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Published in: Arthritis Research & Therapy 1/2018

Open Access 01-12-2018 | Research article

Osteoporosis of the vertebra and osteochondral remodeling of the endplate causes intervertebral disc degeneration in ovariectomized mice

Authors: Zhi-feng Xiao, Jian-bo He, Guo-yi Su, Mei-hui Chen, Yu Hou, Shu-dong Chen, Ding-kun Lin

Published in: Arthritis Research & Therapy | Issue 1/2018

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Abstract

Background

Studies on the relationship between osteoporosis and intervertebral disc degeneration (IVDD) are inconsistent. Therefore, we assessed whether IVDD is affected by vertebral osteoporosis in ovariectomized mice and investigated the underlying pathogenesis of IVDD related to osteoporosis.

Methods

Thirty healthy female C57BL/6 J mice aged 8 weeks were randomly divided into two groups: a control group (sham operation, n = 15) and an ovariectomy group (OVX; bilateral ovariectomy, n = 15). At 12 weeks after surgery, the bone quantity and microstructure in the lumbar vertebra and endplate as well as the volume of the L4/5 disc space were evaluated by microcomputed tomography (micro-CT). The occurrence and characteristic alterations of IVDD were identified via histopathological staining. The osteoclasts were detected using tartrate-resistant acid phosphatase (TRAP) staining. Type II collagen (Col II), osterix (OSX), osteopontin (OPN), and vascular endothelial growth factor (VEGF) expression in the intervertebral disc were detected by immunohistochemical analysis.

Results

OVX significantly increased the body weight and decreased the uterus weight. Micro-CT analysis showed that osteoporosis of the vertebra and osteochondral remodeling of the endplate were accompanied by an increase in the endplate porosity and a decrease in the disc volume in the OVX group. Likewise, histological evaluation revealed that IVDD occurred at 12 weeks after ovariectomy, with features of endochondral ossification of the endplate, loose and broken annulus fibrosus, and degeneration of nucleus pulposus. TRAP staining showed that numerous active osteoclasts appeared in the subchondral bone and cartilaginous endplate of OVX mice, whereas osteoclasts were rarely detected in control mice. Immunohistochemical analysis demonstrated that the expression of osterix was significantly increased, notably in the endplate of OVX mice. In addition, Col II was decreased in the ossification endplate and the degenerative annulus fibrosus, where OPN and VEGF expressions were elevated in OVX mice.

Conclusions

OVX induced vertebral osteoporosis and osteochondral remodeling of the cartilaginous endplate contributing to the angiogenesis and an increase in porosity of the bone-cartilage surface, and also affected the matrix metabolism which consequently had detrimental effects on the intervertebral disc. Our study suggests that preserving the structural integrity and the function of the adjacent structures, including the vertebrae and endplates, may protect the disc against degeneration.
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Literature
1.
go back to reference Luoma K, Vehmas T, Kerttula L, Grönblad M, Rinne E. Chronic low back pain in relation to modic changes, bony endplate lesions, and disc degeneration in a prospective MRI study. Eur Spine J. 2016;25(9):2873–81.CrossRefPubMed Luoma K, Vehmas T, Kerttula L, Grönblad M, Rinne E. Chronic low back pain in relation to modic changes, bony endplate lesions, and disc degeneration in a prospective MRI study. Eur Spine J. 2016;25(9):2873–81.CrossRefPubMed
3.
go back to reference Wenig CM, Schmidt CO, Kohlmann T, Schweikert B. Costs of back pain in Germany. Eur J Pain. 2009;13(3):280–6.CrossRefPubMed Wenig CM, Schmidt CO, Kohlmann T, Schweikert B. Costs of back pain in Germany. Eur J Pain. 2009;13(3):280–6.CrossRefPubMed
4.
go back to reference Paesold G, Nerlich AG, Boos N. Biological treatment strategies for disc degeneration: potentials and shortcomings. Eur Spine J. 2007;16(4):447–68.CrossRefPubMed Paesold G, Nerlich AG, Boos N. Biological treatment strategies for disc degeneration: potentials and shortcomings. Eur Spine J. 2007;16(4):447–68.CrossRefPubMed
5.
