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ATP and nitric oxide: inhibitory NANC neurotransmitters in the longitudinal muscle-myenteric plexus preparation of the rat ileum.

机译:ATP和一氧化氮:大鼠回肠纵向肌肉-肠系膜神经丛制剂中的抑制性NANC神经递质。

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摘要

1. The nature of neurotransmitter(s) involved in non-adrenergic non-cholinergic (NANC) relaxations induced by electrical stimulation (10 s trains, 1-8 Hz) was investigated in the precontracted longitudinal muscle-myenteric plexus preparation of the rat ileum. 2. Electrical stimulation of the tissue induced complex responses, consisting of a primary contraction, a primary relaxation, an off-relaxation and a rebound contraction, which were all tetrodotoxin(TTX)-sensitive. 3. Vasoactive intestinal polypeptide (VIP) and carbon monoxide (CO) did not induce relaxations. alpha-Chymotrypsin did not reduce the relaxations induced by electrical stimulation, while zinc protoporphyrin IX had non-specific effects. 4. Nitric oxide (NO) induced concentration-dependent relaxations. NG-nitro-L-arginine methylester (L-NAME) abolished the primary contractions and off-relaxations, while it partially reduced the primary relaxations. 5. ATP induced relaxations and ATP-desensitization of the tissues partially reduced the primary relaxations. Suramin and reactive blue 2 did not consistently influence the primary relaxations. 6. The ATP-induced relaxations were not influenced by L-NAME or TTX. The inhibitory effect of ATP-desensitization and L-NAME did not summate. 7. The cyclic AMP content of the tissue did not increase upon electrical stimulation or after addition of NO or ATP. The cyclic GMP content of the tissue increased upon electrical stimulation and addition of NO, but not after addition of ATP. 8. It is concluded that the relaxation induced by electrical stimulation consists of two types of responses. The off-relaxation is completely nitrergic, while the primary relaxation is mediated by NO, ATP and an as yet unknown transmitter which is not VIP or CO.
机译:1.在大鼠回肠的预收缩纵向肌-肌层神经丛制剂中研究了电刺激(10 s列,1-8 Hz)引起的非肾上腺能非胆碱能(NANC)松弛所涉及的神经递质的性质。 。 2.对组织的电刺激引起复杂的反应,包括对河豚毒素(TTX)敏感的初次收缩,初次松弛,松弛放松和反弹收缩。 3.血管活性肠多肽(VIP)和一氧化碳(CO)不会引起松弛。 α-胰凝乳蛋白酶不能减少电刺激引起的松弛,而原卟啉IX锌则具有非特异性作用。 4.一氧化氮(NO)引起浓度依赖性弛豫。 NG-硝基-L-精氨酸甲酯(L-NAME)消除了主要的收缩和松弛,而部分减少了主要的松弛。 5. ATP引起的舒张和组织的ATP脱敏部分减少了主要舒张。苏拉明和活性蓝2并不能始终如一地影响初级松弛。 6. ATP诱导的弛豫不受L-NAME或TTX的影响。 ATP脱敏和L-NAME的抑制作用未加总。 7.在电刺激下或添加NO或ATP后,组织的循环AMP含量没有增加。组织的循环GMP含量在电刺激和添加NO后增加,但在添加ATP之后没有增加。 8.结论是,电刺激引起的弛豫包括两种类型的响应。松弛放松是完全硝化的,而主要的放松是由NO,ATP和尚不为人所知的不是VIP或CO的递质介导的。

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