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一氧化氮在猫气道舒张及兴奋性神经效应器传递中的可能作用。

The possible role of nitric oxide in relaxations and excitatory neuroeffector transmission in the cat airway.

作者信息

Tanaka H, Jing L, Takahashi S, Ito Y

机构信息

Department of Pharmacology and Anesthesiology, Faculty of Medicine, Kyushu University, Fukuoka, Japan.

出版信息

J Physiol. 1996 Jun 15;493 ( Pt 3)(Pt 3):785-91. doi: 10.1113/jphysiol.1996.sp021422.

Abstract
  1. To study the possible role of nitric oxide (NO free radical; NO) or NO-containing compounds in the non-adrenergic, non-cholinergic (NANC) relaxations, we observed the effects of carboxy-2-phenyl-4, 4, 5, 5-tetramethyl-imidazoline-1-oxyl-3-oxide (C-PTIO; a newly synthesized NO scavenger) on NANC relaxations in the cat airway. In addition, we also observed the effects of C-PTIO on excitatory junction potentials (EJPs), since NO has a prejunctional action on transmitter release. 2. Nitrosocystine (Cys-NO) (10(-7)-10(-3) M) dose-dependently relaxed the bronchial tissue in the presence of 5-HT, atropine and guanethidine and C-PTIO (10(-4) M) shifted the concentration-response curve of the Cys-NO to the right. 3. Electrical field stimulation (EFS) evoked biphasic NANC relaxations in the small bronchi of the cat. In general, C-PTIO suppressed non-selectively both the first and second components of the NANC relaxations to a similar extent. However, in some bronchial preparations C-PTIO (10(-4) M) selectively suppressed the first component of the NANC relaxation to approximately 50% of the initial value, enhancing the amplitude of the second component of the NANC relaxations. 4. After pretreatment of the bronchial tissues with alpha-chymotrypsin (1 unit ml-1) for 30 min in order to inhibit any response to peptides, EFS evoked monophasic NANC relaxation. C-PTIO (10(-5) - 10(-4) M) dose-dependently suppressed, and at a concentration of 10(-4) M almost halved, the amplitude of NANC relaxation. Additional application of L-NAME further reduced the C-PTIO-resistant NANC relaxation to 20-30% of the initial value. 5. C-PTIO (10(-4) M) enhanced the EJP amplitude evoked by single EFS in the trachea but not in the bronchi. However, C-PTIO enhanced the summation of the EJPs to repeated stimulation to a similar extent in the tracheal and bronchial tissues. Simultaneous application of C-PTIO and L-NAME did not further enhance the summation. 6. These results indicate that NO. and NO-containing compounds are involved in the L-NAME-sensitive NANC relaxation in the cat airway, and that only NO. has a prejunctional action which inhibits excitatory neuroeffector transmission.
摘要
  1. 为研究一氧化氮(NO自由基;NO)或含NO的化合物在非肾上腺素能、非胆碱能(NANC)舒张中的可能作用,我们观察了羧基-2-苯基-4,4,5,5-四甲基咪唑啉-1-氧基-3-氧化物(C-PTIO;一种新合成的NO清除剂)对猫气道NANC舒张的影响。此外,我们还观察了C-PTIO对兴奋性接头电位(EJP)的影响,因为NO对递质释放有接头前作用。2. 亚硝基胱氨酸(Cys-NO)(10⁻⁷ - 10⁻³ M)在5-羟色胺、阿托品和胍乙啶存在的情况下剂量依赖性地舒张支气管组织,且C-PTIO(10⁻⁴ M)使Cys-NO的浓度-反应曲线右移。3. 电场刺激(EFS)在猫的小支气管中诱发双相NANC舒张。一般来说,C-PTIO非选择性地抑制NANC舒张的第一和第二成分,程度相似。然而,在一些支气管标本中,C-PTIO(10⁻⁴ M)选择性地将NANC舒张的第一成分抑制到初始值的约50%,同时增强了NANC舒张第二成分的幅度。4. 为抑制对肽的任何反应,用α-糜蛋白酶(1单位/毫升)对支气管组织预处理30分钟后,EFS诱发单相NANC舒张。C-PTIO(10⁻⁵ - 10⁻⁴ M)剂量依赖性地抑制NANC舒张幅度,在浓度为10⁻�⁴ M时几乎使其减半。额外应用L-NAME进一步将对C-PTIO有抗性的NANC舒张降低到初始值的20 - 30%。5. C-PTIO(10⁻⁴ M)增强了单次EFS在气管而非支气管中诱发的EJP幅度。然而,C-PTIO在气管和支气管组织中对重复刺激诱发的EJP总和增强程度相似。同时应用C-PTIO和L-NAME并未进一步增强总和。6. 这些结果表明,NO和含NO的化合物参与猫气道中对L-NAME敏感的NANC舒张,且只有NO具有接头前作用,抑制兴奋性神经效应传递。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa9d/1159025/5a3c2d4a38ff/jphysiol00291-0174-a.jpg

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