Hasséssian H, Couture R, de Champlain J
Department of Physiology, Faculty of Medicine, University of Montreal, Quebec, Canada.
J Cardiovasc Pharmacol. 1990 May;15(5):736-44. doi: 10.1097/00005344-199005000-00008.
The sympathoadrenal mechanisms underlying cardiovascular responses to intrathecal (i.th.) injection of substance P (SP), at the T-9 spinal level, were investigated in conscious rats. Release of norepinephrine (NE), and epinephrine (EPI) could be induced by 6.5, 16.25, and 32.5 nmol SP correlated with a pressor and a positive chronotropic response. Release of neuropeptide Y (NPY) was evoked also by 32.5 nmol SP, and released NPY appears to derive from the adrenal medulla. The initial pressor response in intact rats is mediated by NE from sympathetic fibers, whereas the latent pressor response, observed in sympathectomized rats, is possibly due to NPY from the adrenal medulla. Although a functional balance between the sympathetic fibers and the adrenal glands is supported by the results, it appears that only the tachycardia can be efficiently produced by the adrenals in the absence of the sympathetic fibers. This study supports a functional role for SP in regulation of the sympathoadrenal system at the spinal level.
在清醒大鼠中,研究了在T-9脊髓水平鞘内注射P物质(SP)时心血管反应的交感肾上腺机制。6.5、16.25和32.5 nmol的SP可诱导去甲肾上腺素(NE)和肾上腺素(EPI)释放,这与升压和正性变时反应相关。32.5 nmol的SP也能诱发神经肽Y(NPY)释放,且释放的NPY似乎来源于肾上腺髓质。完整大鼠最初的升压反应由交感神经纤维释放的NE介导,而在交感神经切除的大鼠中观察到的延迟升压反应可能归因于肾上腺髓质释放的NPY。尽管结果支持交感神经纤维和肾上腺之间存在功能平衡,但似乎在没有交感神经纤维的情况下,只有肾上腺能有效产生心动过速。本研究支持SP在脊髓水平调节交感肾上腺系统中发挥功能作用。