go back to reference Humzah MD, Soames RW. Human intervertebral disc: structure and function. Anat Rec. 1988;220(4):337–56.CrossRefPubMed Humzah MD, Soames RW. Human intervertebral disc: structure and function. Anat Rec. 1988;220(4):337–56.CrossRefPubMed
6.
go back to reference Dolan P, Luo J, Pollintine P, Landham PR, Stefanakis M, Adams MA. Intervertebral disc decompression following endplate damage: implications for disc degeneration depend on spinal level and age. Spine (Phila Pa 1976). 2013;38(17):1473–81.CrossRef Dolan P, Luo J, Pollintine P, Landham PR, Stefanakis M, Adams MA. Intervertebral disc decompression following endplate damage: implications for disc degeneration depend on spinal level and age. Spine (Phila Pa 1976). 2013;38(17):1473–81.CrossRef
7.
go back to reference Vergroesen PPA, Kingma I, Emanuel KS, Hoogendoorn RJW, Welting TJ, van Royen BJ, van Dieen JH, Smit TH. Mechanics and biology in intervertebral disc degeneration: a vicious circle. Osteoarthr Cartilage. 2015;23(7):1057–70.CrossRef Vergroesen PPA, Kingma I, Emanuel KS, Hoogendoorn RJW, Welting TJ, van Royen BJ, van Dieen JH, Smit TH. Mechanics and biology in intervertebral disc degeneration: a vicious circle. Osteoarthr Cartilage. 2015;23(7):1057–70.CrossRef
8.
go back to reference Nguyen C, Poiraudeau S, Rannou F. From Modic 1 vertebral-endplate subchondral bone signal changes detected by MRI to the concept of ‘active discopathy’. Ann Rheum Dis. 2015;74(8):1488–94.CrossRefPubMed Nguyen C, Poiraudeau S, Rannou F. From Modic 1 vertebral-endplate subchondral bone signal changes detected by MRI to the concept of ‘active discopathy’. Ann Rheum Dis. 2015;74(8):1488–94.CrossRefPubMed
9.
go back to reference Karsdal MA, Bay-Jensen AC, Lories RJ, Abramson S, Spector T, Pastoureau P, Christiansen C, Attur M, Henriksen K, Goldring SR, et al. The coupling of bone and cartilage turnover in osteoarthritis: opportunities for bone antiresorptives and anabolics as potential treatments? Ann Rheum Dis. 2014;73(2):336–48.CrossRefPubMed Karsdal MA, Bay-Jensen AC, Lories RJ, Abramson S, Spector T, Pastoureau P, Christiansen C, Attur M, Henriksen K, Goldring SR, et al. The coupling of bone and cartilage turnover in osteoarthritis: opportunities for bone antiresorptives and anabolics as potential treatments? Ann Rheum Dis. 2014;73(2):336–48.CrossRefPubMed
10.
go back to reference Yuan XL, Meng HY, Wang YC, Peng J, Guo QY, Wang AY, Lu SB. Bone-cartilage interface crosstalk in osteoarthritis: potential pathways and future therapeutic strategies. Osteoarthr Cartil. 2014;22(8):1077–89.CrossRef Yuan XL, Meng HY, Wang YC, Peng J, Guo QY, Wang AY, Lu SB. Bone-cartilage interface crosstalk in osteoarthritis: potential pathways and future therapeutic strategies. Osteoarthr Cartil. 2014;22(8):1077–89.CrossRef
11.
go back to reference Funck-Brentano T, Cohen-Solal M. Crosstalk between cartilage and bone: when bone cytokines matter. Cytokine Growth Factor Rev. 2011;22(2):91–7.CrossRefPubMed Funck-Brentano T, Cohen-Solal M. Crosstalk between cartilage and bone: when bone cytokines matter. Cytokine Growth Factor Rev. 2011;22(2):91–7.CrossRefPubMed
12.
