Hyperbaric oxygen treatment has different effects on nerve regeneration in acellular nerve and muscle grafts.

Y. Nishiura, T. Haapaniemi, L. Dahlin
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引用次数: 10

Abstract

Effects of hyperbaric oxygen treatment (HBO) on nerve regeneration in acellular nerve and muscle grafts were investigated in rats. Nerve and muscle grafts were made acellular by freeze-thawing and the obtained grafts were used to bridge a 10-mm gap in the sciatic nerve on the left and right sides, respectively. Rats were treated with HBO (100% oxygen for 90 minutes at 2.5 atmospheres absolute pressure ATA) twice a day for 7 days. Axonal outgrowth, Schwann cell migration and invasion of macrophages were examined 10 days after the graft procedure by staining neurofilaments, S-100 proteins and the macrophage antibodies ED1 and ED2, respectively. Axonal outgrowth and Schwann cell migration in acellular nerve grafts were superior to that found in the acellular muscle grafts. However, there was no difference between HBO-treated and nontreated rats in acellular nerve grafts. Such a difference was found in acellular muscle grafts concerning both axonal outgrowth and Schwann cell migration from the proximal nerve end. No differences in the content of macrophages or neovascularization (alkaline phosphatase staining) in either of the grafts and treatments were seen. It is concluded that there is a differential effect of HBO-treatment in acellular nerve and muscle grafts and that HBO-treatment has no effect on the regeneration process in acellular nerve grafts, in contrast to fresh cellular nerve grafts where a beneficial effect has previously been reported.
高压氧治疗对脱细胞神经和肌肉移植神经再生的影响不同。
研究高压氧对大鼠脱细胞神经和肌肉移植神经再生的影响。神经和肌肉移植物通过冻融制成脱细胞移植物,获得的移植物分别在左侧和右侧坐骨神经上架桥10mm间隙。大鼠接受HBO(100%氧气,2.5个大气压,90分钟)治疗,每天2次,连续7天。移植后10天,分别通过染色神经丝、S-100蛋白和巨噬细胞抗体ED1和ED2检测轴突生长、雪旺细胞迁移和巨噬细胞侵袭情况。脱细胞神经移植物的轴突生长和雪旺细胞迁移优于脱细胞肌肉移植物。然而,hbo处理和未处理的大鼠在脱细胞神经移植方面没有差异。这种差异在无细胞肌移植物中被发现,涉及轴突生长和近端神经末梢的雪旺细胞迁移。巨噬细胞的含量和新生血管(碱性磷酸酶染色)在移植物和处理中均无差异。结论是,hbo处理对脱细胞神经和肌肉移植物的影响是不同的,hbo处理对脱细胞神经移植物的再生过程没有影响,而新鲜细胞神经移植物则有有益的影响。
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