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斑点叉尾鮰肠道的非肾上腺素能非胆碱能(NANC)兴奋反应。

Non-adrenergic non-cholinergic (NANC) excitatory response of the channel catfish intestine.

作者信息

Venugopalan C S, Holmes E P, Jarboe H H, Kleinow K M

机构信息

Department of Veterinary Physiology, Pharmacology and Toxicology, School of Veterinary Medicine, Louisiana State University, Baton Rouge 70803.

出版信息

J Auton Pharmacol. 1994 Jun;14(3):229-38. doi: 10.1111/j.1474-8673.1994.tb00604.x.

DOI:10.1111/j.1474-8673.1994.tb00604.x
PMID:7929475
Abstract
  1. Optimal parameters for electrical field stimulation (EFS) of catfish pyloric and middle intestinal segments were determined (15 Hz, 60 V) from a range of frequencies (5-45 Hz) and voltages (40-120 V) using a modified Magnus' method. Contractile responses were produced by EFS which were reproducible and showed no significant difference between the tissues. 2. The contractile cholinergic responses of the tissues to carbachol and acetylcholine (ACh) were blocked by atropine on an equimolar concentration, whereas, these responses were enhanced in the presence of neostigmine, and acetylcholinesterase inhibitor. 3. Adrenergic responses were examined with noradrenaline (NA). NA produced contraction of the segments only, at a concentration of 10(-4) M. Among the various adrenoceptors, beta-adrenoceptor stimulation produced a weak relaxation whereas, both alpha 1- and alpha 2-adrenoceptor stimulation produced contractions, of which alpha 2-induced contraction was of greater magnitude. The beta, alpha 1 and alpha 2 responses were blocked by their respective blocking agents propranolol, prazosin and yohimbine. 4. The autonomic components of the response to EFS were determined by using selected cholinergic and adrenergic antagonists separately or collectively. Cholinergic blockade with atropine did not produce a significant blockade of the EFS-induced response. Similarly, blockade of beta-adrenoceptors with propranolol did not modulate the contractile response to EFS to any significant level. Blockade by prazosin or yohimbine did not significantly change the contractile response to EFS. After a complete blockade of the adrenergic and cholinergic divisions, the intestinal segments still showed a contractile response to EFS which was not significantly different from the control response. This indicated the presence of a non-adrenergic non-cholinergic (NANC) response. 5. Tetrodotoxin, at 10(-6) M, significantly blocked the EFS-induced NANC response suggesting a neurogenic origin for the response. 6. The present study indicated that the EFS-induced response of the catfish intestinal segments is predominantly NANC-e in nature suggesting an important role for it in the regulation of intestinal motility.
摘要
  1. 使用改良的马格努斯方法,在一系列频率(5 - 45赫兹)和电压(40 - 120伏)范围内确定了鲶鱼幽门和中段肠段电场刺激(EFS)的最佳参数(15赫兹,60伏)。EFS产生的收缩反应具有可重复性,且组织间无显著差异。2. 组织对卡巴胆碱和乙酰胆碱(ACh)的收缩性胆碱能反应在等摩尔浓度下被阿托品阻断,然而,在新斯的明(一种乙酰胆碱酯酶抑制剂)存在时,这些反应增强。3. 用去甲肾上腺素(NA)检测肾上腺素能反应。NA仅在浓度为10⁻⁴ M时使肠段收缩。在各种肾上腺素能受体中,β - 肾上腺素能受体刺激产生微弱舒张,而α1 - 和α2 - 肾上腺素能受体刺激均产生收缩,其中α2诱导的收缩幅度更大。β、α1和α2反应分别被其各自的阻断剂普萘洛尔、哌唑嗪和育亨宾阻断。4. 通过分别或联合使用选定的胆碱能和肾上腺素能拮抗剂来确定对EFS反应的自主神经成分。阿托品的胆碱能阻断并未显著阻断EFS诱导的反应。同样,普萘洛尔对β - 肾上腺素能受体的阻断也未将对EFS的收缩反应调节到任何显著水平。哌唑嗪或育亨宾的阻断并未显著改变对EFS的收缩反应。在完全阻断肾上腺素能和胆碱能分支后,肠段对EFS仍表现出收缩反应,与对照反应无显著差异。这表明存在非肾上腺素能非胆碱能(NANC)反应。5. 10⁻⁶ M的河豚毒素显著阻断了EFS诱导的NANC反应,表明该反应起源于神经源性。6. 本研究表明,鲶鱼肠段EFS诱导的反应本质上主要是NANC - e,表明其在肠道运动调节中起重要作用。

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