go back to reference Bellido M, Lugo L, Roman-Blas JA, Castaneda S, Caeiro JR, Dapia S, Calvo E, Largo R, Herrero-Beaumont G. Subchondral bone microstructural damage by increased remodelling aggravates experimental osteoarthritis preceded by osteoporosis. Arthritis Res Ther. 2010;12(4):R152.CrossRefPubMedPubMedCentral Bellido M, Lugo L, Roman-Blas JA, Castaneda S, Caeiro JR, Dapia S, Calvo E, Largo R, Herrero-Beaumont G. Subchondral bone microstructural damage by increased remodelling aggravates experimental osteoarthritis preceded by osteoporosis. Arthritis Res Ther. 2010;12(4):R152.CrossRefPubMedPubMedCentral
13.
go back to reference Shapiro IM, Vresilovic EJ, Risbud MV. Is the spinal motion segment a diarthrodial polyaxial joint: what a nice nucleus like you doing in a joint like this? Bone. 2012;50(3):771–6.CrossRefPubMed Shapiro IM, Vresilovic EJ, Risbud MV. Is the spinal motion segment a diarthrodial polyaxial joint: what a nice nucleus like you doing in a joint like this? Bone. 2012;50(3):771–6.CrossRefPubMed
14.
go back to reference Chen S, Fu P, Wu H, Pei M. Meniscus, articular cartilage and nucleus pulposus: a comparative review of cartilage-like tissues in anatomy, development and function. Cell Tissue Res. 2017;370(1):53–70.CrossRefPubMedPubMedCentral Chen S, Fu P, Wu H, Pei M. Meniscus, articular cartilage and nucleus pulposus: a comparative review of cartilage-like tissues in anatomy, development and function. Cell Tissue Res. 2017;370(1):53–70.CrossRefPubMedPubMedCentral
15.
go back to reference Kang R, Li H, Ringgaard S, Rickers K, Sun H, Chen M, Xie L, Bunger C. Interference in the endplate nutritional pathway causes intervertebral disc degeneration in an immature porcine model. Int Orthop. 2014;38(5):1011–7.CrossRefPubMedPubMedCentral Kang R, Li H, Ringgaard S, Rickers K, Sun H, Chen M, Xie L, Bunger C. Interference in the endplate nutritional pathway causes intervertebral disc degeneration in an immature porcine model. Int Orthop. 2014;38(5):1011–7.CrossRefPubMedPubMedCentral
16.
go back to reference Moore RJ. The vertebral endplate: disc degeneration. Eur Spine J. 2006;153:S333–7.CrossRef Moore RJ. The vertebral endplate: disc degeneration. Eur Spine J. 2006;153:S333–7.CrossRef
17.
go back to reference Tomaszewski KA, Adamek D, Konopka T, Tomaszewska R, Walocha JA. Endplate calcification and cervical intervertebral disc degeneration: the role of endplate marrow contact channel occlusion. Folia Morphol (Warsz). 2015;74(1):84–92.CrossRef Tomaszewski KA, Adamek D, Konopka T, Tomaszewska R, Walocha JA. Endplate calcification and cervical intervertebral disc degeneration: the role of endplate marrow contact channel occlusion. Folia Morphol (Warsz). 2015;74(1):84–92.CrossRef
18.
go back to reference Holm S, Maroudas A, Urban JP, Selstam G, Nachemson A. Nutrition of the intervertebral disc: solute transport and metabolism. Connect Tissue Res. 1981;8(2):101–19.CrossRefPubMed Holm S, Maroudas A, Urban JP, Selstam G, Nachemson A. Nutrition of the intervertebral disc: solute transport and metabolism. Connect Tissue Res. 1981;8(2):101–19.CrossRefPubMed
19.
go back to reference Mattei TA. Osteoporosis delays intervertebral disc degeneration by increasing intradiscal diffusive transport of nutrients through both mechanical and vascular pathophysiological pathways. Med Hypotheses. 2013;80(5):582–6.CrossRefPubMed Mattei TA. Osteoporosis delays intervertebral disc degeneration by increasing intradiscal diffusive transport of nutrients through both mechanical and vascular pathophysiological pathways. Med Hypotheses. 2013;80(5):582–6.CrossRefPubMed
20.
