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脉冲电磁场刺激兔实验性韧带缺损处的胶原蛋白生成与成熟

Collagen production and maturation at the experimental ligament defect stimulated by pulsing electromagnetic fields in rabbits.

作者信息

Lin Y, Nishimura R, Nozaki K, Sasaki N, Kadosawa T, Goto N, Date M, Takeuchi A

机构信息

Department of Veterinary Surgery, Veterinary Hospital, University of Tokyo, Japan.

出版信息

J Vet Med Sci. 1993 Aug;55(4):527-31. doi: 10.1292/jvms.55.527.

Abstract

Eighty rabbits receiving the square resection (4 x 4 mm) of both patellar ligaments in full thickness at their center were divided into 4 groups, and each group (20 rabbits) were electromagnetically stimulated with different magnetic intensities, 0 (control group), 2, 10, or 50 gauss (G), for 6 hr daily. Pulse frequency and pulse width were 10 Hz and 25 microseconds, respectively. Five animals of each group were sacrificed weekly from 1st to 4th week after operation and the defect tissue was collected for biochemical and ultrastructural evaluations. Before sacrificing, the blood flow of the central portion of patellar defects were measured. Significant increases in blood flow at the defect were observed in 50 G group compared to those of other groups from 2 to 4 weeks after operation. The collagen content in PEMFs groups showed a significant increase compared to that of control group. Furthermore, those increases were higher according to the increase in magnetic intensity. Electronmicroscopically, massive developmental rough endoplasmic reticulum was seen in the fibroblasts at 2 weeks after operation in 50 G group compared to other groups, which suggests the more active collagen production in this group. These results suggest that PEMFs enhanced the blood flow and increased the fibroblasts at the defect. At the same time, PEMFs directly stimulated the collagen production from the fibroblasts, thus accelerate the healing process of the ligament.

摘要

80只兔子在髌韧带中心进行全层4×4毫米方形切除术后,被分为4组,每组(20只兔子)每天接受不同磁场强度(0高斯为对照组,2、10或50高斯)的电磁刺激,持续6小时。脉冲频率和脉冲宽度分别为10赫兹和25微秒。术后第1至4周,每组每周处死5只动物,收集缺损组织进行生化和超微结构评估。处死前,测量髌韧带缺损中心部分的血流量。与其他组相比,术后2至4周,50高斯组缺损处血流量显著增加。与对照组相比,脉冲电磁场组的胶原蛋白含量显著增加。此外,随着磁场强度的增加,这些增加更为明显。电子显微镜观察发现,与其他组相比,术后2周时50高斯组的成纤维细胞中可见大量发育的粗面内质网,这表明该组胶原蛋白生成更为活跃。这些结果表明,脉冲电磁场增强了缺损处的血流量,增加了成纤维细胞数量。同时,脉冲电磁场直接刺激成纤维细胞产生胶原蛋白,从而加速韧带的愈合过程。

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