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The effect of chronic skeletal muscle stimulation on capillary growth in the rat: are sensory nerve fibres involved?

机译:慢性骨骼肌刺激对大鼠毛细血管生长的影响:感觉神经纤维参与其中吗?

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Indirect chronic electrical stimulation of skeletal muscle activates not only efferent but also afferent nerve fibres. To investigate effects specific to this on capillary growth, one of the earliest changes, cell proliferation and capillary ultrastructure were studied in ankle flexors of rats with and without deafferentation of the stimulated side. Two weeks after preganglionic section of dorsal roots L4-L6, the peroneal nerve was stimulated (10 Hz, 8 h day(-1)) for 2 or 7 days. Proliferating nuclei labelled by bromodeoxyuridine or proliferating cell nuclear antigen staining were colocalized to alkaline phosphatase-stained capillaries (Lc) or other interstitial nuclei (Li) in frozen sections of extensor digitorum longus. Capillary fine structure was examined in extensor hallucis proprius by transmission electron microscopy. The stimulation-induced increase in capillary and interstitial proliferation (Lc 9.9 +/- 1.9 %, Li 8.8 +/- 2.1 % vs. Lc 2.6 +/- 0.4 %, Li 1.9 +/- 0.3 % in controls, P < 0.05) was depressed at 2 days by dorsal root section (Lc 4.8 +/- 0.7 %, Li 3.2 +/- 0.9 %, P < 0.05), an effect likely to be mainly on fibroblasts; no depression was seen at 7 days. Dorsal root section reduced stimulation-induced capillary endothelial swelling at both time points. In contralateral muscles of intact rats, stimulation increased interstitial cell proliferation and capillary swelling, both effects being eliminated by dorsal root section. Capillary growth induced by stimulation (24 % increase in capillary : fibre ratio at 7 days) was unaffected by deafferentation. The reduction in capillary ultrastructural changes and interstitial proliferation in both stimulated and contralateral muscles implies that stimulation of afferent fibres leads directly to release of humoral factors and/or activation via dorsal roots of fibres that release humoral substances. Contralateral muscles are an inadequate control for the effects of chronic stimulation in the intact animal.
机译:骨骼肌的间接慢性电刺激不仅激活传入神经纤维,而且激活传入神经纤维。为了研究特定于其对毛细血管生长的影响,研究了在有或没有刺激侧脱咖啡因的大鼠的踝屈肌中最早的变化,细胞增殖和毛细血管超微结构之一。背根L4-L6神经节前切开后两周,刺激腓骨神经(10 Hz,8 h day(-1))持续2或7 d。用溴脱氧尿嘧啶核苷标记的增殖核或增殖细胞核抗原染色在趾长伸肌冰冻切片中共定位于碱性磷酸酶染色的毛细血管(Lc)或其他间质核(Li)。透射电镜观察伸侧幻觉中的毛细血管结构。刺激引起的毛细血管和间质增生增加(Lc 9.9 +/- 1.9%,Li 8.8 +/- 2.1%vs. Lc 2.6 +/- 0.4%,对照组Li 1.9 +/- 0.3%,P <0.05)在第2天被背根切片压抑(Lc 4.8 +/- 0.7%,Li 3.2 +/- 0.9%,P <0.05),作用可能主要是对成纤维细胞的影响; 7天未见抑郁症。在两个时间点,背根切片均减少了刺激引起的毛细血管内皮肿胀。在完整大鼠的对侧肌肉中,刺激增加了间质细胞的增殖和毛细血管肿胀,这两种作用都可以通过背根切片消除。刺激引起的毛细血管生长(7天时毛细血管:纤维比率增加24%)不受脱除咖啡因的影响。受刺激和对侧肌肉的毛细血管超微结构变化和间质增生的减少表明,传入纤维的刺激直接导致体液因子的释放和/或通过释放体液的纤维的背根的激活。对侧肌肉对于完整动物的慢性刺激作用没有足够的控制。

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