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Erschienen in: Calcified Tissue International 6/2018

08.12.2017 | Original Research

Long-Term Quantitative Evaluation of Muscle and Bone Wasting Induced by Botulinum Toxin in Mice Using Microcomputed Tomography

verfasst von: Hélène Libouban, Claude Guintard, Nicolas Minier, Eric Aguado, Daniel Chappard

Erschienen in: Calcified Tissue International | Ausgabe 6/2018

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Abstract

Muscle and bone masses are highly correlated and muscles impose large loads on bone. Muscle wasting that accompanies bone loss has been poorly investigated. 21 female mice were spread into seven groups. At day 0, 18 mice received Botulinum toxin (BTX) injection in the quadriceps muscle to induce paralysis of the right hind limb; the left contralateral side was used as control. Mice were sacrificed at 7, 14, 21, 28, 56 and 90 days post-injection. A remaining group was sacrificed at day 0. Trabecular bone volume was determined by microcomputed tomography (microCT) at the distal femur and tibia proximal metaphyses on both sides. Limbs were immersed in an HgCl2 solution allowing muscle visualization by microCT. On 2D sections, the cross-sectional areas and form-factors were measured for the quadriceps at mid-thigh and gastrocnemius at mid-leg and these muscles were dissected and weighed. Bone volume decreased in the paralysed side. Bone loss was maximal at 56 days followed by recuperation at 90 days. The cross-sectional areas of gastrocnemius and quadriceps were significantly lower in the paralysed limb from 7 days; the decrease was maximum at 21 days for the gastrocnemius and 28 days for the quadriceps. No difference in form-factors was found between the two limbs. Similar results were obtained with the anatomical method and significant correlations were obtained between the two methods. Quantitative analysis of muscle loss and recovery was possible by microCT after using a metallic contrast agent. Loss of bone secondary to muscle wastage induced by BTX and recovery showed a parallel evolution for bone and muscles.
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Literatur
1.
Zurück zum Zitat Thompson DW (1917) On growth and form. University Press, Cambridge Thompson DW (1917) On growth and form. University Press, Cambridge
2.
Zurück zum Zitat Guadalupe-Grau A, Fuentes T, Guerra B, Calbet JA (2009) Exercise and bone mass in adults. Sports Med 39:439–468CrossRef Guadalupe-Grau A, Fuentes T, Guerra B, Calbet JA (2009) Exercise and bone mass in adults. Sports Med 39:439–468CrossRef
3.
Zurück zum Zitat Dudley-Javoroski S, Shields RK (2008) Muscle and bone plasticity after spinal cord injury: review of adaptations to disuse and to electrical muscle stimulation. J Rehabil Res Dev 45:283–296CrossRef Dudley-Javoroski S, Shields RK (2008) Muscle and bone plasticity after spinal cord injury: review of adaptations to disuse and to electrical muscle stimulation. J Rehabil Res Dev 45:283–296CrossRef
4.
Zurück zum Zitat Verschueren S, Gielen E, O’Neill T, Pye S, Adams J, Ward K, Wu F, Szulc P, Laurent M, Claessens F (2013) Sarcopenia and its relationship with bone mineral density in middle-aged and elderly European men. Osteoporos Int 24:87–98CrossRef Verschueren S, Gielen E, O’Neill T, Pye S, Adams J, Ward K, Wu F, Szulc P, Laurent M, Claessens F (2013) Sarcopenia and its relationship with bone mineral density in middle-aged and elderly European men. Osteoporos Int 24:87–98CrossRef
5.
Zurück zum Zitat Cruz-Jentoft AJ, Baeyens JP, Bauer JM, Boirie Y, Cederholm T, Landi F, Martin FC, Michel J-P, Rolland Y, Schneider SM (2010) Sarcopenia: European consensus on definition and diagnosis Report of the European Working Group on Sarcopenia in Older People. Age Ageing 39:412–423CrossRef Cruz-Jentoft AJ, Baeyens JP, Bauer JM, Boirie Y, Cederholm T, Landi F, Martin FC, Michel J-P, Rolland Y, Schneider SM (2010) Sarcopenia: European consensus on definition and diagnosis Report of the European Working Group on Sarcopenia in Older People. Age Ageing 39:412–423CrossRef
6.
