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前列腺素E2对大鼠脊髓一氧化氮释放的刺激作用。

Stimulation of nitric oxide release from rat spinal cord by prostaglandin E2.

作者信息

Sakai M, Minami T, Hara N, Nishihara I, Kitade H, Kamiyama Y, Okuda K, Takahashi H, Mori H, Ito S

机构信息

Department of Anesthesiology, Osaka Medical College, Takatsuki, Japan.

出版信息

Br J Pharmacol. 1998 Mar;123(5):890-4. doi: 10.1038/sj.bjp.0701661.

DOI:10.1038/sj.bjp.0701661
PMID:9535017
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1565222/
Abstract
  1. We recently demonstrated that intrathecal administration of prostaglandin E2 (PGE2) and PGF2alpha induced allodynia through a pathway that includes the glutamate receptor and nitric oxide (NO)-generating systems from pharmacological studies. In order to clarify the involvement of NO in prostaglandin-induced allodynia, we measured NO released from rat spinal cord slices by a chemiluminescence method. 2. PGE2 stimulated NO release from both dorsal and ventral regions all along the spinal cord. PGE2 stimulated the release within 10 min and increased it in a time-dependent manner. 3. The PGE2-induced NO release was observed at 100 nM-10 microM. PGF2alpha stimulated the release at concentrations higher than 1 microM, but PGD2 (up to 10 microM) did not enhance it. 4. 17-Phenyl-omega-trinor PGE2 (EP1 > EP3) and sulprostone (EP1 < EP3) were as potent as PGE2, but PGE1 was less potent, in stimulating NO release. While M&B 28767 (EP3) did not enhance the release, butaprost (EP2) stimulated it at 1 microM. The PGE2-evoked release was blocked by ONO-NT-012, a bifunctional EP1 antagonist/EP3 agonist. 5. The PGE2-evoked release was Ca2+-dependent and blocked by MK-801 (NMDA receptor antagonist) and L-NAME (NO synthase inhibitor). The release was also inhibited by PGD2 and dibutyryl-cyclic AMP. 6. The present study demonstrated that PGE2 stimulates NO release in the rat spinal cord by activation of NMDA receptors through the EP1 receptor, and supports our previous findings that the NO-generating system is involved in the PGE2-induced allodynia.
摘要
  1. 我们最近通过药理学研究证明,鞘内注射前列腺素E2(PGE2)和前列腺素F2α(PGF2α)通过一条包括谷氨酸受体和一氧化氮(NO)生成系统的途径诱导痛觉过敏。为了阐明NO在前列腺素诱导的痛觉过敏中的作用,我们采用化学发光法测量了大鼠脊髓切片释放的NO。2. PGE2刺激了整个脊髓背侧和腹侧区域的NO释放。PGE2在10分钟内刺激释放,并以时间依赖性方式增加。3. 在100 nM至10 μM浓度下观察到PGE2诱导的NO释放。PGF2α在高于1 μM的浓度下刺激释放,但PGD2(高达10 μM)并未增强释放。4. 17-苯基-ω-三降PGE2(EP1>EP3)和舒前列素(EP1<EP3)在刺激NO释放方面与PGE2一样有效,但PGE1的效力较低。虽然M&B 28767(EP3)未增强释放,但布他前列素(EP2)在1 μM时刺激了释放。PGE2诱发的释放被双功能EP1拮抗剂/EP3激动剂ONO-NT-012阻断。5. PGE2诱发的释放依赖于Ca2+,并被MK-801(NMDA受体拮抗剂)和L-NAME(NO合酶抑制剂)阻断。释放也被PGD2和二丁酰环磷酸腺苷抑制。6. 本研究表明,PGE2通过EP1受体激活NMDA受体刺激大鼠脊髓中的NO释放,支持了我们之前的发现,即NO生成系统参与了PGE2诱导的痛觉过敏。