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Ominsky, Michael S.
Effects of Hydrostatic Pressure, Biaxial Strain, and Fluid Shear on Osteoblastic Cells: Mechanotransduction Via NF-ΚB, MAP Kinase, and AP-1 Pathways
[PhD thesis].
University of Michigan
Goldstein, Steven A.
(supervisor)
2003
Links
URL:
http://hdl.handle.net/2027.42/123662
OCLC:
712612445
PROQUEST:
287952432
Cited Works (40)
Year
Entry
1990
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J Biomech
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2000
Brown TD. Techniques for mechanical stimulation of cells in vitro: a review.
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1991
Jones DB, Nolte H, Scholübbers J-G, Turner E, Veltel D. Biochemical signal transduction of mechanical strain in osteoblast-like cells.
Biomaterials
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2001
Ryder KD, Duncan RL. Parathyroid hormone enhances fluid shear-induced [Ca
2+
]
i
signaling in osteoblastic cells through activation of mechanosensitive and voltage-sensitive Ca
2+
channels.
J Bone Miner Res
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2001
Bakker AD, Soejima K, Klein-Nulend J, Burger EH. The production of nitric oxide and prostaglandin E₂ by primary bone cells is shear stress dependent.
J Biomech
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1994
Torrance AG, Mosley JR, Suswillo RFL, Lanyon LE. Noninvasive loading of the rat ulna in vivo induces a strain-related modeling response uncomplicated by trauma or periostal pressure.
Calcif Tiss Int
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1996
Rubin C, Gross T, Qin Y-X, Fritton S, Guilak F, McLeod K. Differentiation of the bone-tissue remodeling response to axial and torsional loading in the turkey ulna.
J Bone Joint Surg
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1892
Wolff J. Das Gesetz der Transformation der Knochen. Berlin: Hirschwald; 1892.
1998
Kawata A, Mikuni-Takagaki Y. Mechanotransduction in stretched osteocytes: temporal expression of immediate early and other genes.
Biochem Biophys Res Commun
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2000
Chen NX, Ryder KD, Pavalko FM, Turner CH, Burr DB, Qiu J, Duncan RL. Ca
2+
regulates fluid shear-induced cytoskeletal reorganization and gene expression in osteoblasts.
Am J Physiol Cell Physiol
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1996
Wright M, Jobanputra P, Bavington C, Salter DM, Nuki G. Effects of intermittent pressure-induced strain on the electrophysiology of cultured human chondrocytes: evidence for the presence of stretch-activated membrane ion channels.
Clin Sci
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1998
Jacobs CR, Yellowley CE, Davis BR, Zhou Z, Cimbala JM, Donahue HJ. Differential effect of steady versus oscillating flow on bone cells.
J Biomech
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1995
Hung T Clark, Pollack R Solomon, Reilly TM, Brighton T Carl. Real-time calcium response of cultured bone cells to fluid flow.
Clin Orthop Relat Res
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1996
Mikuni-Takagaki Y, Suzuki Y, Kawase T, Saito S. Distinct responses of different populations of bone cells to mechanical stress.
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1985
Frangos JA, Eskin SG, McIntire LV, Ives CL. Flow effects on prostacyclin production by cultured human endothelial cells.
Science
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1993
Chambers TJ, Evans M, Gardner TN, Turner-Smith A, Chow JWM. Induction of bone formation in rat tail vertebrae by mechanical loading.
Bone Miner
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1997
Salter DM, Robb JE, Wright MO. Electrophysiological responses of human bone cells to mechanical stimulation: evidence for specific integrin function in mechanotransduction.
J Bone Miner Res
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1998
Pavalko FM, Chen NX, Turner CH, Burr DB, Atkinson S, Hsieh Y-F, Qiu J, Duncan RL. Fluid shear-induced mechanical signaling in MC3T3-E1 osteoblasts requires cytoskeleton-integrin interactions.
Am J Physiol
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1987
Frost HM. Bone “mass” and the “mechanostat”: a proposal.
Anat Rec
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2001
You J, Reilly GC, Zhen X, Yellowley CE, Chen Q, Donahue HJ, Jacobs CR. Osteopontin gene regulation by oscillatory fluid flow via intracellular calcium mobilization and activation of mitogen-activated protein kinase in MC3T3–E1 osteoblasts.
J Biol Chem
. April 20, 2001;276(16):13365-13371.
2003
Haut Donahue TL, Haut TR, Yellowley CE, Donahue HJ, Jacobs CR. Mechanosensitivity of bone cells to oscillating fluid flow induced shear stress may be modulated by chemotransport.
J Biomech
. September 2003;36(9):1363-1371.
1999
McAllister TN, Frangos JA. Steady and transient fluid shear stress stimulate NO release in osteoblasts through distinct biochemical pathways.