Zurück zum Zitat Chappard D, Baslé MF, Legrand E, Audran M (2008) Trabecular bone microarchitecture: a review. Morphologie 92:162–170CrossRef Chappard D, Baslé MF, Legrand E, Audran M (2008) Trabecular bone microarchitecture: a review. Morphologie 92:162–170CrossRef
7.
Zurück zum Zitat Frost HM (1990) Skeletal structural adaptations to mechanical usage (SATMU): 2. Redefining Wolff’s law: the remodeling problem. Anat Rec 226:414–422CrossRef Frost HM (1990) Skeletal structural adaptations to mechanical usage (SATMU): 2. Redefining Wolff’s law: the remodeling problem. Anat Rec 226:414–422CrossRef
8.
Zurück zum Zitat Wolff J (1892) The law of bone remodeling (Das gesetz der transformation der knochen). Originally published by Verlag von August Hirshwald, Berlin (English translation by Maquet P, Furlong R, published by Springer, Berlin, 1986) Wolff J (1892) The law of bone remodeling (Das gesetz der transformation der knochen). Originally published by Verlag von August Hirshwald, Berlin (English translation by Maquet P, Furlong R, published by Springer, Berlin, 1986)
9.
Zurück zum Zitat Barone R (1986) Anatomie comparée des mammifères domestiques, ostéologie. Vigot, Paris Barone R (1986) Anatomie comparée des mammifères domestiques, ostéologie. Vigot, Paris
10.
Zurück zum Zitat Minaire P, Meunier P, Edouard C, Bernard J, Courpron P, Bourret J (1974) Quantitative histological data on disuse osteoporosis: comparison with biological data. Calcif Tissue Res 17:57–73CrossRef Minaire P, Meunier P, Edouard C, Bernard J, Courpron P, Bourret J (1974) Quantitative histological data on disuse osteoporosis: comparison with biological data. Calcif Tissue Res 17:57–73CrossRef
11.
Zurück zum Zitat Jee WS, Ma Y (1999) Animal models of immobilization osteopenia. Morphologie 83:25–34PubMed Jee WS, Ma Y (1999) Animal models of immobilization osteopenia. Morphologie 83:25–34PubMed
12.
Zurück zum Zitat Jee WS, Wronski TJ, Morey ER, Kimmel DB (1983) Effects of spaceflight on trabecular bone in rats. Am J Physiol 244:R310–R314PubMed Jee WS, Wronski TJ, Morey ER, Kimmel DB (1983) Effects of spaceflight on trabecular bone in rats. Am J Physiol 244:R310–R314PubMed
13.
Zurück zum Zitat Libouban H (2014) Tissu osseux et contraintes mécaniques: immobilisation et microgravité. In: Guillaume B, Audran M, Chappard D (eds) Tissu osseux et biomatériaux en chirurgie dentaire. Quintessence International, Paris, pp 197–208 Libouban H (2014) Tissu osseux et contraintes mécaniques: immobilisation et microgravité. In: Guillaume B, Audran M, Chappard D (eds) Tissu osseux et biomatériaux en chirurgie dentaire. Quintessence International, Paris, pp 197–208
14.
Zurück zum Zitat Chappard D, Chennebault A, Moreau M, Legrand E, Audran M, Baslé MF (2001) Texture analysis of X-ray radiographs is a more reliable descriptor of bone loss than mineral content in a rat model of localized disuse induced by the Clostridium botulinum toxin. Bone 28:72–79CrossRef Chappard D, Chennebault A, Moreau M, Legrand E, Audran M, Baslé MF (2001) Texture analysis of X-ray radiographs is a more reliable descriptor of bone loss than mineral content in a rat model of localized disuse induced by the Clostridium botulinum toxin. Bone 28:72–79CrossRef
15.
Zurück zum Zitat Lodberg A, Vegger JB, Jensen MV, Larsen CM, Thomsen JS, Bruel A (2015) Immobilization induced osteopenia is strain specific in mice. Bone Rep 2:59–67CrossRef Lodberg A, Vegger JB, Jensen MV, Larsen CM, Thomsen JS, Bruel A (2015) Immobilization induced osteopenia is strain specific in mice. Bone Rep 2:59–67CrossRef
16.
