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Erschienen in: Calcified Tissue International 6/2010

01.06.2010

Age-Related Changes in Bone Structure and Strength in Female and Male BALB/c Mice

verfasst von: Mark D. Willinghamm, Michael D. Brodt, Kristen L. Lee, Abby L. Stephens, Jiaxin Ye, Matthew J. Silva

Erschienen in: Calcified Tissue International | Ausgabe 6/2010

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Abstract

Mice may be useful for studies of skeletal aging, but there are limited data on changes in bone structure and strength over their life span. We obtained bones from female and male BALB/c mice at ages 2, 4, 7, 12, and 20 months and evaluated their structural, densitometric, and mechanical properties. MicroCT of the mid-diaphysis of the femur and radius indicated that during skeletal growth (2–7 months) bone cross-sectional size (area, moment of inertia) increased rapidly; during aging (7–20 months) cortical area was maintained, while moment of inertia continued to increase. Bones from females were smaller than those from males at young ages but not at later ages. Changes in whole-bone stiffness and strength reflected the changes in bone size, with a rapid increase from 2 to 7 months, followed by little or no change. In contrast, energy-to-fracture declined with aging. Cortical tissue mineral density increased during growth and was maintained with aging. MicroCT of trabecular bone revealed age-related changes that were site-dependent. The proximal tibia showed a clear pattern of age-related decline in trabecular BV/TV, with progressive decreases after 4 months in both sexes; lumbar vertebra L5 had more modest age-related declines; in contrast, caudal vertebra Ca7 had increasing BV/TV with aging. Overall, we found no evidence that females had more pronounced age-related deterioration than males. We conclude that bones from aging female and male BALB/c mice exhibit many of the changes seen in humans and are therefore a clinically relevant model for studies of skeletal aging.
Literatur
1.
Zurück zum Zitat Ahlborg HG, Johnell O, Turner CH, Rannevik G, Karlsson MK (2003) Bone loss and bone size after menopause. N Engl J Med 349:327–334CrossRefPubMed Ahlborg HG, Johnell O, Turner CH, Rannevik G, Karlsson MK (2003) Bone loss and bone size after menopause. N Engl J Med 349:327–334CrossRefPubMed
2.
Zurück zum Zitat Bouxsein ML, Myburgh KH, van der Meulen MC, Lindenberger E, Marcus R (1994) Age-related differences in cross-sectional geometry of the forearm bones in healthy women. Calcif Tissue Int 54:113–118CrossRefPubMed Bouxsein ML, Myburgh KH, van der Meulen MC, Lindenberger E, Marcus R (1994) Age-related differences in cross-sectional geometry of the forearm bones in healthy women. Calcif Tissue Int 54:113–118CrossRefPubMed
3.
Zurück zum Zitat Martin RB, Atkinson PJ (1977) Age and sex-related changes in the structure and strength of the human femoral shaft. J Biomech 10:223–231CrossRefPubMed Martin RB, Atkinson PJ (1977) Age and sex-related changes in the structure and strength of the human femoral shaft. J Biomech 10:223–231CrossRefPubMed
4.
Zurück zum Zitat Ruff CB, Hayes WC (1988) Sex differences in age-related remodeling of the femur and tibia. J Orthop Res 6:886–896CrossRefPubMed Ruff CB, Hayes WC (1988) Sex differences in age-related remodeling of the femur and tibia. J Orthop Res 6:886–896CrossRefPubMed
5.
Zurück zum Zitat Szulc P, Seeman E, Duboeuf F, Sornay-Rendu E, Delmas PD (2006) Bone fragility: failure of periosteal apposition to compensate for increased endocortical resorption in postmenopausal women. J Bone Miner Res 21:1856–1863CrossRefPubMed Szulc P, Seeman E, Duboeuf F, Sornay-Rendu E, Delmas PD (2006) Bone fragility: failure of periosteal apposition to compensate for increased endocortical resorption in postmenopausal women. J Bone Miner Res 21:1856–1863CrossRefPubMed
6.
