首页> 外文期刊>Journal of applied physiology >Mechanical properties and collagen cross-linking of the patellar tendon in old and young men.
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Mechanical properties and collagen cross-linking of the patellar tendon in old and young men.

机译:老年男性和青年男性the骨肌腱的力学性能和胶原蛋白交联。

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Age-related loss in muscle mass and strength impairs daily life function in the elderly. However, it remains unknown whether tendon properties also deteriorate with age. Cross-linking of collagen molecules provides structural integrity to the tendon fibrils and has been shown to change with age in animals but has never been examined in humans in vivo. In this study, we examined the mechanical properties and pyridinoline and pentosidine cross-link and collagen concentrations of the patellar tendon in vivo in old (OM) and young men (YM). Seven OM (67 +/- 3 years, 86 +/- 10 kg) and 10 YM (27 +/- 2 years, 81 +/- 8 kg) with a similar physical activity level (OM 5 +/- 6 h/wk, YM 5 +/- 2 h/wk) were examined. MRI was used to assess whole tendon dimensions. Tendon mechanical properties were assessed with the use of simultaneous force and ultrasonographic measurements during ramped isometric contractions. Percutaneous tendon biopsies were taken and analyzed for hydroxylysyl pyridinoline (HP), lysyl pyridinoline (LP), pentosidine, and collagen concentrations. We found no significant differences in the dimensions or mechanical properties of the tendon between OM and YM. Collagen concentrations were lower in OM than in YM (0.49 +/- 0.27 vs. 0.73 +/- 0.14 mg/mg dry wt; P < 0.05). HP concentrations were higher in OM than in YM (898 +/- 172 vs. 645 +/- 183 mmol/mol; P < 0.05). LP concentrations were higher in OM than in YM (49 +/- 38 vs. 16 +/- 8 mmol/mol; P < 0.01), and pentosidine concentrations were higher in OM than in YM (73 +/- 13 vs. 11 +/- 2 mmol/mol; P < 0.01). These cross-sectional data raise the possibility that age may not appreciably influence the dimensions or mechanical properties of the human patellar tendon in vivo. Collagen concentration was reduced, whereas both enzymatic and nonenzymatic cross-linking of concentration was elevated in OM vs. in YM, which may be a mechanism to maintain the mechanical properties of tendon with aging.
机译:与年龄有关的肌肉质量和力量下降会损害老年人的日常生活功能。但是,肌腱特性是否也会随着年龄的增长而变差,这一点仍然未知。胶原蛋白分子的交联为肌腱原纤维提供了结构完整性,并且在动物中已显示其随着年龄的变化而变化,但从未在人体中进行过研究。在这项研究中,我们检查了老年人(OM)和年轻人(YM)体内mechanical骨肌腱的力学性能,吡啶啉和戊糖苷交联以及胶原蛋白浓度。七个OM(67 +/- 3年,86 +/- 10公斤)和10 YM(27 +/- 2年,81 +/- 8公斤),身体活动水平相似(OM 5 +/- 6 h /周,YM 5 +/- 2小时/周)进行了检查。 MRI用于评估整个肌腱尺寸。在倾斜等距收缩过程中,同时使用力和超声测量来评估肌腱的机械性能。进行经皮肌腱活检,并分析羟基吡啶吡啶啉(HP),赖氨吡啶啉(LP),戊糖苷和胶原蛋白浓度。我们发现OM和YM之间的肌腱尺寸或力学性能没有显着差异。 OM中的胶原蛋白浓度低于YM中的胶原蛋白浓度(0.49 +/- 0.27 vs. 0.73 +/- 0.14 mg / mg干重; P <0.05)。 OM中的HP浓度高于YM(898 +/- 172对645 +/- 183 mmol / mol; P <0.05)。 OM中的LP浓度高于YM(49 +/- 38 vs. 16 +/- 8 mmol / mol; P <0.01),OM中的戊糖苷浓度高于YM(73 +/- 13 vs. 11) +/- 2 mmol / mol; P <0.01)。这些横截面数据增加了年龄可能不会显着影响体内人tell腱的尺寸或力学性能的可能性。胶原蛋白的浓度降低了,而OM与YM相比,酶的和非酶的交联浓度都增加了,这可能是保持肌腱机械性能随年龄增长的一种机制。

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