J Bone Miner Res
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1991
Turner CH, Akhter MP, Raab DM, Kimmel DB, Recker RR. A noninvasive, in vivo model for studying strain adaptive bone modeling.
Bone
. 1991;12(2):73-79.
1994
Turner CH, Forwood MR, Rho J, Yoshikawa T. Mechanical loading thresholds for lamellar and woven bone formation.
J Bone Miner Res
. January 1994;9(1):87-97.
1993
Reich KM, Frangos JA. Protein kinase C mediates flow-induced prostaglandin E₂ production in osteoblasts.
Calcif Tiss Int
. January 1993;52(1):62-66.
2002
Gross TS, Srinivasan S, Liu CC, Clemens TL, Bain SD. Noninvasive loading of the murine tibia: an in vivo model for the study of mechanotransduction.
J Bone Miner Res
. March 2002;17(3):493-501.
1983
Bryant JD. The effect of impact on the marrow pressure of long bones in vitro.
J Biomech
. 1983;16(8):659-665.
1984
Rubin CT, Lanyon LE. Regulation of bone formation by applied dynamic loads.
J Bone Joint Surg
. March 1984;66A(3):397-402.
2001
Donahue SW, Jacobs CR, Donahue HJ. Flow-induced calcium oscillations in rat osteoblasts are age, loading frequency, and shear stress dependent.
Am J Physiol Cell Physiol
. November 2001;281(5):C1635-C1641.
1996
Lean JM, Mackay AG, Chow JW, Chambers TJ. Osteocytic expression of mRNA for c-fos and IGF-I: an immediate early gene response to an osteogenic stimulus.
Am J Physiol Endocrinol Metab
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2002
Ehrlich PJ, Lanyon LE. Mechanical strain and bone cell function: a review.
Osteoporos Int
. September 2002;13(9):688-700.
1994
Weinbaum S, Cowin SC, Zeng Y. A model for the excitation of osteocytes by mechanical loading-induced bone fluid shear stresses.
J Biomech
. March 1994;27(3):339-360.
1997
Klein‐Nulend J, Burger EH, Semeins CM, Raisz LG, Pilbeam CC. Pulsating fluid flow stimulates prostaglandin release and inducible prostaglandin g/h synthase mrna expression in primary mouse bone cells.
J Bone Miner Res
. January 1997;12(1):45-51.
1990
Nunamaker DM, Butterweck DM, Provost MT. Fatigue fractures in thoroughbred racehorses: relationships with age, peak bone strain, and training.
J Orthop Res
. July 1990;8(4):604-611.
1996
Burr DB, Milgrom C, Fyhrie D, Forwood M, Nyska M, Finestone A, Hoshaw S, Saiag E, Simkin A. In vivo measurement of human tibial strains during vigorous activity.
Bone
. May 1996;18(5):405-410.
1996
Johnson DL, McAllister TN, Frangos JA. Fluid flow stimulates rapid and continuous release of nitric oxide in osteoblasts.
Am J Physiol Endocrinol Metab
. July 1996;271(1):E205-E208.
2001
You L, Cowin SC, Schaffler MB, Weinbaum S. A model for strain amplification in the actin cytoskeleton of osteocytes due to fluid drag on pericellular matrix.
J Biomech
. November 2001;34(11):1375-1386.
1994
Raab-Cullen DM, Thiede MA, Petersen DN, Kimmel DB, Recker RR. Mechanical loading stimulates rapid changes in periosteal gene expression.
Calcif Tiss Int
. December 1994;55(6):473-478.
2002
Lee KCL, Maxwell A, Lanyon LE. Validation of a technique for studying functional adaptation of the mouse ulna in response to mechanical loading.
Bone
. September 2002;31(3):407-412.
1999
Iwamoto J, Yeh JK, Aloia JF. Differential effect of treadmill exercise on three cancellous bone sites in the young growing rat.
Bone
. March 1999;24(3):163-169.
Cited By (5)
Year
Entry
2004
Taboas JM.
Mechanobiologic Regulation of Skeletal Progenitor Cell Differentiation
[PhD thesis]. University of Michigan; 2004.
2009
Krizan SJ.
The Role of Adhesion Strength in Human Mesenchymal Stem Cell Osteoblastic Differentiation on Biodegradable Polymers
[PhD thesis]. University of Michigan; 2009.
2010
Joiner DM.
The Effect of Age on Bone and Its Response to Mechanical Stimulation
[PhD thesis]. University of Michigan; 2010.
2010
Soves CP.
The Potential Role of Megakaryocytes in Mechanically Mediated Bone Adaptation
[PhD thesis]. University of Michigan; 2010.
2013
Daley E.
On the Phenotype of White-Tailed Deer Antlerogenic Progenitor Cells
[PhD thesis]. University of Michigan; 2013.