Zurück zum Zitat Wheeler A, Smith HS (2013) Botulinum toxins: mechanisms of action, antinociception and clinical applications. Toxicol 306:124–146CrossRef Wheeler A, Smith HS (2013) Botulinum toxins: mechanisms of action, antinociception and clinical applications. Toxicol 306:124–146CrossRef
17.
Zurück zum Zitat Djukic K, Milovanovic P, Hahn M, Busse B, Amling M, Djuric M (2015) Bone microarchitecture at muscle attachment sites: the relationship between macroscopic scores of entheses and their cortical and trabecular microstructural design. Am J Phys Anthropol 157:81–93CrossRef Djukic K, Milovanovic P, Hahn M, Busse B, Amling M, Djuric M (2015) Bone microarchitecture at muscle attachment sites: the relationship between macroscopic scores of entheses and their cortical and trabecular microstructural design. Am J Phys Anthropol 157:81–93CrossRef
18.
Zurück zum Zitat Bouvard B, Mabilleau G, Legrand E, Audran M, Chappard D (2012) Micro and macroarchitectural changes at the tibia after botulinum toxin injection in the growing rat. Bone 50:858–864CrossRef Bouvard B, Mabilleau G, Legrand E, Audran M, Chappard D (2012) Micro and macroarchitectural changes at the tibia after botulinum toxin injection in the growing rat. Bone 50:858–864CrossRef
19.
Zurück zum Zitat Poliachik SL, Bain SD, Threet D, Huber P, Gross TS (2010) Transient muscle paralysis disrupts bone homeostasis by rapid degradation of bone morphology. Bone 46:18–23CrossRef Poliachik SL, Bain SD, Threet D, Huber P, Gross TS (2010) Transient muscle paralysis disrupts bone homeostasis by rapid degradation of bone morphology. Bone 46:18–23CrossRef
20.
Zurück zum Zitat Manske SL, Boyd SK, Zernicke RF (2010) Muscle changes can account for bone loss after botulinum toxin injection. Calcif Tissue Int 87:541–549CrossRef Manske SL, Boyd SK, Zernicke RF (2010) Muscle changes can account for bone loss after botulinum toxin injection. Calcif Tissue Int 87:541–549CrossRef
21.
Zurück zum Zitat Manske SL, Boyd SK, Zernicke RF (2010) Muscle and bone follow similar temporal patterns of recovery from muscle-induced disuse due to botulinum toxin injection. Bone 46:24–31CrossRef Manske SL, Boyd SK, Zernicke RF (2010) Muscle and bone follow similar temporal patterns of recovery from muscle-induced disuse due to botulinum toxin injection. Bone 46:24–31CrossRef
22.
Zurück zum Zitat Thomsen JS, Christensen LL, Vegger JB, Nyengaard JR, Brüel A (2012) Loss of bone strength is dependent on skeletal site in disuse osteoporosis in rats. Calcif Tissue Int 90:294–306CrossRef Thomsen JS, Christensen LL, Vegger JB, Nyengaard JR, Brüel A (2012) Loss of bone strength is dependent on skeletal site in disuse osteoporosis in rats. Calcif Tissue Int 90:294–306CrossRef
23.
Zurück zum Zitat Chappard D, Libouban H (2016) Vector analysis of porosity evidences bone loss at the epiphysis in the BTX rat model of disuse osteoporosis. J Anat Soc Ind 65:3–8CrossRef Chappard D, Libouban H (2016) Vector analysis of porosity evidences bone loss at the epiphysis in the BTX rat model of disuse osteoporosis. J Anat Soc Ind 65:3–8CrossRef
24.
Zurück zum Zitat Renders GA, Mulder L, Lin AS, Langenbach GE, Koolstra JH, Guldberg RE, Everts V (2014) Contrast-enhanced microCT (EPIC-µCT) ex vivo applied to the mouse and human jaw joint. Dentomaxillofac Radiol 43:20130098CrossRef Renders GA, Mulder L, Lin AS, Langenbach GE, Koolstra JH, Guldberg RE, Everts V (2014) Contrast-enhanced microCT (EPIC-µCT) ex vivo applied to the mouse and human jaw joint. Dentomaxillofac Radiol 43:20130098CrossRef
25.