go back to reference Lou C, Chen H, Feng X, Xiang G, Zhu S, Tian N, Jin Y, Fang M, Wang C, Xu H. Menopause is associated with lumbar disc degeneration: a review of 4230 intervertebral discs. Climacteric. 2014;17(6):700–4.CrossRefPubMed Lou C, Chen H, Feng X, Xiang G, Zhu S, Tian N, Jin Y, Fang M, Wang C, Xu H. Menopause is associated with lumbar disc degeneration: a review of 4230 intervertebral discs. Climacteric. 2014;17(6):700–4.CrossRefPubMed
21.
go back to reference Wang YJ, Griffith JF. Effect of menopause on lumbar disk degeneration. Radiology. 2010;257(2):319–20.CrossRef Wang YJ, Griffith JF. Effect of menopause on lumbar disk degeneration. Radiology. 2010;257(2):319–20.CrossRef
22.
go back to reference Wang YJ, Griffith JF. Menopause causes vertebral endplate degeneration and decrease in nutrient diffusion to the intervertebral discs. Med Hypotheses. 2011;77(1):18–20.CrossRefPubMed Wang YJ, Griffith JF. Menopause causes vertebral endplate degeneration and decrease in nutrient diffusion to the intervertebral discs. Med Hypotheses. 2011;77(1):18–20.CrossRefPubMed
23.
go back to reference Calleja-Agius J, Muscat-Baron Y, Brincat MP. Estrogens and the intervertebral disc. Menopause Int. 2009;15(3):127–30.CrossRefPubMed Calleja-Agius J, Muscat-Baron Y, Brincat MP. Estrogens and the intervertebral disc. Menopause Int. 2009;15(3):127–30.CrossRefPubMed
24.
go back to reference Li X, Xue C, Zhao Y, Cheng S, Zhao D, Liang Q, Chen L, Wang Q, Lu S, Shi Q, et al. Deletion of OPG leads to increased neovascularization and expression of inflammatory cytokines in the lumbar intervertebral disc of mice. Spine. 2017;42(1):E8–E14.CrossRefPubMed Li X, Xue C, Zhao Y, Cheng S, Zhao D, Liang Q, Chen L, Wang Q, Lu S, Shi Q, et al. Deletion of OPG leads to increased neovascularization and expression of inflammatory cytokines in the lumbar intervertebral disc of mice. Spine. 2017;42(1):E8–E14.CrossRefPubMed
25.
go back to reference Luo Y, Zhang L, Wang W, Hu Q, Song H, Su Y, Zhang Y. Alendronate retards the progression of lumbar intervertebral disc degeneration in ovariectomized rats. Bone. 2013;55(2):439–48.CrossRefPubMed Luo Y, Zhang L, Wang W, Hu Q, Song H, Su Y, Zhang Y. Alendronate retards the progression of lumbar intervertebral disc degeneration in ovariectomized rats. Bone. 2013;55(2):439–48.CrossRefPubMed
26.
go back to reference Song H, Luo Y, Wang W, Li S, Yang K, Dai M, Shen Y, Zhang Y, Zhang L. Effects of alendronate on lumbar intervertebral disc degeneration with bone loss in ovariectomized rats. Spine J. 2017;17(7):995–1003.CrossRefPubMed Song H, Luo Y, Wang W, Li S, Yang K, Dai M, Shen Y, Zhang Y, Zhang L. Effects of alendronate on lumbar intervertebral disc degeneration with bone loss in ovariectomized rats. Spine J. 2017;17(7):995–1003.CrossRefPubMed
27.
