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Dissociation between electrical and mechanical responses to nitrergic stimulation in the canine gastric fundus

机译:犬胃底对硝化刺激的电气和机械反应之间的分离

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摘要

We examined the relationships between membrane potential, intracellular [Ca2+] ([Ca2+]i), and tension in muscles of the canine gastric fundus in response to nitrergic stimulation by NO donors and electrical field stimulation (EFS) of intrinsic enteric inhibitory neurons when adrenergic and cholinergic responses were blocked.NO donors reduced [Ca2+]i and tension in a concentration-dependent manner. A close relationship was noted between these parameters.In terms of the [Ca2+]vs. force relationship, relaxation responses to EFS differed from responses to NO donors. EFS resulted in smaller decreases in [Ca2+]i to produce a given relaxation compared with responses to NO donors. Thus, muscles stimulated with EFS were less sensitive to [Ca2+]i than muscles stimulated with exogenous NO.When membrane potential, [Ca2+]i and tension were monitored simultaneously in the same muscles, a temporal dissociation was noted between the electrical responses and changes in [Ca2+]i and tension. Brief electrical responses were associated with more sustained changes in [Ca2+]i and tension.Further dissociation between electrical and mechanical effects was noted. Changes in [Ca2+]i and tension caused by sodium nitroprusside and EFS were blocked by arginine analogues and by oxyhaemoglobin, but electrical responses were unaffected. 1H-[1,2,4]oxadiazolo[4,3-a]quinoxalin-1-one (ODQ), an inhibitor of soluble guanylyl cyclase, also blocked the effects of nitrergic stimulation on [Ca2+]i and tension, without affecting hyperpolarization. Thus, in the presence of continued hyperpolarization, the reductions in [Ca2+]i and tension caused by nitrergic stimulation were blocked.Block of hyperpolarization in response to nitrergic stimulation with tetrapentylammonium chloride (TPEA) had relatively little effect on the [Ca2+]i and tension responses. Thus, hyperpolarization is not required for nitrergic effects on [Ca2+]i and tension.In summary, reduction in [Ca2+]i and tension in response to nitrergic stimulation of the canine gastric fundus does not depend upon electrical hyperpolarization. Non-electrical mechanisms such as enhanced uptake of Ca2+ by the sarcoplasmic reticulum or reduction in the Ca2+ sensitivity of the contractile apparatus may be the primary mechanisms mediating nitrergic responses in these muscles.
机译:我们检查了膜电位,细胞内[Ca2 +]([Ca2 +] i)和犬胃底肌肉对NO供体的硝化刺激和肾上腺素能抑制内在肠抑制性神经元的电场刺激(EFS)的反应之间的关系。没有供体以浓度依赖的方式降低[Ca2 +] i和张力。这些参数之间存在密切的关系。就[Ca2 +] vs而言。力关系方面,对EFS的放松反应与对NO供体的反应不同。与对NO供体的反应相比,EFS导致[Ca2 +] i的减少较小,从而产生给定的弛豫。因此,用EFS刺激的肌肉对[Ca2 +] i的敏感性不如用外源NO刺激的肌肉。当在同一肌肉中同时监测膜电位,[Ca2 +] i和张力时,发现电反应和变化之间存在时间解离[Ca2 +] i和张力。短暂的电响应与[Ca2 +] i和张力的更持续变化有关。注意到电效应和机械效应之间的进一步分离。精氨酸类似物和氧合血红蛋白可阻止硝普钠和EFS引起的[Ca2 +] i和张力的变化,但电响应不受影响。可溶性鸟苷酸环化酶抑制剂1H- [1,2,4]恶二唑并[4,3-a]喹喔啉-1-酮(ODQ)也阻断了硝化刺激对[Ca2 +] i和张力的作用,而没有影响超极化。因此,在持续超极化的情况下,由硝化刺激引起的[Ca2 +] i和张力的减少被阻止。氯化四戊铵(TPEA)对硝化刺激产生的超极化阻滞对[Ca2 +] i和紧张反应。因此,对于[Ca2 +] i和张力的硝化作用,不需要进行超极化。总之,响应犬胃底的硝化刺激,[Ca2 +] i和张力的降低并不取决于电超极化。非电机制,例如肌浆网对Ca2 +的吸收增加或收缩装置对Ca2 +的敏感性降低,可能是介导这些肌肉中硝化反应的主要机制。

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