Literature DB >> 25128376

The influence of age on adaptive bone formation and bone resorption.

Annette I Birkhold1, Hajar Razi1, Georg N Duda2, Richard Weinkamer3, Sara Checa2, Bettina M Willie4.   

Abstract

Bone is a tissue with enormous adaptive capacity, balancing resorption and formation processes. It is known that mechanical loading shifts this balance towards an increased formation, leading to enhanced bone mass and mechanical performance. What is not known is how this adaptive response to mechanical loading changes with age. Using dynamic micro-tomography, we show that structural adaptive changes of trabecular bone within the tibia of living mice subjected to two weeks of in vivo cyclic loading are altered by aging. Comparisons of 10, 26 and 78 weeks old animals reveal that the adaptive capacity diminishes. Strikingly, adaptation was asymmetric in that loading increases formation more than it reduces resorption. This asymmetry further shifts the (re)modeling balance towards a net bone loss with age. Loading results in a major increase in the surface area of mineralizing bone. Interestingly, the resorption thickness is independent of loading in trabecular bone in all age groups. This data suggests that during youth, mechanical stimulation induces the recruitment of bone modeling cells whereas in old age, only bone forming cells are affected. These findings provide mechanistic insights into the processes that guide skeletal aging in mice as well as in other mammals.
Copyright © 2014 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Adaptation; Aging; Bone remodeling; Image analysis; Microstructure

Mesh:

Year:  2014        PMID: 25128376     DOI: 10.1016/j.biomaterials.2014.07.051

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  29 in total

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4.  Reproducibility and Radiation Effect of High-Resolution In Vivo Micro Computed Tomography Imaging of the Mouse Lumbar Vertebra and Long Bone.

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Journal:  Ann Biomed Eng       Date:  2019-07-29       Impact factor: 3.934

5.  Minimizing Interpolation Bias and Precision Error in In Vivo µCT-Based Measurements of Bone Structure and Dynamics.

Authors:  Chantal M J de Bakker; Allison R Altman; Connie Li; Mary Beth Tribble; Carina Lott; Wei-Ju Tseng; X Sherry Liu
Journal:  Ann Biomed Eng       Date:  2016-01-19       Impact factor: 3.934

6.  Old Mice Have Less Transcriptional Activation But Similar Periosteal Cell Proliferation Compared to Young-Adult Mice in Response to in vivo Mechanical Loading.

Authors:  Christopher J Chermside-Scabbo; Taylor L Harris; Michael D Brodt; Ingrid Braenne; Bo Zhang; Charles R Farber; Matthew J Silva
Journal:  J Bone Miner Res       Date:  2020-06-01       Impact factor: 6.741

7.  Loading-induced bone formation is mediated by Wnt1 induction in osteoblast-lineage cells.

Authors:  Lisa Y Lawson; Nicole Migotsky; Christopher J Chermside-Scabbo; John T Shuster; Kyu Sang Joeng; Roberto Civitelli; Brendan Lee; Matthew J Silva
Journal:  FASEB J       Date:  2022-09       Impact factor: 5.834

8.  IGF-1 Regulates Vertebral Bone Aging Through Sex-Specific and Time-Dependent Mechanisms.

Authors:  Nicole M Ashpole; Jacquelyn C Herron; Matthew C Mitschelen; Julie A Farley; Sreemathi Logan; Han Yan; Zoltan Ungvari; Erik L Hodges; Anna Csiszar; Yuji Ikeno; Mary Beth Humphrey; William E Sonntag
Journal:  J Bone Miner Res       Date:  2015-09-03       Impact factor: 6.741

9.  The Role of the Loading Condition in Predictions of Bone Adaptation in a Mouse Tibial Loading Model.

Authors:  Vee San Cheong; Visakan Kadirkamanathan; Enrico Dall'Ara
Journal:  Front Bioeng Biotechnol       Date:  2021-06-11

Review 10.  Murine Axial Compression Tibial Loading Model to Study Bone Mechanobiology: Implementing the Model and Reporting Results.

Authors:  Russell P Main; Sandra J Shefelbine; Lee B Meakin; Matthew J Silva; Marjolein C H van der Meulen; Bettina M Willie
Journal:  J Orthop Res       Date:  2019-10-23       Impact factor: 3.102

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