Literature DB >> 17185839

The influence of mechanical stimulation on osteocyte apoptosis and bone viability in human trabecular bone.

V Mann1, C Huber, G Kogianni, D Jones, B Noble.   

Abstract

It has been shown previously using in vivo and ex vivo animal models, that cyclical mechanical stimulation is capable of maintaining osteocyte viability through the control of apoptotic cell death. Here we have studied the effect of mechanical stimulation on osteocyte viability in human trabecular bone maintained in a 3-D bioreactor system. Bone samples, maintained in the bioreactor system for periods of 3, 7 and 27 days, were subjected to either cyclical mechanical stimulation which engendered a maximum of 3,000 microstrain in a waveform corresponding to physiological jumping exercise for 5 minutes daily or control unloading. Unloading resulted in a decrease in osteocyte viability within 3 days that was accompanied by increased levels of cellular apoptosis. Mechanical stimulation significantly reduced apoptosis (p< or =0.032) and improved the maintenance of osteocyte viability in bone from all patient samples. The percentage Alkaline Phosphatase (ALP) labelled bone surface was significantly increased (p< or =0.05) in response to mechanical stimulation in all samples as was the Bone Formation Rate (BFR/BS) (p=0.005) as determined by calcein label incorporation in the 27-day experiment. These data indicate that in this model system, mechanical stimulation is capable of maintaining osteocyte viability in human bone.

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Year:  2006        PMID: 17185839      PMCID: PMC1847464     

Source DB:  PubMed          Journal:  J Musculoskelet Neuronal Interact        ISSN: 1108-7161            Impact factor:   2.041


  37 in total

1.  Loss of osteocyte integrity in association with microdamage and bone remodeling after fatigue in vivo.

Authors:  O Verborgt; G J Gibson; M B Schaffler
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2.  Development of a mechanical testing and loading system for trabecular bone studies for long term culture.

Authors:  D B Jones; E Broeckmann; T Pohl; E L Smith
Journal:  Eur Cell Mater       Date:  2003-06-30       Impact factor: 3.942

3.  Techniques for the study of apoptosis in bone.

Authors:  Brendon S Noble; Hazel Y Stevens
Journal:  Methods Mol Med       Date:  2003

4.  PTH receptors and apoptosis in osteocytes.

Authors:  F R Bringhurst
Journal:  J Musculoskelet Neuronal Interact       Date:  2002-03       Impact factor: 2.041

5.  Receptors for the carboxyl-terminal region of pth(1-84) are highly expressed in osteocytic cells.

Authors:  P Divieti; N Inomata; K Chapin; R Singh; H Jüppner; F R Bringhurst
Journal:  Endocrinology       Date:  2001-02       Impact factor: 4.736

6.  Osteocyte apoptosis is induced by weightlessness in mice and precedes osteoclast recruitment and bone loss.

Authors:  J Ignacio Aguirre; Lilian I Plotkin; Scott A Stewart; Robert S Weinstein; A Michael Parfitt; Stavros C Manolagas; Teresita Bellido
Journal:  J Bone Miner Res       Date:  2006-04-05       Impact factor: 6.741

7.  Trabecular bone volume and microdamage accumulation in the femoral heads of women with and without femoral neck fractures.

Authors:  S Mori; R Harruff; W Ambrosius; D B Burr
Journal:  Bone       Date:  1997-12       Impact factor: 4.398

8.  Apoptosis of osteocytes in glucocorticoid-induced osteonecrosis of the hip.

Authors:  R S Weinstein; R W Nicholas; S C Manolagas
Journal:  J Clin Endocrinol Metab       Date:  2000-08       Impact factor: 5.958

9.  Identification of apoptotic changes in osteocytes in normal and pathological human bone.

Authors:  B S Noble; H Stevens; N Loveridge; J Reeve
Journal:  Bone       Date:  1997-03       Impact factor: 4.398

10.  Characterization of osteogenic response to mechanical stimulation in cancellous bone of rat caudal vertebrae.

Authors:  J W Chow; C J Jagger; T J Chambers
Journal:  Am J Physiol       Date:  1993-08
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  26 in total

Review 1.  Osteocyte regulation of bone mineral: a little give and take.

Authors:  G J Atkins; D M Findlay
Journal:  Osteoporos Int       Date:  2012-08       Impact factor: 4.507

2.  Preclinical models for in vitro mechanical loading of bone-derived cells.

Authors:  Robin Michael Delaine-Smith; Behzad Javaheri; Jennifer Helen Edwards; Marisol Vazquez; Robin Mark Howard Rumney
Journal:  Bonekey Rep       Date:  2015-08-19

Review 3.  The biology of osteocytes.

Authors:  Giolanta Kogianni; Brendon S Noble
Journal:  Curr Osteoporos Rep       Date:  2007-06       Impact factor: 5.096

4.  Changes in osteocyte density correspond with changes in osteoblast and osteoclast activity in an osteoporotic sheep model.

Authors:  M R Zarrinkalam; A Mulaibrahimovic; G J Atkins; R J Moore
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Review 5.  Heat generated by dental implant drills during osteotomy-a review: heat generated by dental implant drills.

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Journal:  J Indian Prosthodont Soc       Date:  2014-02-18

6.  Oncologic doses of zoledronic acid induce osteonecrosis of the jaw-like lesions in rice rats (Oryzomys palustris) with periodontitis.

Authors:  J Ignacio Aguirre; Mohammed P Akhter; Donald B Kimmel; Jennifer E Pingel; Alyssa Williams; Marda Jorgensen; Lakshmyya Kesavalu; Thomas J Wronski
Journal:  J Bone Miner Res       Date:  2012-10       Impact factor: 6.741

Review 7.  Osteocyte apoptosis.

Authors:  Robert L Jilka; Brendon Noble; Robert S Weinstein
Journal:  Bone       Date:  2012-12-11       Impact factor: 4.398

8.  CCL7 is a protective factor secreted by mechanically loaded osteocytes.

Authors:  Y Kitase; S Lee; J Gluhak-Heinrich; M L Johnson; S E Harris; L F Bonewald
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9.  Release of pro-inflammatory cytokines from muscle and bone causes tenocyte death in a novel rotator cuff in vitro explant culture model.

Authors:  Brianne K Connizzo; Alan J Grodzinsky
Journal:  Connect Tissue Res       Date:  2018-06-06       Impact factor: 3.417

Review 10.  Bone quality: the determinants of bone strength and fragility.

Authors:  Hélder Fonseca; Daniel Moreira-Gonçalves; Hans-Joachim Appell Coriolano; José Alberto Duarte
Journal:  Sports Med       Date:  2014-01       Impact factor: 11.136

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