首页> 外文期刊>Knee surgery, sports traumatology, arthroscopy: official journal of the ESSKA >Freezing causes changes in the meniscus collagen net: a new ultrastructural meniscus disarray scale.
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Freezing causes changes in the meniscus collagen net: a new ultrastructural meniscus disarray scale.

机译:冷冻导致半月板胶原蛋白网的变化:一种新的超微结构半月板混乱规模。

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Alterations in meniscal permeability leading to nutritional deficit have been suggested as a cause of shrinkage in meniscal transplantation. The purpose of this study was to ascertain how freezing, one of the most common procedures used to preserve meniscal allografts, alters the collagen's architecture. Twenty-six fresh human external menisci were analyzed with transmission electron microscopy. Thirteen of them were previously frozen at -80 degrees C while the rest were used as controls. A new scale of the collagen meniscal architecture was proposed according to the collagen's periodicity and degree of disruption, loss of banding, degree of collagen packing, fibril size variability and its intrafibrilar oedema. Each meniscus was scored from 0 to 7. Subsequently they were classified in grades ranging from a normal state (grade I; 0-2 points) to severe disarray (grade III; 5-7 points). The fibril collagen diameters of those menisci which had been previously frozen showed an average size in the longitudinal section of 14.26 nm, whereas it was 17.28 nm in the menisci used as controls (p=0.019). In the transverse section, the frozen menisci averaged 13.14 and 16.93 nm in the controls (p=0.003). Samples of the 13 previously frozen menisci were classified as grade III in 61.54% of the cases. In the control group, all the menisci were classified either as grade I or II. The frozen menisci averaged 4.85 points, whereas the control group did so at 2.46 (p<0.001). The fibril diameters in frozen menisci showed a thinner diameter and had a higher degree of disarray. Therefore, the results suggest that the freezing process alters the menisci's collagen net. This could partially explain the pathological changes found in shrunken menisci after transplantation.
机译:半月板通透性的变化导致营养缺乏已被认为是半月板移植收缩的原因。这项研究的目的是确定冷冻(保存半月形同种异体移植物最常用的程序之一)如何改变胶原蛋白的结构。用透射电子显微镜分析了二十六个新鲜的人外部半月板。其中的13个先前已在-80摄氏度下冷冻,其余的则用作对照。根据胶原蛋白的周期性和破坏程度,条带丢失,胶原蛋白堆积程度,原纤维大小变异性及其纤维内水肿,提出了一种新的胶原蛋白半月板结构规模。每个半月板的评分为0到7。随后将其分为从正常状态(I级; 0-2分)到严重混乱(III级; 5-7分)的等级。先前冷冻的半月板的原纤维胶原蛋白直径在纵向截面中显示出平均尺寸为14.26nm,而在用作对照的半月板中其平均尺寸为17.28nm(p = 0.019)。在横截面中,对照的冷冻半月板平均为13.14nm和16.93nm(p = 0.003)。在13.54%的病例中,先前冷冻的13个半月板的样本被分类为III级。在对照组中,所有的半月板都被分为I级或II级。冰冻半月板平均为4.85点,而对照组为2.46(p <0.001)。冷冻半月板中的原纤维直径显示出更薄的直径,并且具有更高的混乱度。因此,结果表明冷冻过程改变了半月板的胶原网。这可以部分解释移植后半月板缩小后发现的病理变化。

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