Zurück zum Zitat Scheller EL, Troiano N, VanHoutan JN, Bouxsein MA, Fretz JA, Xi Y, Nelson T, Katz G, Berry R, Church CD (2014) Use of osmium tetroxide staining with microcomputerized tomography to visualize and quantify bone marrow adipose tissue in vivo. Methods Enzymol 537:123–139CrossRef Scheller EL, Troiano N, VanHoutan JN, Bouxsein MA, Fretz JA, Xi Y, Nelson T, Katz G, Berry R, Church CD (2014) Use of osmium tetroxide staining with microcomputerized tomography to visualize and quantify bone marrow adipose tissue in vivo. Methods Enzymol 537:123–139CrossRef
27.
Zurück zum Zitat Pauwels E, Van Loo D, Cornillie P, Brabant L, Van Hoorebeke L (2013) An exploratory study of contrast agents for soft tissue visualization by means of high resolution X-ray computed tomography imaging. J Microsc 250:21–31CrossRef Pauwels E, Van Loo D, Cornillie P, Brabant L, Van Hoorebeke L (2013) An exploratory study of contrast agents for soft tissue visualization by means of high resolution X-ray computed tomography imaging. J Microsc 250:21–31CrossRef
28.
Zurück zum Zitat Warner SE, Sanford DA, Becker BA, Bain SD, Srinivasan S, Gross TS (2006) Botox induced muscle paralysis rapidly degrades bone. Bone 38:257–264CrossRef Warner SE, Sanford DA, Becker BA, Bain SD, Srinivasan S, Gross TS (2006) Botox induced muscle paralysis rapidly degrades bone. Bone 38:257–264CrossRef
29.
Zurück zum Zitat Tassani S, Korfiatis V, Matsopoulos G (2014) Influence of segmentation on micro-CT images of trabecular bone. J Microsc 256:75–81CrossRef Tassani S, Korfiatis V, Matsopoulos G (2014) Influence of segmentation on micro-CT images of trabecular bone. J Microsc 256:75–81CrossRef
30.
Zurück zum Zitat Bouxsein ML, Boyd SK, Christiansen BA, Guldberg RE, Jepsen KJ, Muller R (2010) Guidelines for assessment of bone microstructure in rodents using micro-computed tomography. J Bone Miner Res 25:1468–1486CrossRef Bouxsein ML, Boyd SK, Christiansen BA, Guldberg RE, Jepsen KJ, Muller R (2010) Guidelines for assessment of bone microstructure in rodents using micro-computed tomography. J Bone Miner Res 25:1468–1486CrossRef
31.
Zurück zum Zitat Vegger JB, Bruel A, Dahlgaard AF, Thomsen JS (2016) Alterations in gene expression precede sarcopenia and osteopenia in botulinum toxin immobilized mice. J Musculoskelet Neuronal Interact 16:355–368PubMedPubMedCentral Vegger JB, Bruel A, Dahlgaard AF, Thomsen JS (2016) Alterations in gene expression precede sarcopenia and osteopenia in botulinum toxin immobilized mice. J Musculoskelet Neuronal Interact 16:355–368PubMedPubMedCentral
32.
Zurück zum Zitat Jeffery NS, Stephenson RS, Gallagher JA, Jarvis JC, Cox PG (2011) Micro-computed tomography with iodine staining resolves the arrangement of muscle fibres. J Biomech 44:189–192CrossRef Jeffery NS, Stephenson RS, Gallagher JA, Jarvis JC, Cox PG (2011) Micro-computed tomography with iodine staining resolves the arrangement of muscle fibres. J Biomech 44:189–192CrossRef
33.
Zurück zum Zitat Metscher BD (2009) MicroCT for comparative morphology: simple staining methods allow high-contrast 3D imaging of diverse non-mineralized animal tissues. BMC Physiol 9:11CrossRef Metscher BD (2009) MicroCT for comparative morphology: simple staining methods allow high-contrast 3D imaging of diverse non-mineralized animal tissues. BMC Physiol 9:11CrossRef
34.