go back to reference Tian FM, Yang K, Wang WY, Luo Y, Li SY, Song HP, Zhang YZ, Shen Y, Zhang L. Calcitonin suppresses intervertebral disk degeneration and preserves lumbar vertebral bone mineral density and bone strength in ovariectomized rats. Osteoporos Int. 2015;26(12):2853–61.CrossRefPubMed Tian FM, Yang K, Wang WY, Luo Y, Li SY, Song HP, Zhang YZ, Shen Y, Zhang L. Calcitonin suppresses intervertebral disk degeneration and preserves lumbar vertebral bone mineral density and bone strength in ovariectomized rats. Osteoporos Int. 2015;26(12):2853–61.CrossRefPubMed
28.
go back to reference Nanjo Y, Morio Y, Nagashima H, Hagino H, Teshima R. Correlation between bone mineral density and intervertebral disk degeneration in pre- and postmenopausal women. J Bone Miner Metab. 2003;21(1):22–7.CrossRefPubMed Nanjo Y, Morio Y, Nagashima H, Hagino H, Teshima R. Correlation between bone mineral density and intervertebral disk degeneration in pre- and postmenopausal women. J Bone Miner Metab. 2003;21(1):22–7.CrossRefPubMed
29.
go back to reference Miyakoshi N, Itoi E, Murai H, Wakabayashi I, Ito H, Minato T. Inverse relation between osteoporosis and spondylosis in postmenopausal women as evaluated by bone mineral density and semiquantitative scoring of spinal degeneration. Spine. 2003;28(5):492–5.PubMed Miyakoshi N, Itoi E, Murai H, Wakabayashi I, Ito H, Minato T. Inverse relation between osteoporosis and spondylosis in postmenopausal women as evaluated by bone mineral density and semiquantitative scoring of spinal degeneration. Spine. 2003;28(5):492–5.PubMed
30.
go back to reference Pye SR, Reid DM, Adams JE, Silman AJ, O'Neill TW. Radiographic features of lumbar disc degeneration and bone mineral density in men and women. Ann Rheum Dis. 2006;65(2):234–8.CrossRefPubMed Pye SR, Reid DM, Adams JE, Silman AJ, O'Neill TW. Radiographic features of lumbar disc degeneration and bone mineral density in men and women. Ann Rheum Dis. 2006;65(2):234–8.CrossRefPubMed
31.
go back to reference Bian Q, Jain A, Xu X, Kebaish K, Crane JL, Zhang Z, Wan M, Ma L, Riley LH, Sponseller PD, et al. Excessive activation of TGFbeta by spinal instability causes vertebral endplate sclerosis. Sci Rep. 2016;6:27093.CrossRefPubMedPubMedCentral Bian Q, Jain A, Xu X, Kebaish K, Crane JL, Zhang Z, Wan M, Ma L, Riley LH, Sponseller PD, et al. Excessive activation of TGFbeta by spinal instability causes vertebral endplate sclerosis. Sci Rep. 2016;6:27093.CrossRefPubMedPubMedCentral
32.
go back to reference Bonucci E, Ballanti P. Osteoporosis-bone remodeling and animal models. Toxicol Pathol. 2014;42(6):957–69.CrossRefPubMed Bonucci E, Ballanti P. Osteoporosis-bone remodeling and animal models. Toxicol Pathol. 2014;42(6):957–69.CrossRefPubMed
33.
go back to reference Martin JT, Gorth DJ, Beattie EE, Harfe BD, Smith LJ, Elliott DM. Needle puncture injury causes acute and long-term mechanical deficiency in a mouse model of intervertebral disc degeneration. J Orthop Res. 2013;31(8):1276–82.CrossRefPubMedPubMedCentral Martin JT, Gorth DJ, Beattie EE, Harfe BD, Smith LJ, Elliott DM. Needle puncture injury causes acute and long-term mechanical deficiency in a mouse model of intervertebral disc degeneration. J Orthop Res. 2013;31(8):1276–82.CrossRefPubMedPubMedCentral
34.