Zurück zum Zitat Riggs BL, Melton LJ, Robb RA, Camp JJ, Atkinson EJ, Peterson JM, Rouleau PA, McCollough CH, Bouxsein ML, Khosla S (2004) Population-based study of age and sex differences in bone volumetric density, size, geometry, and structure at different skeletal sites. J Bone Miner Res 19:1945–1954CrossRefPubMed Riggs BL, Melton LJ, Robb RA, Camp JJ, Atkinson EJ, Peterson JM, Rouleau PA, McCollough CH, Bouxsein ML, Khosla S (2004) Population-based study of age and sex differences in bone volumetric density, size, geometry, and structure at different skeletal sites. J Bone Miner Res 19:1945–1954CrossRefPubMed
7.
Zurück zum Zitat Martin B (1995) Mathematical model for repair of fatigue damage and stress fracture in osteonal bone. J Orthop Res 13:309–316CrossRefPubMed Martin B (1995) Mathematical model for repair of fatigue damage and stress fracture in osteonal bone. J Orthop Res 13:309–316CrossRefPubMed
8.
Zurück zum Zitat Burstein AH, Reilly DT, Martens M (1976) Aging of bone tissue: mechanical properties. J Bone Joint Surg Am 58:82–86PubMed Burstein AH, Reilly DT, Martens M (1976) Aging of bone tissue: mechanical properties. J Bone Joint Surg Am 58:82–86PubMed
9.
Zurück zum Zitat McCalden RW, McGeough JA, Barker MB, Court-Brown CM (1993) Age-related changes in the tensile properties of cortical bone. The relative importance of changes in porosity, mineralization, and microstructure. J Bone Joint Surg Am 75:1193–1205PubMed McCalden RW, McGeough JA, Barker MB, Court-Brown CM (1993) Age-related changes in the tensile properties of cortical bone. The relative importance of changes in porosity, mineralization, and microstructure. J Bone Joint Surg Am 75:1193–1205PubMed
10.
Zurück zum Zitat Wang X, Shen X, Li X, Agrawal CM (2002) Age-related changes in the collagen network and toughness of bone. Bone 31:1–7CrossRefPubMed Wang X, Shen X, Li X, Agrawal CM (2002) Age-related changes in the collagen network and toughness of bone. Bone 31:1–7CrossRefPubMed
11.
Zurück zum Zitat Zioupos P, Currey JD (1998) Changes in the stiffness, strength, and toughness of human cortical bone with age. Bone 22:57–66CrossRefPubMed Zioupos P, Currey JD (1998) Changes in the stiffness, strength, and toughness of human cortical bone with age. Bone 22:57–66CrossRefPubMed
12.
Zurück zum Zitat McCalden RW, McGeough JA, Court-Brown CM (1997) Age-related changes in the compressive strength of cancellous bone. The relative importance of changes in density and trabecular architecture. J Bone Joint Surg Am 79:421–427PubMed McCalden RW, McGeough JA, Court-Brown CM (1997) Age-related changes in the compressive strength of cancellous bone. The relative importance of changes in density and trabecular architecture. J Bone Joint Surg Am 79:421–427PubMed
13.
Zurück zum Zitat Mosekilde L, Mosekilde L, Danielson CC (1987) Biomechanical competence of vertebral trabecular bone in relation to ash density and age in normal individuals. Bone 8:79–85CrossRefPubMed Mosekilde L, Mosekilde L, Danielson CC (1987) Biomechanical competence of vertebral trabecular bone in relation to ash density and age in normal individuals. Bone 8:79–85CrossRefPubMed
14.
Zurück zum Zitat Courtney AC, Wachtel EF, Myers ER, Hayes WC (1995) Age-related reductions in the strength of the femur tested in a fall-loading configuration. J Bone Jt Surg Am 77:387–395 Courtney AC, Wachtel EF, Myers ER, Hayes WC (1995) Age-related reductions in the strength of the femur tested in a fall-loading configuration. J Bone Jt Surg Am 77:387–395
15.
Zurück zum Zitat Ebbesen EN, Thomsen JS, Beck-Nielsen H, Nepper-Rasmussen HJ, Mosekilde L (1999) Age- and gender-related differences in vertebral bone mass, density, and strength. J Bone Miner Res 14:1394–1403CrossRefPubMed Ebbesen EN, Thomsen JS, Beck-Nielsen H, Nepper-Rasmussen HJ, Mosekilde L (1999) Age- and gender-related differences in vertebral bone mass, density, and strength. J Bone Miner Res 14:1394–1403CrossRefPubMed
