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Published in: Osteoporosis International 9/2005

01-09-2005 | Original Article

Effects of risedronate on trabecular microstructure and biomechanical properties in ovariectomized rat tibia

Authors: Masako Ito, Akifumi Nishida, Kiyoshi Aoyagi, Masataka Uetani, Kuniaki Hayashi, Masahiro Kawase

Published in: Osteoporosis International | Issue 9/2005

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Abstract

We determined the effect of risedronate on the trabecular microstructure of ovariectomized rat tibiae, using micro-computed tomography, in order to investigate how changes in microstructure contribute to biomechanical properties. Fifty 18-week-old rats underwent sham operation (n=10) or ovariectomy (OVX) (n=40). The OVX rats were further divided into four groups (n=10 for each group) and treated with risedronate at doses of 0, 0.1, 0.5 or 2.5 mg/kg for 9 months. OVX caused deterioration of three-dimensional trabecular microstructure, notably structure model index (SMI) and connectivity density, while treatment of OVX rats with risedronate at 0.5 and 2.5 mg/kg improved those deleterious microstructural changes. Biomechanical property, as assessed by finite element analysis (FEA), correlated significantly with trabecular bone volume fraction (BV/TV), and the correlation further increased substantially when microstructural parameters were added, especially SMI and connectivity density, with risedronate therapy. Thus, it is suggested that, in addition to increasing bone mass, risedronate improves biomechanical property by maintaining a plate-like structure as well as connectivity of trabeculae.
Literature
1.
go back to reference Wasnich RD, Paul D, Miller PD (2000) Antifracture efficacy of antiresorptive agents are related to changes in bone density. J Clin Endocrinol Metab 85:231–236 Wasnich RD, Paul D, Miller PD (2000) Antifracture efficacy of antiresorptive agents are related to changes in bone density. J Clin Endocrinol Metab 85:231–236
2.
go back to reference Reginster J-Y, Minne HW, Sorensen OH, Hooper M, Roux C, Brandi ML, Lund B, Ethgen D, Pack S, Roumagnac I, Eastell R (2000) Randomized trial of the effects of risedronate on vertebral fractures in women with established postmenopausal osteoporosis. Osteoporos Int 11:83–91CrossRefPubMed Reginster J-Y, Minne HW, Sorensen OH, Hooper M, Roux C, Brandi ML, Lund B, Ethgen D, Pack S, Roumagnac I, Eastell R (2000) Randomized trial of the effects of risedronate on vertebral fractures in women with established postmenopausal osteoporosis. Osteoporos Int 11:83–91CrossRefPubMed
3.
go back to reference Borah B, Dufrensne TE, Chmielewski PA, Gross GJ, Prenger MC, Phipps RJ (2002) Risedronate preserves trabecular architecture and increases bone strength in vertebra of ovariectomized minipigs as measured by three-dimensional microcomputed tomography. J Bone Miner Res 17:1139–1147PubMed Borah B, Dufrensne TE, Chmielewski PA, Gross GJ, Prenger MC, Phipps RJ (2002) Risedronate preserves trabecular architecture and increases bone strength in vertebra of ovariectomized minipigs as measured by three-dimensional microcomputed tomography. J Bone Miner Res 17:1139–1147PubMed
4.
go back to reference Parfitt AM (1992) Implications of architecture for the pathogenesis and prevention of vertebral fracture. Bone 13:S41–S47CrossRef Parfitt AM (1992) Implications of architecture for the pathogenesis and prevention of vertebral fracture. Bone 13:S41–S47CrossRef
5.
go back to reference Ruegsegger P, Koller B, Mueller R (1996) A microtomographic system for the non-destructive evaluation of bone architecture. Calcif Tissue Int 58:24–29CrossRefPubMed Ruegsegger P, Koller B, Mueller R (1996) A microtomographic system for the non-destructive evaluation of bone architecture. Calcif Tissue Int 58:24–29CrossRefPubMed
6.
go back to reference Mueller R, Hahn M, Vogel M, Delling G, Ruegsegger P (1996) Morphometric analysis of non-invasively assessed bone biopsies: comparison of high-resolution computed tomography and histologic sections. Bone 18:215–220CrossRefPubMed Mueller R, Hahn M, Vogel M, Delling G, Ruegsegger P (1996) Morphometric analysis of non-invasively assessed bone biopsies: comparison of high-resolution computed tomography and histologic sections. Bone 18:215–220CrossRefPubMed
7.
go back to reference Ito M, Nishida A, Nakamura T, Uetani M, Hayashi K (2002) Differences of three-dimensional trabecular microstructure in osteopenic rat models caused by ovariectomy and neurectomy. Bone 30:594–598CrossRefPubMed Ito M, Nishida A, Nakamura T, Uetani M, Hayashi K (2002) Differences of three-dimensional trabecular microstructure in osteopenic rat models caused by ovariectomy and neurectomy. Bone 30:594–598CrossRefPubMed
8.
go back to reference Ito M, Nakamura T, Matsumoto T, Tsurusaki K, Hayashi K (1998) Analysis of trabecular microarchitecture of human iliac bone using microcomputed tomography in patients with hip arthrosis with or without vertebral fracture. Bone 23:163–169CrossRef Ito M, Nakamura T, Matsumoto T, Tsurusaki K, Hayashi K (1998) Analysis of trabecular microarchitecture of human iliac bone using microcomputed tomography in patients with hip arthrosis with or without vertebral fracture. Bone 23:163–169CrossRef
9.