go back to reference Naito Y, Wakabayashi H, Kato S, Nakagawa T, Iino T, Sudo A. Alendronate inhibits hyperalgesia and suppresses neuropeptide markers of pain in a mouse model of osteoporosis. J Orthop Sci. 2017;22(4):771–7.CrossRefPubMed Naito Y, Wakabayashi H, Kato S, Nakagawa T, Iino T, Sudo A. Alendronate inhibits hyperalgesia and suppresses neuropeptide markers of pain in a mouse model of osteoporosis. J Orthop Sci. 2017;22(4):771–7.CrossRefPubMed
35.
go back to reference Laffosse JM, Accadbled F, Molinier F, Bonnevialle N, de Gauzy JS, Swider P. Correlations between effective permeability and marrow contact channels surface of vertebral endplates. J Orthop Res. 2010;28(9):1229–34.CrossRefPubMed Laffosse JM, Accadbled F, Molinier F, Bonnevialle N, de Gauzy JS, Swider P. Correlations between effective permeability and marrow contact channels surface of vertebral endplates. J Orthop Res. 2010;28(9):1229–34.CrossRefPubMed
36.
go back to reference Rodriguez AG, Slichter CK, Acosta FL, Rodriguez-Soto AE, Burghardt AJ, Majumdar S, Lotz JC. Human disc nucleus properties and vertebral endplate permeability. Spine (Phila Pa 1976). 2011;36(7):512–20.CrossRef Rodriguez AG, Slichter CK, Acosta FL, Rodriguez-Soto AE, Burghardt AJ, Majumdar S, Lotz JC. Human disc nucleus properties and vertebral endplate permeability. Spine (Phila Pa 1976). 2011;36(7):512–20.CrossRef
37.
go back to reference Ren H, Liang D, Shen G, Yao Z, Jiang X, Tang J, Cui J, Lin S. Effects of combined ovariectomy with dexamethasone on rat lumbar vertebrae. Menopause. 2016;23(4):441–50.PubMed Ren H, Liang D, Shen G, Yao Z, Jiang X, Tang J, Cui J, Lin S. Effects of combined ovariectomy with dexamethasone on rat lumbar vertebrae. Menopause. 2016;23(4):441–50.PubMed
38.
go back to reference Ding Y, Jiang J, Zhou J, Wu X, Huang Z, Chen J, Zhu Q. The effects of osteoporosis and disc degeneration on vertebral cartilage endplate lesions in rats. Eur Spine J. 2014;23(9):1848–55.CrossRefPubMed Ding Y, Jiang J, Zhou J, Wu X, Huang Z, Chen J, Zhu Q. The effects of osteoporosis and disc degeneration on vertebral cartilage endplate lesions in rats. Eur Spine J. 2014;23(9):1848–55.CrossRefPubMed
39.
go back to reference Dario AB, Ferreira ML, Refshauge KM, Lima TS, Ordonana JR, Ferreira PH. The relationship between obesity, low back pain, and lumbar disc degeneration when genetics and the environment are considered: a systematic review of twin studies. Spine J. 2015;15(5):1106–17.CrossRefPubMed Dario AB, Ferreira ML, Refshauge KM, Lima TS, Ordonana JR, Ferreira PH. The relationship between obesity, low back pain, and lumbar disc degeneration when genetics and the environment are considered: a systematic review of twin studies. Spine J. 2015;15(5):1106–17.CrossRefPubMed
40.
go back to reference Zhen G, Wen C, Jia X, Li Y, Crane JL, Mears SC, Askin FB, Frassica FJ, Chang W, Yao J, et al. Inhibition of TGF-beta signaling in mesenchymal stem cells of subchondral bone attenuates osteoarthritis. Nat Med. 2013;19(6):704.CrossRefPubMedPubMedCentral Zhen G, Wen C, Jia X, Li Y, Crane JL, Mears SC, Askin FB, Frassica FJ, Chang W, Yao J, et al. Inhibition of TGF-beta signaling in mesenchymal stem cells of subchondral bone attenuates osteoarthritis. Nat Med. 2013;19(6):704.CrossRefPubMedPubMedCentral
41.
