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正常和营养不良(mdx)小鼠离体胃制备物中的自发机械活动和诱发反应。

Spontaneous mechanical activity and evoked responses in isolated gastric preparations from normal and dystrophic (mdx) mice.

作者信息

Mulè F, Serio R

机构信息

Dipartimento di Biologia cellulare e dello Sviluppo, Università di Palermo, Italia.

出版信息

Neurogastroenterol Motil. 2002 Dec;14(6):667-75. doi: 10.1046/j.1365-2982.2002.00368.x.

Abstract

This study examined whether alterations of the spontaneous and evoked mechanical activity are present in the stomach of the mdx mouse, the animal model for Duchenne muscular dystrophy. The gastric mechanical activity from whole-organ of normal and mdx mice was recorded in vitro as changes of intraluminal pressure. All gastric preparations developed spontaneous tone and phasic contractions, although the tone of the mdx preparations was significantly greater. Atropine reduced the tone of the two preparations by the same degree. Nomega-nitro-l-arginine methyl ester (l-NAME) significantly increased the tone and spontaneous contractions only in the stomach from normal animals, but did not affect on the mdx preparations. Effects ofl-NAME on tone and contractility were preserved in the presence of tetrodotoxin. In both types of tissues electrical field stimulation (EFS) induced a biphasic response: cholinergic contraction followed by slow relaxation. In nonadrenergic noncholinergic conditions, EFS induced a rapid relaxation followed by a slow component in both types of tissues. l-NAME abolished the rapid component, reduced the slow component and unmasked tachychinergic contractions. No significant difference was found in evoked responses. The enteric neurotransmission is preserved in mdx gastric preparations, although alterations in the ongoing production of nitric oxide are present.

摘要

本研究检测了杜氏肌营养不良症动物模型mdx小鼠的胃中是否存在自发和诱发的机械活动改变。通过记录管腔内压力变化,在体外对正常小鼠和mdx小鼠全胃的机械活动进行了检测。所有胃标本均出现自发张力和阶段性收缩,尽管mdx标本的张力明显更大。阿托品使两种标本的张力降低程度相同。N-硝基-L-精氨酸甲酯(L-NAME)仅使正常动物胃的张力和自发收缩显著增加,但对mdx标本无影响。在存在河豚毒素的情况下,L-NAME对张力和收缩性的作用依然存在。在两种组织中,电场刺激(EFS)均诱发双相反应:胆碱能收缩后缓慢舒张。在非肾上腺素能非胆碱能条件下,EFS在两种组织中均诱发快速舒张,随后是缓慢成分。L-NAME消除了快速成分,减弱了缓慢成分,并暴露了速激肽能收缩。诱发反应未发现显著差异。尽管存在一氧化氮持续生成的改变,但mdx胃标本中的肠神经传递仍得以保留。

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