Fetal and postnatal mouse bone tissue contains more calcium than is present in hydroxyapatite

Journal of Structural Biology - Tập 176 - Trang 159-167 - 2011
C. Lange1, C. Li1, I. Manjubala1,2, W. Wagermaier1, J. Kühnisch3,4, M. Kolanczyk3,4, S. Mundlos3,4, P. Knaus5, P. Fratzl1
1Department of Biomaterials, Max Planck Institute of Colloids and Interfaces, Research Campus Golm, 14476 Potsdam, Germany
2Biomedical Engineering Division, School of Bio-Sciences and Technology, VIT University, Vellore 623 014, Tamilnadu, India
3Institute for Medical Genetics, Charité, Augustenburger Platz 1, 13353 Berlin, Germany
4Max Planck Institute of Molecular Genetics, Ihnestraße 63-73, 14195 Berlin, Germany
5Institute for Chemistry and Biochemistry, Freie Universität Berlin, Takustraße 3, 14195, Berlin, Germany

Tài liệu tham khảo

Akhter, 2004, Bone intrinsic material properties in three inbred mouse strains, Calcif. Tissue Int., 75, 416, 10.1007/s00223-004-0241-7 Barret, 1986 Beniash, 2009, Transient amorphous calcium phosphate in forming enamel, J. Struct. Biol., 166, 133, 10.1016/j.jsb.2009.02.001 Betts, 1981, Bone mineralization, J. Cryst. Growth, 53, 63, 10.1016/0022-0248(81)90056-7 Bonar, 1985, Neutron diffraction studies of collagen in fully mineralized bone, J. Mol. Biol., 181, 265, 10.1016/0022-2836(85)90090-7 Boskey, 1997, Amorphous calcium phosphate: the contention of bone, J. Dent. Res., 76, 1433, 10.1177/00220345970760080501 Brodt, 1999, Growing C57Bl/6 mice increase whole bone mechanical properties by increasing geometric and material properties, J. Bone Miner. Res., 14, 2159, 10.1359/jbmr.1999.14.12.2159 Burger, 1991, Modulation of osteogenesis in fetal bone rudiments by mechanical stress in vitro, J. Biomech., 24, 101, 10.1016/0021-9290(91)90381-V Crane, 2006, Raman spectroscopic evidence for octacalcium phosphate and other transient mineral species deposited during intramembranous mineralization, Bone, 39, 434, 10.1016/j.bone.2006.02.059 Currey, 2002 Danilchenko, 2002, Determination of the bone mineral crystallite size and lattice strain from diffraction line broadening, Cryst. Res. Technol., 37, 1234, 10.1002/1521-4079(200211)37:11<1234::AID-CRAT1234>3.0.CO;2-X Forriol, 2005, Bone development – interaction of molecular components and biophysical forces, Clin. Orthop. Rel. Res., 14, 10.1097/01.blo.0000156001.78631.e9 Fratzl, 2008, Collagen: Structure and Mechanics, An Introduction Fratzl, 1991, Nucleation and growth of mineral crystals in bone studied by small-angle X-ray scattering, Calcif. Tissue Int., 48, 407, 10.1007/BF02556454 Fratzl, 2004, Structure and mechanical quality of the collagen-mineral nano-composite in bone, J. Mater. Chem., 14, 2115, 10.1039/B402005G Fratzl, 1996, Bone mineralization as studied by small-angle X-ray scattering, Connect. Tissue Res., 35, 9 Grabner, 2001, Age- and genotype-dependence of bone material properties in the osteogenesis imperfecta murine model (oim), Bone, 29, 453, 10.1016/S8756-3282(01)00594-4 Grynpas, 2007, Transient precursor strategy or very small biological apatite crystals?, Bone, 41, 162, 10.1016/j.bone.2007.04.176 Gupta, 2005, Two different correlations between nanoindentation modulus and mineral content in the bone-cartilage interface, J. Struct. Biol., 149, 138, 10.1016/j.jsb.2004.10.010 Hodge, 1989, Molecular models illustrating the possible distributions of ‘holes’ in simple systematically staggered arrays of type I collagen molecules in native-type fibrils, Connect. Tissue Res., 21, 137, 10.3109/03008208909050004 Karsenty, 2003, The complexities of skeletal biology, Nature, 423, 316, 10.1038/nature01654 Klug, 1974 Kolanczyk, 2007, Multiple roles for neurofibromin in skeletal development and growth, Hum. Mol. Genet., 16, 874, 10.1093/hmg/ddm032 Kolanczyk, 2008, Modelling neurofibromatosis type 1 tibial dysplasia and its