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本文引用的文献

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Decreased collagen organization and content are associated with reduced strength of demineralized and intact bone in the SAMP6 mouse.在SAMP6小鼠中,胶原蛋白结构和含量的减少与脱矿质骨和完整骨强度的降低有关。
J Bone Miner Res. 2006 Jan;21(1):78-88. doi: 10.1359/JBMR.050909. Epub 2005 Sep 19.
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The mechanical consequences of variation in the mineral content of bone.骨骼矿物质含量变化的力学后果。
J Biomech. 1969 Mar;2(1):1-11. doi: 10.1016/0021-9290(69)90036-0.
3
Alpha 2(I) collagen deficient oim mice have altered biomechanical integrity, collagen content, and collagen crosslinking of their thoracic aorta.α2(I) 型胶原蛋白缺乏的成骨不全症(OIM)小鼠的胸主动脉生物力学完整性、胶原蛋白含量和胶原蛋白交联发生了改变。
Matrix Biol. 2005 Oct;24(7):451-8. doi: 10.1016/j.matbio.2005.07.001. Epub 2005 Aug 10.
4
Differential effects of alendronate treatment on bone from growing osteogenesis imperfecta and wild-type mouse.阿仑膦酸盐治疗对成骨不全症生长小鼠和野生型小鼠骨骼的不同影响。
Bone. 2005 Jan;36(1):150-8. doi: 10.1016/j.bone.2004.10.006.
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A comparison of mechanical properties derived from multiple skeletal sites in mice.对源自小鼠多个骨骼部位的力学性能进行比较。
J Biomech. 2005 Mar;38(3):467-75. doi: 10.1016/j.jbiomech.2004.04.020.
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Determination of calcium in blood serum by atomic absorption spectroscopy.用原子吸收光谱法测定血清中的钙
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Properties of collagen in OIM mouse tissues.成骨不全小鼠组织中胶原蛋白的特性。
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8
Alendronate treatment for infants with osteogenesis imperfecta: demonstration of efficacy in a mouse model.阿仑膦酸盐治疗成骨不全症婴儿:在小鼠模型中的疗效证明。
Pediatr Res. 2002 Nov;52(5):660-70. doi: 10.1203/00006450-200211000-00010.
9
The role of the alpha2 chain in the stabilization of the collagen type I heterotrimer: a study of the type I homotrimer in oim mouse tissues.α2链在I型胶原蛋白异源三聚体稳定中的作用:对骨形成不全症(oim)小鼠组织中I型同源三聚体的研究
J Mol Biol. 2002 Aug 30;321(5):797-805. doi: 10.1016/s0022-2836(02)00703-9.
10
Effects of collagen unwinding and cleavage on the mechanical integrity of the collagen network in bone.胶原蛋白解旋和裂解对骨中胶原蛋白网络机械完整性的影响。
Calcif Tissue Int. 2002 Aug;71(2):186-92. doi: 10.1007/s00223-001-1082-2. Epub 2002 Jun 5.

异常的矿物质-基质相互作用是oim/oim小鼠骨骼脆性的一个重要因素。

Abnormal mineral-matrix interactions are a significant contributor to fragility in oim/oim bone.

作者信息

Miller Elizabeth, Delos Demetris, Baldini Todd, Wright Timothy M, Pleshko Camacho Nancy

机构信息

Musculoskeletal Integrity Program, Research Division, Hospital for Special Surgery, 535 E. 70th Street, New York, NY 10021, USA.

出版信息

Calcif Tissue Int. 2007 Sep;81(3):206-14. doi: 10.1007/s00223-007-9045-x. Epub 2007 Jul 28.

DOI:10.1007/s00223-007-9045-x
PMID:17660935
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2945147/
Abstract

The presence of abnormal type I collagen underlies the tissue fragility in the heritable disease osteogenesis imperfecta (OI), though the specific mechanism remains ill-defined. The current study addressed the question of how an abnormal collagen-based matrix contributes to reduced bone strength in OI by comparing the material properties of mineralized and demineralized bone from the oim/oim mouse, a model of OI that contains homotrimeric (alpha1(3)(I)) type I collagen, with the properties of bone from wildtype (+/+) mice. Femoral three-point bend tests combined with geometric analyses were conducted on intact (mineralized) 14-week-old oim/oim and +/+ mice. To investigate the bone matrix properties, tensile tests combined with geometric analyses were conducted on demineralized femora. The majority of the properties of the mineralized oim/oim bone were inferior to those of the +/+ bone, including greater brittleness (+78.6%) and lower toughness (-69.2%). In contrast, tensile measurements on the demineralized bone revealed no significant differences between the oim/oim and +/+ bone, indicating that the matrix itself was not brittle. These results support the concept that deficient material properties of the demineralized bone matrix itself are not the principal cause of the severe fragility in this model of OI. It is likely the abnormal collagen scaffold serves as a template for abnormal mineral deposition, resulting in an incompetent mineral-matrix interaction that contributes significantly to the inferior material properties of bone in oim/oim mice.

摘要

在遗传性疾病成骨不全症(OI)中,异常的I型胶原蛋白的存在是组织脆弱的基础,尽管具体机制仍不明确。本研究通过比较来自oim/oim小鼠(一种含有同三聚体(α1(3)(I))I型胶原蛋白的OI模型)的矿化骨和脱矿骨的材料特性与野生型(+/+)小鼠的骨特性,探讨了基于胶原蛋白的异常基质如何导致OI中骨强度降低的问题。对14周龄完整(矿化)的oim/oim和+/+小鼠进行了股骨三点弯曲试验并结合几何分析。为了研究骨基质特性,对脱矿股骨进行了拉伸试验并结合几何分析。矿化的oim/oim骨的大多数特性都不如+/+骨,包括更高的脆性(+78.6%)和更低的韧性(-69.2%)。相比之下,对脱矿骨的拉伸测量显示oim/oim骨和+/+骨之间没有显著差异,表明基质本身并不脆。这些结果支持了这样一种概念,即脱矿骨基质本身材料特性不足不是该OI模型中严重脆弱性的主要原因。异常的胶原蛋白支架可能作为异常矿物质沉积的模板,导致矿物质与基质的相互作用不佳,这对oim/oim小鼠骨的不良材料特性有显著影响。