go back to reference Von Forell GA, Nelson TG, Samartzis D, Bowden AE. Changes in vertebral strain energy correlate with increased presence of Schmorl's nodes in multi-level lumbar disk degeneration. J Biomech Eng-T ASME. 2014;136:0610026.CrossRef Von Forell GA, Nelson TG, Samartzis D, Bowden AE. Changes in vertebral strain energy correlate with increased presence of Schmorl's nodes in multi-level lumbar disk degeneration. J Biomech Eng-T ASME. 2014;136:0610026.CrossRef
42.
go back to reference Yuan W, Che W, Jiang Y, Yuan F, Wang H, Zheng G, Li X, Dong J. Establishment of intervertebral disc degeneration model induced by ischemic sub-endplate in rat tail. Spine J. 2015;15(5):1050–9.CrossRefPubMed Yuan W, Che W, Jiang Y, Yuan F, Wang H, Zheng G, Li X, Dong J. Establishment of intervertebral disc degeneration model induced by ischemic sub-endplate in rat tail. Spine J. 2015;15(5):1050–9.CrossRefPubMed
43.
go back to reference Maatta JH, Kraatari M, Wolber L, Niinimaki J, Wadge S, Karppinen J, Williams FMK. Vertebral endplate change as a feature of intervertebral disc degeneration: a heritability study. Eur Spine J. 2014;23(9):1856–62.CrossRefPubMed Maatta JH, Kraatari M, Wolber L, Niinimaki J, Wadge S, Karppinen J, Williams FMK. Vertebral endplate change as a feature of intervertebral disc degeneration: a heritability study. Eur Spine J. 2014;23(9):1856–62.CrossRefPubMed
44.
go back to reference Deng M, Griffith JF, Zhu X, Poon WS, Ahuja AT, Wang YJ. Effect of ovariectomy on contrast agent diffusion into lumbar intervertebral disc: a dynamic contrast-enhanced MRI study in female rats. Magn Reson Imaging. 2012;30(5):683–8.CrossRefPubMed Deng M, Griffith JF, Zhu X, Poon WS, Ahuja AT, Wang YJ. Effect of ovariectomy on contrast agent diffusion into lumbar intervertebral disc: a dynamic contrast-enhanced MRI study in female rats. Magn Reson Imaging. 2012;30(5):683–8.CrossRefPubMed
45.
go back to reference Hu Z, Zhao F, Fang X, Fan S. Modic changes, possible causes and promotion to lumbar intervertebral disc degeneration. Med Hypotheses. 2009;73(6):930–2.CrossRefPubMed Hu Z, Zhao F, Fang X, Fan S. Modic changes, possible causes and promotion to lumbar intervertebral disc degeneration. Med Hypotheses. 2009;73(6):930–2.CrossRefPubMed
46.
go back to reference Wang L, Cui W, Kalala JP, Van Hoof T, Liu B. Effect of osteoporosis and intervertebral disc degeneration on endplate cartilage injury in rats. Asian Pac J Trop Med. 2014;7(10):796–800.CrossRefPubMed Wang L, Cui W, Kalala JP, Van Hoof T, Liu B. Effect of osteoporosis and intervertebral disc degeneration on endplate cartilage injury in rats. Asian Pac J Trop Med. 2014;7(10):796–800.CrossRefPubMed
47.
go back to reference Homminga J, Aquarius R, Bulsink VE, Jansen CTJ, Verdonschot N. Can vertebral density changes be explained by intervertebral disc degeneration? Med Eng Phys. 2012;34(4):453–8.CrossRefPubMed Homminga J, Aquarius R, Bulsink VE, Jansen CTJ, Verdonschot N. Can vertebral density changes be explained by intervertebral disc degeneration? Med Eng Phys. 2012;34(4):453–8.CrossRefPubMed
48.
go back to reference Roberts S, McCall IW, Menage J, Haddaway MJ, Eisenstein SM. Does the thickness of the vertebral subchondral bone reflect the composition of the intervertebral disc? Eur Spine J. 1997;6(6):385–9.CrossRefPubMedPubMedCentral Roberts S, McCall IW, Menage J, Haddaway MJ, Eisenstein SM. Does the thickness of the vertebral subchondral bone reflect the composition of the intervertebral disc? Eur Spine J. 1997;6(6):385–9.CrossRefPubMedPubMedCentral
49.
