Attenuated response to in vivo mechanical loading in mice with conditional osteoblast ablation of the connexin43 gene (Gja1)

被引:85
作者
Grimston, Susan K. [1 ]
Brodt, Michael D. [2 ]
Silva, Matthew J. [2 ]
Civitelli, Roberto [1 ,2 ]
机构
[1] Washington Univ, Div Bone & Mineral Dis, Dept Internal Med, Sch Med, St Louis, MO 63110 USA
[2] Washington Univ, Dept Orthopaed Surg, Sch Med, St Louis, MO 63110 USA
关键词
connexin43; mechanical load; bone morphology;
D O I
10.1359/JBMR.080222
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Introduction: In vitro data suggest that gap junctional intercellular communication mediated by connexin43 (Cx43) plays an important role in bone cell response to mechanical stimulation. We tested this hypothesis in vivo in a model of genetic deficiency of the Cx43 gene (Gja1). Materials and Methods: Four-month-old female mice with a conditional Gja1 ablation in osteoblasts (ColCre; Gja1(-/flox) ), as well as wildtype (Gja1(+/flox)) and heterozygous equivalent (Gja(1-/flox)) littermates (eight per genotype), were subjected to a three-point bending protocol for 5 d/wk for 2 wk. Microstructural parameters and dynamic indices of bone formation were estimated on sections of loaded and control contralateral tibias. Results: ColCre;Gja1(-/flox) mice had significantly thinner cortices, but larger marrow area and total cross-sectional area in the tibial diaphysis, compared with the other groups. The ColCre; Gja1(-/flox) mice needed similar to 40% more force to generate the required endocortical strain. In Gja1(+/flox) mice, the loading regimen produced abundant double calcein labels at the endocortical surface, whereas predominantly single labels were seen in ColCre;Gja1(-/flox) mice. Accordingly, mineral apposition rate and bone formation rate were significantly lower (54.8% and 50.2%, respectively) in ColCre;Gja(-/flox) relative to Gja1(+/flox) mice. Intermediate values were found in Gia1(-/flox) mice. Conclusions: Gja deficiency results in thinner but larger tibial diaphyses, resembling changes occurring with aging, and it attenuates the anabolic response to in vivo mechanical loading. Thus, Cx43 plays an instrumental role in this adaptive response to physical stimuli.
引用
收藏
页码:879 / 886
页数:8
相关论文
共 47 条
[11]  
DONAHUE HJ, 1995, J BONE MINER RES, V10, P881
[12]   Gap junctions and biophysical regulation of bone cell differentiation [J].
Donahue, HJ .
BONE, 2000, 26 (05) :417-422
[13]   MECHANOTRANSDUCTION AND THE FUNCTIONAL-RESPONSE OF BONE TO MECHANICAL STRAIN [J].
DUNCAN, RL ;
TURNER, CH .
CALCIFIED TISSUE INTERNATIONAL, 1995, 57 (05) :344-358
[14]   A Gja1 missense mutation in a mouse model of oculodentodigital dysplasia [J].
Flenniken, AM ;
Osborne, LR ;
Anderson, N ;
Ciliberti, N ;
Fleming, C ;
Gittens, JEI ;
Gong, XQ ;
Kelsey, LB ;
Lounsbury, C ;
Moreno, L ;
Nieman, BJ ;
Peterson, K ;
Qu, DW ;
Roscoe, W ;
Shao, Q ;
Tong, D ;
Veitch, GIL ;
Voronina, I ;
Vukobradovic, I ;
Wood, GA ;
Zhu, YH ;
Zirngibl, RA ;
Aubin, JE ;
Bai, DL ;
Bruneau, BG ;
Grynpas, M ;
Henderson, JE ;
Henkelman, RM ;
McKerlie, C ;
Sled, JG ;
Stanford, WL ;
Laird, DW ;
Kidder, GM ;
Adamson, SL ;
Rossant, J .
DEVELOPMENT, 2005, 132 (19) :4375-4386
[15]   Connexins, connexons, and intercellular communication [J].
Goodenough, DA ;
Goliger, JA ;
Paul, DL .
ANNUAL REVIEW OF BIOCHEMISTRY, 1996, 65 :475-502
[16]   Role of connexin43 in osteoblast response to physical load [J].
Grimston, Susan K. ;
Screen, Joanne ;
Haskell, Jennifer H. ;
Chung, Dong Jin ;
Brodt, Michael D. ;
Silva, Matthew J. ;
Civitelli, Roberto .
SKELETAL DEVELOPMENT AND REMODELING IN HEALTH, DISEASE, AND AGING, 2006, 1068 :214-224
[17]   Mechanical strain and fluid movement both activate extracellular regulated kinase (ERK) in osteoblast-like cells but via different signaling pathways [J].
Jessop, HL ;
Rawlinson, SCF ;
Pitsillides, AA ;
Lanyon, LE .
BONE, 2002, 31 (01) :186-194
[18]   Human osteoblastic cells propagate intercellular calcium signals by two different mechanisms [J].
Jorgensen, NR ;
Henriksen, Z ;
Brot, C ;
Eriksen, EF ;
Sorensen, OH ;
Civitelli, R ;
Steinberg, TH .
JOURNAL OF BONE AND MINERAL RESEARCH, 2000, 15 (06) :1024-1032
[19]   Genetic predisposition to low bone mass is paralleled by an enhanced sensitivity to signals anabolic to the skeleton [J].
Judex, S ;
Donahue, LR ;
Rubin, C .
FASEB JOURNAL, 2002, 16 (08) :1280-+
[20]   Exercise and mechanical loading increase periosteal bone formation and whole bone strength in C57BL/6J mice but not in C3H/Hej mice [J].
Kodama, Y ;
Umemura, Y ;
Nagasawa, S ;
Beamer, WG ;
Donahue, LR ;
Rosen, CR ;
Baylink, DJ ;
Farley, JR .
CALCIFIED TISSUE INTERNATIONAL, 2000, 66 (04) :298-306