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首页> 外文期刊>Osteoporosis international: a journal established as result of cooperation between the European Foundation for Osteoporosis and the National Osteoporosis Foundation of the USA >Reductions in degree of mineralization and enzymatic collagen cross-links and increases in glycation-induced pentosidine in the femoral neck cortex in cases of femoral neck fracture.
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Reductions in degree of mineralization and enzymatic collagen cross-links and increases in glycation-induced pentosidine in the femoral neck cortex in cases of femoral neck fracture.

机译:在股骨颈骨折的情况下,矿化度降低和酶促胶原蛋白交联减少,并且糖化诱导的股骨颈皮中的戊糖苷增加。

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INTRODUCTION: Enzymatic and glycation-induced nonenzymatic cross-links play important roles in the expression of bone strength. The cross-link pattern is affected by tissue maturation and senescence. The aim of our study was to understand the distinctive posttranslational modifications of collagen in areas with different degrees of mineralization with and without hip fracture. METHODS: Sixteen female cases of intracapsular hip fracture (78+/-6 years) and 16 age- and gender-matched postmortem controls (76+/-6 years) were included in this study. A sample of each femoral neck cortex was fractionated into low (1.7 to 2.0 g/ml) and high (>2.0 g/ml) density portions. The contents of enzymatic cross-links (dihydroxylysinonorleucine, hydroxylysinonorleucine, lysinonorleucine, pyridinoline, and deoxypyridinoline) and nonenzymatic cross-links (pentosidine) and the extent of lysine (Lys) hydroxylation were determined in each fraction. RESULTS: In the controls, there was no significant difference in the contents of enzymatic cross-links between low- and high-mineralized bone fractions whereas pentosidine content was significantly higher in high-mineralized bone compared with low-mineralized bone (p=0.0014). When comparing enzymatic cross-link contents between controls and fracture cases, a trend toward lower (p=0.0961) cross-link content in low-mineralized bone and a significant reduction (p<0.0001) in high-mineralized bone were observed. Pentosidine content of low-mineralized bone was significantly higher in fracture cases than in controls (p<0.0001). The extent of Lys hydroxylation was significantly higher in fracture cases than in controls (p<0.001). The higher hydroxylation of Lys in collagen from fracture cases relative to controls was associated with significantly higher values of hydroxylysine-derived cross-link such that the enzymatic cross-link patterns correlated with the extent of Lys hydroxylation in the collagen molecules. CONCLUSIONS: These results suggest that reductions in the degree of mineralizationand enzymatic cross-links and excessive formation of pentosidine may play an important role in explaining poor bone quality in osteoporosis.
机译:简介:酶促和糖基化诱导的非酶促交联在骨骼强度的表达中起重要作用。交联模式受组织成熟和衰老影响。我们研究的目的是了解在有或没有髋部骨折的不同矿化程度区域中胶原蛋白的独特翻译后修饰。方法:本研究包括16例女性的囊内髋部骨折病例(78 +/- 6岁)和16个年龄和性别相匹配的验尸对照(76 +/- 6岁)。将每个股骨颈皮质的样品分成低密度部分(1.7至2.0 g / ml)和高密度部分(> 2.0 g / ml)。在每个部分中确定酶促交联的含量(二羟基赖氨酸正亮氨酸,羟基赖氨酸正亮氨酸,赖氨酸正亮氨酸,吡啶啉和脱氧吡啶啉)和非酶促交联(戊啶)和赖氨酸(Lys)的羟基化程度。结果:在对照中,低矿化骨和高矿化骨之间的酶促交联含量没有显着差异,而高矿化骨中的戊糖苷含量明显高于低矿化骨(p = 0.0014) 。当比较对照组和骨折病例之间的酶交联含量时,观察到低矿化骨中的交联含量降低(p = 0.0961)的趋势,而高矿化骨中的交联含量显着降低(p <0.0001)。骨折病例中低矿化骨的戊糖苷含量明显高于对照组(p <0.0001)。骨折病例中Lys羟化程度明显高于对照组(p <0.001)。相对于对照,骨折病例中胶原蛋白中Lys的更高羟基化与羟赖氨酸衍生的交联值显着更高相关,因此酶促交联模式与胶原蛋白分子中Lys羟化程度相关。结论:这些结果表明矿化度和酶促交联度的降低以及戊糖苷的过量形成可能在解释骨质疏松症的不良骨质中起重要作用。

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