Huang M H, Sylvén C, Pelleg A, Smith F M, Armour J A
Department of Physiology and Biophysics, Dalhousie University, Halifax, Nova Scotia, Canada.
Am J Physiol. 1993 Oct;265(4 Pt 2):R914-22. doi: 10.1152/ajpregu.1993.265.4.R914.
To determine whether adenosine or ATP can modify mammalian intrinsic cardiac neurons, these substances, as well as their analogues 5'-(N-ethylcarboxamido)-adenosine (NECA), N6-cyclopentyladenosine (CPA), and beta,gamma-methylene ATP (beta,gamma-mATP), were applied in microliter quantities adjacent to spontaneously active canine atrial ganglionated plexus neurons in 14 anesthetized open-chest dogs. Adenosine, NECA, and CPA induced neuronal responses, neuronal activity being either increased or decreased in 81, 86, and 86% of the sites tested, respectively. Cardiovascular responses were elicited by these agents in 21-31% of neurally active loci. ATP and beta,gamma-mATP elicited neuronal responses in 100 and 70% of tested loci, respectively. Associated cardiovascular responses were elicited by ATP and beta,gamma-mATP in 35 and 18% of the sites, respectively. After acute decentralization of the intrinsic cardiac nervous system, neuronal responses were elicited by purines in 73% of the previously active sites, while cardiovascular responses were either attenuated or eliminated. It is concluded that exogenous purine nucleosides and nucleotides can modulate the activity generated by in situ intrinsic cardiac neurons presumably by acting on P1 and P2 purinoreceptors. Furthermore, these data indicate that purine sensitive intrinsic cardiac neurons are involved in cardiac regulation.
为了确定腺苷或三磷酸腺苷(ATP)是否能调节哺乳动物心脏的内在神经元,将这些物质及其类似物5'-(N-乙基甲酰胺基)-腺苷(NECA)、N6-环戊基腺苷(CPA)和β,γ-亚甲基ATP(β,γ-mATP)以微升量施用于14只麻醉开胸犬的自发活动的犬心房神经节丛神经元附近。腺苷、NECA和CPA诱导神经元反应,在所测试部位中,神经元活动分别在81%、86%和86%的部位增加或减少。这些药物在21%-31%的神经活动位点引发心血管反应。ATP和β,γ-mATP分别在100%和70%的测试位点引发神经元反应。ATP和β,γ-mATP分别在35%和18%的位点引发相关的心血管反应。在心脏内在神经系统急性去神经支配后,嘌呤在73%的先前活跃位点引发神经元反应,而心血管反应则减弱或消除。得出的结论是,外源性嘌呤核苷和核苷酸可能通过作用于P1和P2嘌呤受体来调节原位心脏内在神经元产生的活动。此外,这些数据表明,对嘌呤敏感的心脏内在神经元参与心脏调节。