16.
Zurück zum Zitat Lochmuller EM, Matsuura M, Bauer J, Hitzl W, Link TM, Muller R, Eckstein F (2008) Site-specific deterioration of trabecular bone architecture in men and women with advancing age. J Bone Miner Res 23:1964–1973CrossRefPubMed Lochmuller EM, Matsuura M, Bauer J, Hitzl W, Link TM, Muller R, Eckstein F (2008) Site-specific deterioration of trabecular bone architecture in men and women with advancing age. J Bone Miner Res 23:1964–1973CrossRefPubMed
18.
Zurück zum Zitat Flurkey K, Currer JM, Harrison DE (2007) Mouse models in aging research. In: Fox JG, Barthold SW, Davisson MT et al (eds) The mouse in biomedical research, vol 3, 2nd edn. Academic Press, San Diego, pp 637–672 Flurkey K, Currer JM, Harrison DE (2007) Mouse models in aging research. In: Fox JG, Barthold SW, Davisson MT et al (eds) The mouse in biomedical research, vol 3, 2nd edn. Academic Press, San Diego, pp 637–672
19.
Zurück zum Zitat Beamer WG, Donahue LR, Rosen CJ, Baylink DJ (1996) Genetic variability in adult bone density among inbred strains of mice. Bone 18:397–403CrossRefPubMed Beamer WG, Donahue LR, Rosen CJ, Baylink DJ (1996) Genetic variability in adult bone density among inbred strains of mice. Bone 18:397–403CrossRefPubMed
20.
Zurück zum Zitat Brodt MD, Ellis CB, Silva MJ (1999) Growing C57Bl/6 mice increase whole bone mechanical properties by increasing geometric and material properties. J Bone Miner Res 14:2159–2166CrossRefPubMed Brodt MD, Ellis CB, Silva MJ (1999) Growing C57Bl/6 mice increase whole bone mechanical properties by increasing geometric and material properties. J Bone Miner Res 14:2159–2166CrossRefPubMed
21.
Zurück zum Zitat Buie HR, Moore CP, Boyd SK (2008) Postpubertal architectural developmental patterns differ between the L3 vertebra and proximal tibia in three inbred strains of mice. J Bone Miner Res 23:2048–2059CrossRefPubMed Buie HR, Moore CP, Boyd SK (2008) Postpubertal architectural developmental patterns differ between the L3 vertebra and proximal tibia in three inbred strains of mice. J Bone Miner Res 23:2048–2059CrossRefPubMed
22.
Zurück zum Zitat Ferguson VL, Ayers RA, Bateman TA, Simske SJ (2003) Bone development and age-related bone loss in male C57BL/6J mice. Bone 33:387–398CrossRefPubMed Ferguson VL, Ayers RA, Bateman TA, Simske SJ (2003) Bone development and age-related bone loss in male C57BL/6J mice. Bone 33:387–398CrossRefPubMed
23.
Zurück zum Zitat Glatt V, Canalis E, Stadmeyer L, Bouxsein ML (2007) Age-related changes in trabecular architecture differ in female and male C57BL/6J mice. J Bone Miner Res 22:1197–1207CrossRefPubMed Glatt V, Canalis E, Stadmeyer L, Bouxsein ML (2007) Age-related changes in trabecular architecture differ in female and male C57BL/6J mice. J Bone Miner Res 22:1197–1207CrossRefPubMed
24.
Zurück zum Zitat Silva MJ, Brodt MB, Ettner SL (2002) Long bones from the senescence accelerated mouse SAMP6 have increased size but reduced whole-bone strength and resistance to fracture. J Bone Miner Res 17:1597–1603CrossRefPubMed Silva MJ, Brodt MB, Ettner SL (2002) Long bones from the senescence accelerated mouse SAMP6 have increased size but reduced whole-bone strength and resistance to fracture. J Bone Miner Res 17:1597–1603CrossRefPubMed
25.
Zurück zum Zitat Schriefer JL, Robling AG, Warden SJ, Fournier AJ, Mason JJ, Turner CH (2005) A comparison of mechanical properties derived from multiple skeletal sites in mice. J Biomech 38:467–475CrossRefPubMed Schriefer JL, Robling AG, Warden SJ, Fournier AJ, Mason JJ, Turner CH (2005) A comparison of mechanical properties derived from multiple skeletal sites in mice. J Biomech 38:467–475CrossRefPubMed
26.
Zurück zum Zitat Tommasini SM, Morgan TG, van der Meulen M, Jepsen KJ (2005) Genetic variation in structure–function relationships for the inbred mouse lumbar vertebral body. J Bone Miner Res 20:817–827CrossRefPubMed Tommasini SM, Morgan TG, van der Meulen M, Jepsen KJ (2005) Genetic variation in structure–function relationships for the inbred mouse lumbar vertebral body. J Bone Miner Res 20:817–827CrossRefPubMed
