Fort Timothy J, Brezina Vladimir, Miller Mark W
Institute of Neurobiology, University of Puerto Rico, San Juan, Puerto Rico 00901, USA.
J Neurophysiol. 2007 Nov;98(5):2887-902. doi: 10.1152/jn.00558.2007. Epub 2007 Sep 5.
We are studying the functional "logic" of neuromodulatory actions in a simple central pattern generator (CPG)-effector system, the heart of the blue crab Callinectes sapidus. The rhythmic contractions of this heart are neurogenic, driven by rhythmic motor patterns generated by the cardiac ganglion (CG). Here we used anatomical and physiological methods to examine the sources and actions on the system of the FMRFamide-like peptides (FLPs) TNRNFLRFamide (F(1)), SDRNFLRFamide (F(2)), and GYNRSFLRFamide, an authentic Callinectes FLP. Immunohistochemical localization revealed a plexus of FLP-immunoreactive fibers in the pericardial organs (POs), from which modulators are released to reach the heart as circulating neurohormones. Combined backfill and immunohistochemical experiments indicated that the FLPs in the POs originated in the CNS, from large neurosecretory cells in the B cluster of the first thoracic neuromere. In physiological experiments, we examined the actions of the FLPs on the intact working heart, on the semi-intact heart in which we could record the motor patterns as well as the muscle contractions, on the isolated CG, and in a preparation developed to assess direct actions on the muscle with controlled patterns of motor neuron spikes. The FLPs had strong positive chronotropic and inotropic effects. Dissection of these effects suggested that they were produced through at least two primary actions of the FLPs exerted both on the heart muscle and on the CG. These primary actions elicited numerous secondary consequences mediated by the feedforward and feedback interactions that integrate the activity of the complete, coupled CPG-effector system.
我们正在研究一种简单的中枢模式发生器(CPG)-效应器系统中神经调节作用的功能“逻辑”,该系统存在于青蟹(Callinectes sapidus)的心脏中。这种心脏的节律性收缩是神经源性的,由心脏神经节(CG)产生的节律性运动模式驱动。在此,我们运用解剖学和生理学方法,研究了FMRF酰胺样肽(FLPs)TNRNFLRFamide(F(1))、SDRNFLRFamide(F(2))以及一种真正的青蟹FLP——GYNRSFLRFamide对该系统的来源及作用。免疫组织化学定位显示,心包器官(POs)中存在FLP免疫反应性纤维丛,调节因子由此释放,作为循环神经激素到达心脏。联合逆行填充和免疫组织化学实验表明,POs中的FLPs起源于中枢神经系统,来自第一胸神经节B簇中的大型神经分泌细胞。在生理学实验中,我们研究了FLPs对完整工作心脏、半完整心脏(在其中我们可以记录运动模式以及肌肉收缩)、分离的CG以及一种为评估在运动神经元尖峰受控模式下对肌肉的直接作用而开发的制剂的作用。FLPs具有强烈的正性变时和变力作用。对这些作用的剖析表明,它们是通过FLPs对心肌和CG的至少两种主要作用产生的。这些主要作用引发了许多由前馈和反馈相互作用介导的次要后果,这些相互作用整合了完整的、耦合的CPG-效应器系统的活动。