Biological effects of rAAV-caAlk2 coating on structural allograft healing

被引:85
作者
Koefoed, M
Ito, H
Gromov, K
Reynolds, DG
Awad, HA
Rubery, PT
Ulrich-Vinther, M
Soballe, K
Guldberg, RE
Lin, ASP
O'Keefe, RJ
Zhang, XP
Schwarz, EM
机构
[1] Univ Rochester, Med Ctr, Ctr Musculoskeletal Res, Rochester, NY 14642 USA
[2] Aarhus Univ Hosp, Dept Orthoped, DK-8000 Aarhus, Denmark
[3] Georgia Inst Technol, Inst Bioengn & Biosci, Atlanta, GA 30332 USA
关键词
allograft; recombinant adeno-associated virus; bone morphogenetic protein;
D O I
10.1016/j.ymthe.2005.02.026
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Structural bone allografts often fracture due to their lack of osteogenic and remodeling potential. To overcome these limitations, we utilized allografts coated with recombinant adeno-associated virus (rAAV) that mediate in vivo gene transfer. Using beta-galactosidase as a reporter gene, we show that 4-mm murine femoral allografts coated with rAAV-LacZ are capable of transducing adjacent inflammatory cells and osteoblasts in the fracture callus following transplantation. While this LacZ vector had no effect on allograft healing, bone morphogenetic protein signals delivered via rAAV-caAlk2 coating induced endochondral bone formation directly on the cortical surface of the allograft by day 14. By day 28 there was evidence of remodeling of the new woven bone and massive osteoclastic resorption of the cortical surface of the rAAV-caAlk2-coated allografts only. Micro-CT analysis of rAAV-LacZ- vs rAAV-caAlk2-coated allografts after 42 days of healing demonstrated a significant increase in new bone formation (0.67 +/- 0.21 vs 2.49 +/- 0.40 mm(3); P < 0.005). Furthermore, the 3D micro-CT images of femurs grafted with rAAV-Alk2-coated allografts provided the first evidence that complete bridging of bone around a cortical allograft is possible. These results indicate that cell-free, rAAV-coated allografts have the potential to revitalize in vivo following transplantation.
引用
收藏
页码:212 / 218
页数:7
相关论文
共 39 条
[1]   Regional gene therapy to enhance bone repair [J].
Baltzer, AWA ;
Lieberman, JR .
GENE THERAPY, 2004, 11 (04) :344-350
[2]   FRACTURES OF ALLOGRAFTS - FREQUENCY, TREATMENT, AND END-RESULTS [J].
BERREY, BH ;
LORD, CF ;
GEBHARDT, MC ;
MANKIN, HJ .
JOURNAL OF BONE AND JOINT SURGERY-AMERICAN VOLUME, 1990, 72A (06) :825-833
[3]   Localized, direct plasmid gene delivery in vivo:: prolonged therapy results in reproducible tissue regeneration [J].
Bonadio, J ;
Smiley, E ;
Patil, P ;
Goldstein, S .
NATURE MEDICINE, 1999, 5 (07) :753-759
[4]  
BURCHARDT H, 1987, ORTHOP CLIN N AM, V18, P187
[5]   Gene therapy for new bone formation using adeno-associated viral bone morphogenetic protein-2 vectors [J].
Chen, Y ;
Luk, KDK ;
Cheung, KMC ;
Xu, R ;
Lin, MC ;
Lu, WW ;
Leong, JCY ;
Kung, HF .
GENE THERAPY, 2003, 10 (16) :1345-1353
[6]   Smad8 mediates the signaling of the receptor serine kinase [J].
Chen, Y ;
Bhushan, A ;
Vale, W .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (24) :12938-12943
[7]   Effect of anti-tumor necrosis factor-α gene therapy on wear debris-induced osteolysis [J].
Childs, LM ;
Goater, JJ ;
O'Keefe, RJ ;
Schwarz, EM .
JOURNAL OF BONE AND JOINT SURGERY-AMERICAN VOLUME, 2001, 83A (12) :1789-1797
[8]  
DELUCA JV, 1987, T ORTHOP RES SOC, V11, P376
[9]   Quantitative microcomputed tomography analysis of collateral vessel development after ischemic injury [J].
Duvall, CL ;
Taylor, WR ;
Weiss, D ;
Guldberg, RE .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2004, 287 (01) :H302-H310
[10]   Clinical applications of recombinant human BMPs: Early experience and future development [J].
Einhorn, TA .
JOURNAL OF BONE AND JOINT SURGERY-AMERICAN VOLUME, 2003, 85A :82-88