go back to reference Kim KW, Ha KY, Park JB, Woo YK, Chung HN, An HS. Expressions of membrane-type I matrix metalloproteinase, Ki-67 protein, and type II collagen by chondrocytes migrating from cartilage endplate into nucleus pulposus in rat intervertebral discs—a cartilage endplate-fracture model using an intervertebral disc organ culture. SPINE. 2005;30(12):1373–8.CrossRefPubMed Kim KW, Ha KY, Park JB, Woo YK, Chung HN, An HS. Expressions of membrane-type I matrix metalloproteinase, Ki-67 protein, and type II collagen by chondrocytes migrating from cartilage endplate into nucleus pulposus in rat intervertebral discs—a cartilage endplate-fracture model using an intervertebral disc organ culture. SPINE. 2005;30(12):1373–8.CrossRefPubMed
50.
go back to reference Lofvall H, Newbould H, Karsdal MA, Dziegiel MH, Richter J, Henriksen K, Thudium CS. Osteoclasts degrade bone and cartilage knee joint compartments through different resorption processes. Arthritis Res Ther. 2018;20(1):67.CrossRefPubMedPubMedCentral Lofvall H, Newbould H, Karsdal MA, Dziegiel MH, Richter J, Henriksen K, Thudium CS. Osteoclasts degrade bone and cartilage knee joint compartments through different resorption processes. Arthritis Res Ther. 2018;20(1):67.CrossRefPubMedPubMedCentral
51.
go back to reference Luo Y, Li SY, Tian FM, Song HP, Zhang YZ, Zhang L. Effects of human parathyroid hormone 1–34 on bone loss and lumbar intervertebral disc degeneration in ovariectomized rats. Int Orthop. 2018;42(5):1183–90.CrossRefPubMed Luo Y, Li SY, Tian FM, Song HP, Zhang YZ, Zhang L. Effects of human parathyroid hormone 1–34 on bone loss and lumbar intervertebral disc degeneration in ovariectomized rats. Int Orthop. 2018;42(5):1183–90.CrossRefPubMed
52.
go back to reference Kwon WK, Moon HJ, Kwon TH, Park YK, Kim JH. Influence of rabbit notochordal cells on symptomatic intervertebral disc degeneration: anti-angiogenic capacity on human endothelial cell proliferation under hypoxia. Osteoarthr Cartil. 2017;25(10):1738–46.CrossRef Kwon WK, Moon HJ, Kwon TH, Park YK, Kim JH. Influence of rabbit notochordal cells on symptomatic intervertebral disc degeneration: anti-angiogenic capacity on human endothelial cell proliferation under hypoxia. Osteoarthr Cartil. 2017;25(10):1738–46.CrossRef
53.
go back to reference Ji B, Zhang Z, Guo W, Ma H, Xu B, Mu W, Amat A, Cao L. Isoliquiritigenin blunts osteoarthritis by inhibition of bone resorption and angiogenesis in subchondral bone. Sci Rep. 2018;8(1):1721.CrossRefPubMedPubMedCentral Ji B, Zhang Z, Guo W, Ma H, Xu B, Mu W, Amat A, Cao L. Isoliquiritigenin blunts osteoarthritis by inhibition of bone resorption and angiogenesis in subchondral bone. Sci Rep. 2018;8(1):1721.CrossRefPubMedPubMedCentral
Metadata
Title
Osteoporosis of the vertebra and osteochondral remodeling of the endplate causes intervertebral disc degeneration in ovariectomized mice
Authors
Zhi-feng Xiao
Jian-bo He
Guo-yi Su
Mei-hui Chen
Yu Hou
Shu-dong Chen
Ding-kun Lin
Publication date
01-12-2018
Publisher
BioMed Central
Published in
Arthritis Research & Therapy / Issue 1/2018
Electronic ISSN: 1478-6362
DOI
https://doi.org/10.1186/s13075-018-1701-1

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