immunohistochemical analysis showed that the basic TEC contained collagen I and III, fibronectin, and vitronectin. The basic TEC exhibited stable adhesion to the surface of a porcine cartilage matrix in an explant culture system. The TEC cultured in chondrogenic media exhibited elevated expression of glycosaminoglycan and chondrogenic marker genes. The TEC were implanted in vivo into chondral defects in the medial femoral condyle of 4-month-old pigs, followed by sacrifice after 6 months. Implantation of a TEC into chondral defects initiated repair with a chondrogenic-like tissue, as well as secure biological integration to the adjacent cartilage. Histologically, the repair tissue stained positively with Safranin O and for collagen II. Biomechanical evaluation revealed that repair tissue exhibited mechanical properties similar to those of normal porcine cartilage in static compression and friction tests. This technology is a unique and promising method for stem cell-based cartilage repair.
Keywords :
Mesenchymal stem cell , Cartilage tissue engineering , connective tissue , cell culture , animal model , ECM (extracellular matrix)
Journal title :
Biomaterials
Serial Year :
2007
Journal title :
Biomaterials
Record number :
547829
Link To Document :
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