Zurück zum Zitat Vickerton P, Jarvis J, Jeffery N (2013) Concentration-dependent specimen shrinkage in iodine-enhanced microCT. J Anat 223:185–193CrossRef Vickerton P, Jarvis J, Jeffery N (2013) Concentration-dependent specimen shrinkage in iodine-enhanced microCT. J Anat 223:185–193CrossRef
35.
Zurück zum Zitat Buytaert J, Goyens J, De Greef D, Aerts P, Dirckx J (2014) Volume shrinkage of bone, brain and muscle tissue in sample preparation for micro-CT and light sheet fluorescence microscopy (LSFM). Microsc Microanal 20:1208–1217CrossRef Buytaert J, Goyens J, De Greef D, Aerts P, Dirckx J (2014) Volume shrinkage of bone, brain and muscle tissue in sample preparation for micro-CT and light sheet fluorescence microscopy (LSFM). Microsc Microanal 20:1208–1217CrossRef
36.
Zurück zum Zitat Oliva J, De Pablo J, Cortina J-L, Cama J, Ayora C (2011) Removal of cadmium, copper, nickel, cobalt and mercury from water by Apatite II™: column experiments. J Hazard Mater 194:312–323CrossRef Oliva J, De Pablo J, Cortina J-L, Cama J, Ayora C (2011) Removal of cadmium, copper, nickel, cobalt and mercury from water by Apatite II™: column experiments. J Hazard Mater 194:312–323CrossRef
37.
Zurück zum Zitat Yaraskavitch M, Leonard T, Herzog W (2008) Botox produces functional weakness in non-injected muscles adjacent to the target muscle. J Biomech 41:897–902CrossRef Yaraskavitch M, Leonard T, Herzog W (2008) Botox produces functional weakness in non-injected muscles adjacent to the target muscle. J Biomech 41:897–902CrossRef
38.
Zurück zum Zitat Fortuna R, Vaz MA, Youssef AR, Longino D, Herzog W (2011) Changes in contractile properties of muscles receiving repeat injections of botulinum toxin (Botox). J Biomech 44:39–44CrossRef Fortuna R, Vaz MA, Youssef AR, Longino D, Herzog W (2011) Changes in contractile properties of muscles receiving repeat injections of botulinum toxin (Botox). J Biomech 44:39–44CrossRef
39.
Zurück zum Zitat Blouin S, Gallois Y, Moreau MF, Baslé MF, Chappard D (2007) Disuse and orchidectomy have additional effects on bone loss in the aged male rat. Osteoporos Int 18:85–92CrossRef Blouin S, Gallois Y, Moreau MF, Baslé MF, Chappard D (2007) Disuse and orchidectomy have additional effects on bone loss in the aged male rat. Osteoporos Int 18:85–92CrossRef
40.
Zurück zum Zitat Libouban H, Blouin S, Moreau MF, Baslé MF, Audran M, Chappard D (2008) Effects of risedronate in a rat model of osteopenia due to orchidectomy and disuse: densitometric, histomorphometric and microtomographic studies. Micron 39:998–1007CrossRef Libouban H, Blouin S, Moreau MF, Baslé MF, Audran M, Chappard D (2008) Effects of risedronate in a rat model of osteopenia due to orchidectomy and disuse: densitometric, histomorphometric and microtomographic studies. Micron 39:998–1007CrossRef
41.
Zurück zum Zitat Mabilleau G, Mieczkowska A, Libouban H, Simon Y, Audran M, Chappard D (2015) Comparison between quantitative X-ray imaging, dual energy X-ray absorptiometry and microCT in the assessment of bone mineral density in disuse-induced bone loss. J Musculoskelet Neuronal Interact 15:42–52PubMedPubMedCentral Mabilleau G, Mieczkowska A, Libouban H, Simon Y, Audran M, Chappard D (2015) Comparison between quantitative X-ray imaging, dual energy X-ray absorptiometry and microCT in the assessment of bone mineral density in disuse-induced bone loss. J Musculoskelet Neuronal Interact 15:42–52PubMedPubMedCentral
42.
