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首页> 外文期刊>American Journal of Physiology >Reversal by relaxin of altered ileal spontaneous contractions in dystrophic (mdx) mice through a nitric oxide-mediated mechanism.
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Reversal by relaxin of altered ileal spontaneous contractions in dystrophic (mdx) mice through a nitric oxide-mediated mechanism.

机译:松弛素通过一氧化氮介导的机制逆转营养不良(mdx)小鼠中回肠自发性收缩的改变。

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摘要

Altered nitric oxide (NO) production/release is involved in gastrointestinal motor disorders occurring in dystrophic (mdx) mice. Since the hormone relaxin (RLX) can upregulate NO biosynthesis, its effects on spontaneous motility and NO synthase (NOS) expression in the ileum of dystrophic (mdx) mice were investigated. Mechanical responses of ileal preparations were recorded in vitro via force-displacement transducers. Evaluation of the expression of NOS isoforms was performed by immunohistochemistry and Western blot. Normal and mdx mice were distributed into three groups: untreated, RLX pretreated, and vehicle pretreated. Ileal preparations from the untreated animals showed spontaneous muscular contractions whose amplitude was significantly higher in mdx than in normal mice. Addition of RLX, alone or together with l-arginine, to the bath medium depressed the amplitude of the contractions in the mdx mice, thus reestablishing a motility pattern typical of the normal mice. The NOS inhibitor N(G)-nitro-L-arginine (L-NNA) or the guanylate cyclase inhibitor ODQ reversed the effects of RLX. In RLX-pretreated mdx mice, the amplitude of spontaneous motility was reduced, thus resembling that of the normal mice, and NOS II expression in the muscle coat was increased in respect to the vehicle-pretreated mdx animals. These results indicate that RLX can reverse the altered ileal motility of mdx mice to a normal pattern, likely by upregulating NOS II expression and NO biosynthesis in the ileal smooth muscle.
机译:一氧化氮(NO)产生/释放的改变与营养不良(mdx)小鼠中发生的胃肠道运动疾病有关。由于激素松弛素(RLX)可以上调NO的生物合成,因此研究了其对营养不良(mdx)小鼠回肠中自发运动和NO合酶(NOS)表达的影响。回肠制剂的机械反应通过力-位移传感器在体外记录。通过免疫组织化学和蛋白质印迹来评估NOS同工型的表达。正常和mdx小鼠分为三组:未治疗,RLX预处理和媒介物预处理。未处理动物的回肠制剂显示出自发性肌肉收缩,其mdx振幅明显高于正常小鼠。将RLX单独或与l-精氨酸一起添加到浴液中可降低mdx小鼠的收缩幅度,从而重建正常小鼠的典型运动模式。 NOS抑制剂N(G)-硝基-L-精氨酸(L-NNA)或鸟苷酸环化酶抑制剂ODQ逆转了RLX的作用。在RLX预处理的mdx小鼠中,自发运动的幅度降低,因此与正常小鼠相似,并且相对于媒介物预处理的mdx动物,其肌层中的NOS II表达增加。这些结果表明,RLX可能通过上调回肠平滑肌中的NOS II表达和NO生物合成,将mdx小鼠回肠运动的改变逆转为正常模式。

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