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前交叉韧带断裂后人体股内侧肌代谢特征和纤维直径的纤维类型相关变化。

Fibre type related changes in the metabolic profile and fibre diameter of human vastus medialis muscle after anterior cruciate ligament rupture.

作者信息

Stockmar Christoph, Lill Helmut, Trapp Almut, Josten Christoph, Punkt Karla

机构信息

Department of Trauma, Reconstructive and Plastic Surgery, University of Leipzig, Liebigstrasse 20, D-04103 Leipzig, Germany.

出版信息

Acta Histochem. 2006;108(5):335-42. doi: 10.1016/j.acthis.2006.05.005. Epub 2006 Aug 17.

Abstract

Vastus medialis muscles of patients with chronic anterior instability of the knee after anterior cruciate ligament rupture were analysed to investigate changes in defined muscle fibres of the diseased leg in comparison to the healthy leg of the same patient. Metabolic and morphological parameters were obtained by cytophotometrical measurements of the activities of succinate dehydrogenase (a marker of oxidative metabolism) and glycerol-3-phosphate dehydrogenase (a marker of glycolytic metabolism) of slow-oxidative (SO), fast-oxidative glycolytic (FOG) and fast-glycolytic (FG) fibre types in serial sections and by measuring the minimal fibre diameters of type I (slow) and type II (fast) fibres. We found decreased glycolytic activity and a shift to more oxidative metabolism in each fibre type suggesting diminished fast force and shift to endurance force development. The latter was interpreted as a sign of active compensation for the knee instability. Significantly decreased minimal fibre diameters to 85.9% in type I fibres, and to 88.7% in type II fibres of the diseased muscle were measured, indicating the fibre atrophy. Our findings suggest that the atrophied muscle fibres of the affected vastus medialis muscle adapt to the altered conditions by changing their metabolic profile. Muscle fibres of different types were found to be affected similarly.

摘要

对前交叉韧带断裂后患有慢性膝关节前向不稳的患者的股内侧肌进行分析,以研究患侧腿部特定肌纤维与同一名患者健侧腿部相比的变化。通过对连续切片中慢氧化(SO)、快氧化糖酵解(FOG)和快糖酵解(FG)纤维类型的琥珀酸脱氢酶(氧化代谢标志物)和甘油-3-磷酸脱氢酶(糖酵解代谢标志物)活性进行细胞光度测量,并测量I型(慢)和II型(快)纤维的最小纤维直径,获得代谢和形态学参数。我们发现每种纤维类型的糖酵解活性降低,且向更多的氧化代谢转变,这表明快速力量减弱,向耐力力量发展转变。后者被解释为对膝关节不稳进行主动代偿的迹象。测量发现,患侧肌肉的I型纤维最小纤维直径显著降低至85.9%,II型纤维降低至88.7%,表明存在纤维萎缩。我们的研究结果表明,受影响的股内侧肌萎缩的肌纤维通过改变其代谢特征来适应改变的状况。发现不同类型的肌纤维受到的影响相似。

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