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使用荧光辅助同步辐射红外显微光谱法检测骨质疏松症中的骨化学成分。

Examination of bone chemical composition in osteoporosis using fluorescence-assisted synchrotron infrared microspectroscopy.

作者信息

Miller L M, Tibrewala J, Carlson C S

机构信息

National Synchrotron Light Source, Brookhaven National Laboratory, Upton, NY 11973-5000, USA.

出版信息

Cell Mol Biol (Noisy-le-grand). 2000 Sep;46(6):1035-44.

Abstract

Although it is clear that osteoporosis is associated with a reduction in bone mass and a fragile skeleton, it is not understood whether the chemical composition of osteoporotic bone is different from normal bone. In this study, cynomolgus monkeys (Macaca fascicularis) were administered fluorochrome labels at one and two years after ovariectomy (Ovx) or Sham ovariectomy (intact), that were taken up into newly remodeled bone. Using fluorescence-assisted synchrotron infrared microspectroscopy, the chemical composition of bone from intact versus Ovx monkeys has been compared. Results from overall composition distributions (labeled + non-labeled bone) reveal similar carbonate/protein and phosphate/protein ratios, but increased acid phosphate content and different collagen structure in the Ovx animals. Analysis of the fluorochrome-labeled bone indicates similar degrees of mineralization in bone remodeled after one year, but decreased mineralization in Ovx bone remodeled two years after surgery. Thus, bone from monkeys with osteoporosis can be characterized as having abnormal collagen structure and reduced rates of mineralization. Coupled with factors such as trabecular architecture and bone shape and size, these ultrastructural factors may play a contributing role in the increased bone fragility in osteoporosis.

摘要

虽然很明显骨质疏松症与骨量减少和骨骼脆弱有关,但尚不清楚骨质疏松性骨的化学成分是否与正常骨不同。在本研究中,对食蟹猴(猕猴)在卵巢切除(Ovx)或假卵巢切除(完整)后1年和2年给予荧光染料标记,这些标记会被新重塑的骨吸收。使用荧光辅助同步加速器红外显微光谱法,比较了完整猴与卵巢切除猴的骨化学成分。总体成分分布(标记 + 未标记骨)的结果显示,碳酸盐/蛋白质和磷酸盐/蛋白质比率相似,但卵巢切除动物的酸性磷酸酶含量增加且胶原结构不同。对荧光染料标记骨的分析表明,术后1年重塑的骨矿化程度相似,但术后2年卵巢切除骨的矿化减少。因此,患有骨质疏松症的猴的骨可被表征为具有异常的胶原结构和降低的矿化速率。加上诸如小梁结构以及骨的形状和大小等因素,这些超微结构因素可能在骨质疏松症中骨脆性增加方面起作用。

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