treatment with lovastatin, BMC Med., 6, 21, 10.1186/1741-7015-6-21 Landis, 1995, The strength of a calcified tissue depends in part on the molecular structure and organization of its constituent mineral crystals in their organic matrix, Bone, 16, 533, 10.1016/8756-3282(95)00076-P Lowenstam, 1985, Transformation of amorphous calcium-phosphate to crystalline dahllite in the radular teeth of chitons, Science, 227, 51, 10.1126/science.227.4682.51 Mahamid, 2010, Mapping amorphous calcium phosphate transformation into crystalline mineral from the cell to the bone in zebrafish fin rays, Proc. Natl. Acad. Sci. USA, 107, 6316, 10.1073/pnas.0914218107 Mahamid, 2008, Amorphous calcium phosphate is a major component of the forming fin bones of zebrafish: indications for an amorphous precursor phase, Proc. Natl. Acad. Sci. USA, 105, 12748, 10.1073/pnas.0803354105 Mahamid, 2011, Bone mineralization proceeds through intracellular calcium phosphate loaded vesicles: a cryo-electron microscopy study, J. Struct. Biol., 174, 527, 10.1016/j.jsb.2011.03.014 Miller, 1984, Collagen – the organic matrix of bone, Philos. Trans. R. Soc. Lond. Ser. B-Biol. Sci., 304, 455 Miller, 2007, Accretion of bone quantity and quality in the developing mouse skeleton, J. Bone Miner. Res., 22, 1037, 10.1359/jbmr.070402 Nudelman, 2010, The role of collagen in bone apatite formation in the presence of hydroxyapatite nucleation inhibitors, Nat. Mater., 9, 1004, 10.1038/nmat2875 Olsen, 2000, Bone development, Annu. Rev. Cell Dev. Biol., 16, 191, 10.1146/annurev.cellbio.16.1.191 Paris, 2003, Scanning X-ray microdiffraction of complex materials: diffraction geometry considerations, Nucl. Instrum. Methods Phys. Res. Sect. B, 200, 390, 10.1016/S0168-583X(02)01728-7 Price, 1997, X-ray diffraction analysis of tendon collagen at ambient and cryogenic temperatures: role of hydration, Int. J. Biol. Macromol., 20, 23, 10.1016/S0141-8130(97)01148-3 Rinnerthaler, 1999, Scanning small angle X-ray scattering analysis of human bone sections, Calcif. Tissue Int., 64, 422, 10.1007/PL00005824 Roschger, 1998, Validation of quantitative backscattered electron imaging for the measurement of mineral density distribution in human bone biopsies, Bone, 23, 319, 10.1016/S8756-3282(98)00112-4 Roschger, 2001, Structural development of the mineralized tissue in the human L4 vertebral body, J. Struct. Biol., 136, 126, 10.1006/jsbi.2001.4427 Shapiro, 2008, Bone development and its relation to fracture repair. The role of mesenchymal osteoblasts and surface osteoblasts, Eur. Cell. Mater., 15, 53, 10.22203/eCM.v015a05 Su, 2003, Organization of apatite crystals in human woven bone, Bone, 32, 150, 10.1016/S8756-3282(02)00945-6 Tanck, 2004, The mechanical consequences of mineralization in embryonic bone, Bone, 35, 186, 10.1016/j.bone.2004.02.015 Tesch, 2003, Orientation of mineral crystallites and mineral density during skeletal development in mice deficient in tissue nonspecific alkaline phosphatase, J. Bone Miner. Res., 18, 117, 10.1359/jbmr.2003.18.1.117 Walker, 2002 Wang, 2008, Calcium orthophosphates: crystallization and dissolution, Chem. Rev., 108, 4628, 10.1021/cr0782574 Wang, 2006, Nanosized particles in bone and dissolution insensitivity of bone mineral, Biointerphases, 1, 106, 10.1116/1.2354575 Weiner, 2006, Transient precursor strategy in mineral formation of bone, Bone, 39, 431, 10.1016/j.bone.2006.02.058 Weiner, 1998, The material bone: structure mechanical function relations, Annu. Rev. Mater. Sci., 28, 271, 10.1146/annurev.matsci.28.1.271 Weiss, 2002, Mollusc larval shell formation: amorphous calcium carbonate is a precursor phase for aragonite, J. Exp. Zool., 293, 478, 10.1002/jez.90004 Zoetis, 2003, Species comparison of postnatal bone growth and development, Birth Defects Res. Part B-Dev. Reprod. Toxicol., 68, 86, 10.1002/bdrb.10012