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Association between collagen cross-links and trabecular microarchitecture properties of human vertebral bone.

机译:胶原蛋白交联与人椎骨小梁微结构特性之间的关联。

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It has been suggested that age-related deterioration in trabecular microarchitecture and changes in collagen cross-link concentrations may contribute to skeletal fragility. To further explore this hypothesis, we determined the relationships among trabecular bone volume fraction (BV/TV), microarchitecture, collagen cross-link content, and bone turnover in human vertebral trabecular bone. Trabecular bone specimens from L2 vertebrae were collected from 51 recently deceased donors (54-95 years of age; 20 men and 30 women). Trabecular bone volume and microarchitecture was assessed by microCT and bone formation, reflected by osteoid surface (OS/BS, %), was measured by 2D histomorphometry. Pyridinoline (PYD), deoxypyridinoline (DPD), pentosidine (PEN) and collagen content in the cancellous bone were analysed by high-performance liquid chromatography. Associations between variables were investigated by Pearson correlations and multiple regression models, which were constructed with BV/TV and collagen cross-links as explanatory variables and microarchitecture parameters as the dependent variables. RESULTS: Microarchitecture parameters were modestly to strongly correlated with BV/TV (r(2)=0.10-0.71). The amount of mature enzymatic PYD and DPD cross-links were not associated with the microarchitecture, either before or after adjustment for BV/TV. However, there was a positive correlation between PEN content and trabecular number (r=0.45, p=0.001) and connectivity density (r=0.40, p=0.004), and a negative correlation between PEN content and trabecular separation (r=-0.29, p=0.04). In the multiple regression models including BV/TV, age and PEN content was still significantly associated with several of the microarchitecture variables. In summary, this study suggests a link between trabecular microarchitecture and the collagen cross-link profile. As PEN reflects non-enzymatic glycation of collagen and generally increases with bone age, the association between PEN and trabecular architecture suggests that the preserved trabeculae may contain mainly old bone and have undergone little remodeling. Thus, vertebral fragility may not only be due to alterations in bone architecture but also to modification of collagen cross-link patterns thereby influencing bone's mechanical behavior.
机译:有人认为,与年龄有关的骨小梁微结构的恶化和胶原蛋白交联浓度的变化可能有助于骨骼的脆弱性。为了进一步探讨该假设,我们确定了小梁骨体积分数(BV / TV),微体系结构,胶原蛋白交联含量和人椎骨小梁骨的骨转换之间的关系。 L2椎骨的小梁骨标本是从51位最近去世的供体(54-95岁; 20名男性和30名女性)中收集的。通过microCT评估小梁的骨体积和微结构,并通过2D组织形态学方法测量骨样表面(OS / BS,%)反映的骨形成。用高效液相色谱法分析了松质骨中的吡啶啉(PYD),脱氧吡啶啉(DPD),戊糖苷(PEN)和胶原蛋白含量。通过Pearson相关性和多元回归模型研究变量之间的关联,这些模型以BV / TV和胶原蛋白交联作为解释变量,而微体系结构参数作为因变量构建。结果:微架构参数适度地与BV / TV紧密相关(r(2)= 0.10-0.71)。在调整BV / TV之前或之后,成熟的酶促PYD和DPD交联的数量与微体系结构无关。但是,PEN含量与骨小梁数目(r = 0.45,p = 0.001)和连接密度(r = 0.40,p = 0.004)之间呈正相关,PEN含量与骨小梁分离呈负相关(r = -0.29) ,p = 0.04)。在包括BV / TV在内的多元回归模型中,年龄和PEN含量仍与多个微体系结构变量显着相关。总而言之,这项研究表明小梁微结构与胶原蛋白交联结构之间存在联系。由于PEN反映胶原蛋白的非酶糖基化,并且通常随着骨龄的增加而增加,因此PEN与小梁结构之间的关联表明,保留的小梁可能主要包含旧骨并且几乎没有重塑。因此,椎骨的脆弱性不仅可能是由于骨骼结构的改变,还可能是由于胶原蛋白交联模式的改变,从而影响了骨骼的机械行为。

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