27.
Zurück zum Zitat Price C, Herman BC, Lufkin T, Goldman HM, Jepsen KJ (2005) Genetic variation in bone growth patterns defines adult mouse bone fragility. J Bone Miner Res 20:1983–1991CrossRefPubMed Price C, Herman BC, Lufkin T, Goldman HM, Jepsen KJ (2005) Genetic variation in bone growth patterns defines adult mouse bone fragility. J Bone Miner Res 20:1983–1991CrossRefPubMed
28.
Zurück zum Zitat Halloran BP, Ferguson VL, Simske SJ, Burghardt A, Venton LL, Majumdar S (2002) Changes in bone structure and mass with advancing age in the male C57BL/6J mouse. J Bone Miner Res 17:1044–1050CrossRefPubMed Halloran BP, Ferguson VL, Simske SJ, Burghardt A, Venton LL, Majumdar S (2002) Changes in bone structure and mass with advancing age in the male C57BL/6J mouse. J Bone Miner Res 17:1044–1050CrossRefPubMed
29.
Zurück zum Zitat Silva MJ, Brodt MD, Wopenka B, Thomopoulos S, Williams D, Wassen MH, Ko M, Kusano N, Bank RA (2006) Decreased collagen organization and content are associated with reduced strength of demineralized and intact bone in the SAMP6 mouse. J Bone Miner Res 21:78–88CrossRefPubMed Silva MJ, Brodt MD, Wopenka B, Thomopoulos S, Williams D, Wassen MH, Ko M, Kusano N, Bank RA (2006) Decreased collagen organization and content are associated with reduced strength of demineralized and intact bone in the SAMP6 mouse. J Bone Miner Res 21:78–88CrossRefPubMed
30.
Zurück zum Zitat Bergman RJ, Gazit D, Kahn AJ, Gruber H, McDougall S, Hahn TJ (1996) Age-related changes in osteogenic stem cells in mice. J Bone Miner Res 11:568–577CrossRefPubMed Bergman RJ, Gazit D, Kahn AJ, Gruber H, McDougall S, Hahn TJ (1996) Age-related changes in osteogenic stem cells in mice. J Bone Miner Res 11:568–577CrossRefPubMed
31.
Zurück zum Zitat Silva MJ, Brodt MD, Uthgenannt BA (2004) Morphological and mechanical properties of vertebrae in the SAMP6 mouse model of senile osteoporosis. Bone 35:425–431CrossRefPubMed Silva MJ, Brodt MD, Uthgenannt BA (2004) Morphological and mechanical properties of vertebrae in the SAMP6 mouse model of senile osteoporosis. Bone 35:425–431CrossRefPubMed
32.
Zurück zum Zitat Clarke BL, Ebeling PR, Jones JD, Wahner HW, O’Fallon WM, Riggs BL, Fitzpatrick LA (1996) Changes in quantitative bone histomorphometry in aging healthy men. J Clin Endocrinol Metab 81:2264–2270CrossRefPubMed Clarke BL, Ebeling PR, Jones JD, Wahner HW, O’Fallon WM, Riggs BL, Fitzpatrick LA (1996) Changes in quantitative bone histomorphometry in aging healthy men. J Clin Endocrinol Metab 81:2264–2270CrossRefPubMed
33.
Zurück zum Zitat Currey JD, Brear K, Zioupos P (1996) The effects of ageing and changes in mineral content in degrading toughness of human femora. J Biomech 29:257–260CrossRefPubMed Currey JD, Brear K, Zioupos P (1996) The effects of ageing and changes in mineral content in degrading toughness of human femora. J Biomech 29:257–260CrossRefPubMed
34.
Zurück zum Zitat Whittingham DG, Wood MJ (1983) Reproductive physiology. In: Foster HL, Small JD, Fox JG (eds) The mouse in biomedical research, vol 3, 1st edn. Academic Press, San Diego, pp 137–164 Whittingham DG, Wood MJ (1983) Reproductive physiology. In: Foster HL, Small JD, Fox JG (eds) The mouse in biomedical research, vol 3, 1st edn. Academic Press, San Diego, pp 137–164
Metadaten
Titel
Age-Related Changes in Bone Structure and Strength in Female and Male BALB/c Mice
verfasst von
Mark D. Willinghamm
Michael D. Brodt
Kristen L. Lee
Abby L. Stephens
Jiaxin Ye
Matthew J. Silva
Publikationsdatum
01.06.2010
Verlag
Springer-Verlag
Erschienen in
Calcified Tissue International / Ausgabe 6/2010
Print ISSN: 0171-967X
Elektronische ISSN: 1432-0827
DOI
https://doi.org/10.1007/s00223-010-9359-y

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