go back to reference Hildebrand T, Ruegsegger P (1997) A new method for the model-independent assessment of thickness in three-dimensional images. J Microsc 185:67–75CrossRef Hildebrand T, Ruegsegger P (1997) A new method for the model-independent assessment of thickness in three-dimensional images. J Microsc 185:67–75CrossRef
10.
go back to reference Laib A, Hildebrand T, Hauselmann HJ, Ruegsegger P (1997) Ridge number density: a new parameter for in vivo bone structure analysis. Bone 21:541–546CrossRefPubMed Laib A, Hildebrand T, Hauselmann HJ, Ruegsegger P (1997) Ridge number density: a new parameter for in vivo bone structure analysis. Bone 21:541–546CrossRefPubMed
11.
go back to reference Hildebrand T, Ruegsegger P (1997) Quantification of bone microarchitecture with the structure model index. Comput Methods Biomech Biomed Engin 1:15–23 Hildebrand T, Ruegsegger P (1997) Quantification of bone microarchitecture with the structure model index. Comput Methods Biomech Biomed Engin 1:15–23
12.
go back to reference Ulrich D, van Rietbergen B, Laib A, Ruegsegger P (1999) The ability of three-dimensional structural indices to reflect mechanical aspects of trabecular bone. Bone 25:55–60CrossRefPubMed Ulrich D, van Rietbergen B, Laib A, Ruegsegger P (1999) The ability of three-dimensional structural indices to reflect mechanical aspects of trabecular bone. Bone 25:55–60CrossRefPubMed
13.
go back to reference Boyce RW, Ebert DC, Youngs TA, Paddock CL, Mosekilde L, Stevens ML, Gundersen HJ (1995) Unbiased estimation of vertebral trabecular connectivity in calcium-restricted ovariectomized minipigs. Bone 16:637–642CrossRef Boyce RW, Ebert DC, Youngs TA, Paddock CL, Mosekilde L, Stevens ML, Gundersen HJ (1995) Unbiased estimation of vertebral trabecular connectivity in calcium-restricted ovariectomized minipigs. Bone 16:637–642CrossRef
14.
go back to reference Odgaard A, Gundersen HJ (1993) Quantification of connectivity in cancellous bone, with special emphasis on 3-D reconstructions. Bone 14:173–182PubMed Odgaard A, Gundersen HJ (1993) Quantification of connectivity in cancellous bone, with special emphasis on 3-D reconstructions. Bone 14:173–182PubMed
15.
go back to reference van Rietbergen B, Weinans H, Huiskes R, Odgaard A (1995) A new method to determine trabecular bone elastic properties and loading using micromechanical finite-element models. J Biomech 28:69–81PubMed van Rietbergen B, Weinans H, Huiskes R, Odgaard A (1995) A new method to determine trabecular bone elastic properties and loading using micromechanical finite-element models. J Biomech 28:69–81PubMed
16.
go back to reference van Rietbergen B, Huiskes R, Weinans H, Odgaard A, Kabel J (1995) The role of trabecular architecture in the anisotropic mechanical properties of bone. In: Odgaard A, Weinans H (eds) Bone structure and remodeling, World Scientific, Singapore, pp 137–145 van Rietbergen B, Huiskes R, Weinans H, Odgaard A, Kabel J (1995) The role of trabecular architecture in the anisotropic mechanical properties of bone. In: Odgaard A, Weinans H (eds) Bone structure and remodeling, World Scientific, Singapore, pp 137–145
17.
go back to reference van Rietbergen B, Odgaard A, Kabel J, Huiskes R (1996) Direct mechanics assessment of elastic symmetries and properties of trabecular bone architecture. J Biomech 29:1653–1657CrossRef van Rietbergen B, Odgaard A, Kabel J, Huiskes R (1996) Direct mechanics assessment of elastic symmetries and properties of trabecular bone architecture. J Biomech 29:1653–1657CrossRef
18.
go back to reference Ito M, Nishida A, Nakamura T, Uetani M, Hayashi K (2002) Differences of three-dimensional trabecular microstructure in osteopenic rat models caused by ovariectomy and neurectomy. Bone 30:594–598CrossRefPubMed Ito M, Nishida A, Nakamura T, Uetani M, Hayashi K (2002) Differences of three-dimensional trabecular microstructure in osteopenic rat models caused by ovariectomy and neurectomy. Bone 30:594–598CrossRefPubMed
19.
go back to reference Boyce RW, Paddock CL, Gleaso JR, Sletsema WK, Eriksen EF (1995) The effects of risedronate on canine cancellous bone remodeling: three-dimensional kinetic reconstruction of the remodeling site. J Bone Miner Res 10:211–221PubMed Boyce RW, Paddock CL, Gleaso JR, Sletsema WK, Eriksen EF (1995) The effects of risedronate on canine cancellous bone remodeling: three-dimensional kinetic reconstruction of the remodeling site. J Bone Miner Res 10:211–221PubMed
20.
21.
go back to reference Roschger P, Rinnerthaler S, Yates J, Rodan GA, Fratzl P, Klaushofer K (2001) Alendronate increases degree and uniformity of mineralization in cancellous bone and decreases the porosity in cortical bone of osteoporotic women. Bone 29:185–191CrossRef Roschger P, Rinnerthaler S, Yates J, Rodan GA, Fratzl P, Klaushofer K (2001) Alendronate increases degree and uniformity of mineralization in cancellous bone and decreases the porosity in cortical bone of osteoporotic women. Bone 29:185–191CrossRef
Metadata
Title
Effects of risedronate on trabecular microstructure and biomechanical properties in ovariectomized rat tibia
Authors
Masako Ito
Akifumi Nishida
Kiyoshi Aoyagi
Masataka Uetani
Kuniaki Hayashi
Masahiro Kawase
Publication date
01-09-2005
Publisher
Springer-Verlag
Published in
Osteoporosis International / Issue 9/2005
Print ISSN: 0937-941X
Electronic ISSN: 1433-2965
DOI
https://doi.org/10.1007/s00198-004-1802-3

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