Helke C J, Phillips E T
Department of Pharmacology, Uniformed Services University of Health Sciences, Bethesda, MD 20814-4799.
Peptides. 1988 Nov-Dec;9(6):1307-15. doi: 10.1016/0196-9781(88)90197-0.
Local spinal cord vasomotor effects of 3 substance P (SP) antagonists were studied in the rat following intrathecal (IT) administration. Each SP antagonist (3.3 nmol) increased spinal cord vascular resistance and reduced blood flow. A LH-RH antagonist analog (10 nmol) of similar molecular weight and which also contained multiple D-Trp residues did not cause spinal cord vasoconstriction. The vasoconstrictor action of the SP antagonist, [D-Arg1, D-Pro2, D-Trp7,9, Leu11]-SP [( D-Arg]-SP) was unaffected by pretreatment with a stable SP receptor agonist (5 nmol IT). Given evidence for a cerebral vasodilator action of TRH agonists, the effects of TRH (IV) and a stable TRH analog (MK-771, IT) on [D-Arg]-SP-induced vasoconstriction were also assessed. Neither TRH nor MK-771 prevented the [D-Arg]-SP-induced vasoconstriction. However, TRH (IV) but not MK-771 (IT) partially opposed [D-Arg]-SP-induced reduction in thoracic spinal cord blood flow. Thus, SP antagonists cause spinal cord vasoconstriction by a non-SP receptor mediated phenomenon. In addition, the attenuation of SP-antagonist-induced neuropathological changes previously reported with IV. TRH administration is likely due to less severe consequences of vasoconstriction in the presence of a higher initial baseline blood flow rather than direct prevention of the vasoconstriction.
鞘内注射后,在大鼠身上研究了3种P物质(SP)拮抗剂对脊髓局部血管舒缩的影响。每种SP拮抗剂(3.3纳摩尔)均增加了脊髓血管阻力并减少了血流量。一种分子量相似且也含有多个D-色氨酸残基的促性腺激素释放激素(LH-RH)拮抗剂类似物(10纳摩尔)并未引起脊髓血管收缩。SP拮抗剂[D-精氨酸1,D-脯氨酸2,D-色氨酸7,9,亮氨酸11]-SP[(D-精氨酸)-SP]的血管收缩作用不受稳定的SP受体激动剂(鞘内注射5纳摩尔)预处理的影响。鉴于有证据表明促甲状腺激素释放激素(TRH)激动剂具有脑血管舒张作用,还评估了TRH(静脉注射)和一种稳定的TRH类似物(MK-771,鞘内注射)对[D-精氨酸]-SP诱导的血管收缩的影响。TRH和MK-771均未阻止[D-精氨酸]-SP诱导的血管收缩。然而,TRH(静脉注射)而非MK-771(鞘内注射)部分对抗了[D-精氨酸]-SP诱导的胸段脊髓血流量减少。因此,SP拮抗剂通过一种非SP受体介导的现象引起脊髓血管收缩。此外,先前报道的静脉注射TRH可减轻SP拮抗剂诱导的神经病理变化,这可能是由于在较高的初始基线血流量情况下血管收缩的后果较轻,而非直接阻止血管收缩。