Zurück zum Zitat Grimston SK, Silva MJ, Civitelli R (2007) Bone loss after temporarily induced muscle paralysis by Botox is not fully recovered after 12 weeks. Ann N Y Acad Sci 1116:444–460CrossRef Grimston SK, Silva MJ, Civitelli R (2007) Bone loss after temporarily induced muscle paralysis by Botox is not fully recovered after 12 weeks. Ann N Y Acad Sci 1116:444–460CrossRef
43.
Zurück zum Zitat Rafferty KL, Liu ZJ, Ye W, Navarrete AL, Nguyen TT, Salamati A, Herring SW (2012) Botulinum toxin in masticatory muscles: short-and long-term effects on muscle, bone, and craniofacial function in adult rabbits. Bone 50:651–662CrossRef Rafferty KL, Liu ZJ, Ye W, Navarrete AL, Nguyen TT, Salamati A, Herring SW (2012) Botulinum toxin in masticatory muscles: short-and long-term effects on muscle, bone, and craniofacial function in adult rabbits. Bone 50:651–662CrossRef
44.
Zurück zum Zitat Rauch F, Hamdy R (2006) Effect of a single botulinum toxin injection on bone development in growing rabbits. J Musculoskelet Neuronal Interact 6:264PubMed Rauch F, Hamdy R (2006) Effect of a single botulinum toxin injection on bone development in growing rabbits. J Musculoskelet Neuronal Interact 6:264PubMed
45.
Zurück zum Zitat Kün-Darbois JD, Libouban H, Chappard D (2015) Botulinum toxin in masticatory muscles of the adult rat induces bone loss at the condyle and alveolar regions of the mandible associated with a bone proliferation at a muscle enthesis. Bone 77:75–82CrossRef Kün-Darbois JD, Libouban H, Chappard D (2015) Botulinum toxin in masticatory muscles of the adult rat induces bone loss at the condyle and alveolar regions of the mandible associated with a bone proliferation at a muscle enthesis. Bone 77:75–82CrossRef
46.
Zurück zum Zitat Park C, Park K, Kim J (2015) Growth effects of botulinum toxin type A injected unilaterally into the masseter muscle of developing rats. J Zhejiang Univ Sci B 16:46–51CrossRef Park C, Park K, Kim J (2015) Growth effects of botulinum toxin type A injected unilaterally into the masseter muscle of developing rats. J Zhejiang Univ Sci B 16:46–51CrossRef
47.
Zurück zum Zitat Bach-Gansmo FL, Wittig NK, Brüel A, Thomsen JS, Birkedal H (2016) Immobilization and long-term recovery results in large changes in bone structure and strength but no corresponding alterations of osteocyte lacunar properties. Bone 91:139–147CrossRef Bach-Gansmo FL, Wittig NK, Brüel A, Thomsen JS, Birkedal H (2016) Immobilization and long-term recovery results in large changes in bone structure and strength but no corresponding alterations of osteocyte lacunar properties. Bone 91:139–147CrossRef
48.
Zurück zum Zitat Marchand-Libouban H, Le Drevo MA, Chappard D (2013) Disuse induced by botulinum toxin affects the bone marrow expression profile of bone genes leading to a rapid bone loss. J Musculoskelet Neuronal Interact 13:27–36PubMed Marchand-Libouban H, Le Drevo MA, Chappard D (2013) Disuse induced by botulinum toxin affects the bone marrow expression profile of bone genes leading to a rapid bone loss. J Musculoskelet Neuronal Interact 13:27–36PubMed
Metadaten
Titel
Long-Term Quantitative Evaluation of Muscle and Bone Wasting Induced by Botulinum Toxin in Mice Using Microcomputed Tomography
verfasst von
Hélène Libouban
Claude Guintard
Nicolas Minier
Eric Aguado
Daniel Chappard
Publikationsdatum
08.12.2017
Verlag
Springer US
Erschienen in
Calcified Tissue International / Ausgabe 6/2018
Print ISSN: 0171-967X
Elektronische ISSN: 1432-0827
DOI
https://doi.org/10.1007/s00223-017-0371-3

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