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首页> 外文期刊>日本金属学会誌 >大理石骨病(op/op)マウスの大腿骨骨幹中央断面部での生体アパタイト結晶の配向性分布
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大理石骨病(op/op)マウスの大腿骨骨幹中央断面部での生体アパタイト結晶の配向性分布

机译:骨质疏松症(op / op)小鼠股骨干中央部分生物磷灰石晶体的取向分布

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骨は主として有機質のコラーゲン線経とミネラル成分であrnる生体アパタイト(Biological apatite:BAp)から構成されるrn複合材料である.BAp結晶子の存在は骨基質に強度と剛性rnを与え,一方で,カルシウム,マグネシウム,無機リン酸塩rnイオンなどの貯蔵庫としても働いている.%Osteoclasts are nearly non-existent in mutant osteopetrotic (op/op) mice due to defects in the expression of the macrophage colony-stimulating factor (M-CSF). Thus; areal distribution of the biological apatite (BAp) c-axis in a femoral cross-section of the op/op mouse was investigated using a microbeam X-ray diffraction system in order to understand the role of osteoclasts on formation of BAp preferential alignment.rnThe incident X-ray beam was focused to 20 μm in diameter. The diffraction analysis was performed at 20 μm displacement intervals from the periosteal surface along the radial axis of the anterior portion at a cross-section of the center of the femoral diaphysis. The op/op mouse and its normal littermate used as a control were 12 weeks old.rnThe lack of osteoclasts induces both abnormality of the skeletal system and calcification of the medullary cavity; which are typical features of osteopetrosis. Preferential alignment of the BAp c-axis in the op/op mouse always shows a lower degree than that in the control mouse; regardless of the distance from the periosteum. Moreover; areal distributions of preferential alignment of the BAp c-axis on the femoral cross-section show quite different tendencies between the op/op and control mice. The preferential alignment of BAp gradually increases towards the periosteal surface in the op/op mouse due to the intramembranous ossification; while that in the control mouse is the lowest near the cortical envelope on the cross-section. This is because the decrease in the number of osteoclasts suppresses the normal modeling; resulting in degradation of preferential alignment of the BAp c-axis as a bone quality parameter in the op/op mouse.
机译:骨是一种rn复合材料,主要由有机胶原丝和生物磷灰石(bap)组成,而生物磷灰石是rn的矿物成分。 BAp微晶的存在为骨基质提供了强度和刚度,同时还充当了钙,镁,无机磷酸根等离子的储存库。由于破损的巨噬细胞集落刺激因子(M-CSF)的表达存在缺陷,破骨细胞在突变型骨科学(op / op)小鼠中几乎不存在,因此;生物磷灰石(bap)c轴的区域分布为了了解破骨细胞在形成BAp优先排列中的作用,使用了微束X射线衍射系统研究了op / op小鼠的股骨横截面。入射X射线束的直径聚焦为20μm。沿股骨干physi端中心横截面从骨膜表面沿前骨膜的径向轴以20μm的位移间隔进行衍射分析.op / op小鼠及其正常同窝小鼠为12破骨细胞的缺乏会引起骨骼系统异常和髓腔钙化;这是骨质疏松症的典型特征.op / op小鼠中BAp c轴的优先排列总是显示;与对照组小鼠相比,程度较低;无论距骨膜的距离如何;而且,BAp c轴在股骨截面上优先排列的区域分布在op / op和对照组小鼠之间显示出完全不同的趋势。由于膜内骨化,在op / op小鼠中BAp的优先排列朝着骨膜表面逐渐增加;而在对照小鼠中,横截面的皮质包膜处BAp的优先排列是最低的,这是因为破骨细胞抑制了正常的建模;导致op / op小鼠中BAp c轴作为骨质量参数的优先对齐方式降低。

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