scholarly journals The aging of Wolff's ?law?: Ontogeny and responses to mechanical loading in cortical bone

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Author(s):  
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Daniel E. Lieberman
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...  

Bone ◽  
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Toshihiro Sugiyama ◽  
Leanne K. Saxon ◽  
Gul Zaman ◽  
Alaa Moustafa ◽  
Andrew Sunters ◽  
...  

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Vol 41 ◽  
pp. S50
Author(s):  
Gisela Kuhn ◽  
Philipp Schneider ◽  
Duncan Webster ◽  
Elad Wasserman ◽  
Ralph Müller

Bone ◽  
1996 ◽  
Vol 18 (1) ◽  
pp. S103-S104
Author(s):  
JR Mosley ◽  
J Lynch ◽  
LE Lanyon

2019 ◽  
Vol 19 (10) ◽  
pp. e37-e38
Author(s):  
Fani Ziouti ◽  
Maximilian Rummler ◽  
Catherine Julien ◽  
Regina Ebert ◽  
Franz Jakob ◽  
...  

2016 ◽  
Vol 311 (1) ◽  
pp. E138-E144 ◽  
Author(s):  
Johan Svensson ◽  
Sara H. Windahl ◽  
Leanne Saxon ◽  
Klara Sjögren ◽  
Antti Koskela ◽  
...  

Low circulating IGF-I is associated with increased fracture risk. Conditional depletion of IGF-I produced in osteoblasts or osteocytes inhibits the bone anabolic effect of mechanical loading. Here, we determined the role of endocrine IGF-I for the osteogenic response to mechanical loading in young adult and old female mice with adult, liver-specific IGF-I inactivation (LI-IGF-I−/− mice, serum IGF-I reduced by ≈70%) and control mice. The right tibia was subjected to short periods of axial cyclic compressive loading three times/wk for 2 wk, and measurements were performed using microcomputed tomography and mechanical testing by three-point bending. In the nonloaded left tibia, the LI-IGF-I−/− mice had lower cortical bone area and increased cortical porosity, resulting in reduced bone mechanical strength compared with the controls. Mechanical loading induced a similar response in LI-IGF-I−/− and control mice in terms of cortical bone area and trabecular bone volume fraction. In fact, mechanical loading produced a more marked increase in cortical bone mechanical strength, which was associated with a less marked increase in cortical porosity, in the LI-IGF-I−/− mice compared with the control mice. In conclusion, liver-derived IGF-I regulates cortical bone mass, cortical porosity, and mechanical strength under normal (nonloaded) conditions. However, despite an ∼70% reduction in circulating IGF-I, the osteogenic response to mechanical loading was not attenuated in the LI-IGF-I−/− mice.


Bone Reports ◽  
2021 ◽  
Vol 14 ◽  
pp. 100885
Author(s):  
Behzad Javaheri ◽  
Amy Lock ◽  
Mark Hopkinson ◽  
Samuel Monzem ◽  
Yu-Mei Chang ◽  
...  

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