TY - JOUR
T1 - The influence of the stable expression of BMP2 in fibrin clots on the remodelling and repair of osteochondral defects
AU - Vogt, Stephan
AU - Wexel, Gabriele
AU - Tischer, Thomas
AU - Schillinger, Ulrike
AU - Ueblacker, Peter
AU - Wagner, Bettina
AU - Hensler, Daniel
AU - Wilisch, Jonas
AU - Geis, Christopher
AU - Wübbenhorst, Daniela
AU - Aigner, Joachim
AU - Gerg, Michael
AU - Krüger, Achim
AU - Salzmann, Gian M.
AU - Martinek, Vladimir
AU - Anton, Martina
AU - Plank, Christian
AU - Imhoff, Andreas B.
AU - Gansbacher, Bernd
N1 - Funding Information:
This work was supported by the Deutsche Forschungsgemeinschaft (MA 2454/2-1, VO 867/4-1) and Klinische Fördermittel Technische Universität München (KKF 8745151/2).
PY - 2009/4
Y1 - 2009/4
N2 - Growth factors like BMP2 have been tested for osteochondral repair, but transfer methods used until now were insufficient. Therefore, the aim of this study was to analyse if stable BMP2 expression after retroviral vector (Bullet) transduction is able to regenerate osteochondral defects in rabbits. Fibrin clots colonized by control or BMP2-transduced chondrocytes were generated for in vitro experiments and implantation into standardized corresponding osteochondral defects (n = 32) in the rabbit trochlea. After 4 and 12 weeks repair tissue was analysed by histology (HE, alcian-blue, toluidine-blue), immunohistochemistry (Col1, Col2, aggrecan, aggrecan-link protein), ELISA (BMP2), and quantitative RT-PCR (BMP2, Col1, Col2, Col10, Cbfa1, Sox9). In vitro clots were also analysed by BMP2-ELISA, histology (alcian-blue), quantitative RT-PCR and in addition by electron microscopy. BMP2 increased Col2 expression, proteoglycan production and cell size in vitro. BMP2 transduction by Bullet was efficient and gene expression was stable in vivo over at least 12 weeks. Proteoglycan content and ICRS-score of repair tissue were improved by BMP2 after 4 and 12 weeks and Col2 expression after 4 weeks compared to controls. However, in spite of stable BMP2 expression, a complete repair of osteochondral defects could not be demonstrated. Therefore, BMP2 is not suitable to regenerate osteochondral lesions completely.
AB - Growth factors like BMP2 have been tested for osteochondral repair, but transfer methods used until now were insufficient. Therefore, the aim of this study was to analyse if stable BMP2 expression after retroviral vector (Bullet) transduction is able to regenerate osteochondral defects in rabbits. Fibrin clots colonized by control or BMP2-transduced chondrocytes were generated for in vitro experiments and implantation into standardized corresponding osteochondral defects (n = 32) in the rabbit trochlea. After 4 and 12 weeks repair tissue was analysed by histology (HE, alcian-blue, toluidine-blue), immunohistochemistry (Col1, Col2, aggrecan, aggrecan-link protein), ELISA (BMP2), and quantitative RT-PCR (BMP2, Col1, Col2, Col10, Cbfa1, Sox9). In vitro clots were also analysed by BMP2-ELISA, histology (alcian-blue), quantitative RT-PCR and in addition by electron microscopy. BMP2 increased Col2 expression, proteoglycan production and cell size in vitro. BMP2 transduction by Bullet was efficient and gene expression was stable in vivo over at least 12 weeks. Proteoglycan content and ICRS-score of repair tissue were improved by BMP2 after 4 and 12 weeks and Col2 expression after 4 weeks compared to controls. However, in spite of stable BMP2 expression, a complete repair of osteochondral defects could not be demonstrated. Therefore, BMP2 is not suitable to regenerate osteochondral lesions completely.
KW - BMP2
KW - Cartilage
KW - Fibrin clot
KW - Hyaline
KW - Osteochondral defect
KW - Retroviral vector
UR - https://www.scopus.com/pages/publications/60549104556
U2 - 10.1016/j.biomaterials.2009.01.016
DO - 10.1016/j.biomaterials.2009.01.016
M3 - Article
C2 - 19185914
AN - SCOPUS:60549104556
SN - 0142-9612
VL - 30
SP - 2385
EP - 2392
JO - Biomaterials
JF - Biomaterials
IS - 12
ER -