Le Bon-Jego Morgane, Masante-Roca Ingwild, Cattaert Daniel
Laboratoire de Neurobiologie des Réseaux, CNRS UMR 5816, Université Bordeaux 1, Biologie Animale, Talence, France.
Eur J Neurosci. 2006 Mar;23(5):1283-300. doi: 10.1111/j.1460-9568.2006.04656.x.
The aim of this study was to investigate a potential mechanism for state-dependent regulation of sensory-motor transmission from sensory afferents of a proprioceptor to motoneurons (MNs) in the walking system of the crayfish. This study was performed using an in vitro preparation of thoracic ganglia including motor nerves and the proprioceptor that codes movements of the second joint (coxo-basal chordotonal organ - CBCO) of the leg. Application of movements to the CBCO elicits resistance reflex responses intracellularly recorded from Dep MNs. This reflex response is enhanced when Dep MNs are depolarized either spontaneously or by current injection. This enhancement is abolished in the presence of scopolamine (an antagonist of muscarinic acetylcholine receptors). Using pharmacology, we demonstrate that the monosynaptic connection from CBCO sensory neurons to the Dep MNs includes both nicotinic and muscarinic components. In addition, the shape of monosynaptic excitatory postsynaptic potentials (EPSPs) depends on the membrane potential: at a subthreshold depolarizing membrane potential, the time constant of the falling phase of the EPSPs is significantly increased compared with its value at resting potential. This change is suppressed in the presence of scopolamine, indicating that the muscarinic component may contribute to the activation of the Dep MN pool by sensory activity. This state-dependent amplification of the sensory input may be important for increasing the strength of sensory feedback at times when central activation of the Dep MNs is very strong (e.g. during walking).
本研究的目的是探究小龙虾行走系统中,本体感受器的感觉传入神经元与运动神经元(MNs)之间状态依赖性感觉运动传递调节的潜在机制。本研究使用包含运动神经和编码腿部第二关节(基节弦音器 - CBCO)运动的本体感受器的胸神经节体外制备物进行。对CBCO施加运动可引发从Dep MNs细胞内记录到的抵抗反射反应。当Dep MNs自发去极化或通过电流注入去极化时,这种反射反应会增强。在存在东莨菪碱(一种毒蕈碱型乙酰胆碱受体拮抗剂)的情况下,这种增强作用会被消除。通过药理学方法,我们证明从CBCO感觉神经元到Dep MNs的单突触连接包括烟碱型和毒蕈碱型成分。此外,单突触兴奋性突触后电位(EPSPs)的形状取决于膜电位:在阈下去极化膜电位时,EPSPs下降相的时间常数与其在静息电位时的值相比显著增加。在存在东莨菪碱的情况下,这种变化受到抑制,表明毒蕈碱型成分可能有助于通过感觉活动激活Dep MN池。这种感觉输入的状态依赖性放大在Dep MNs的中枢激活非常强烈时(例如在行走过程中),对于增强感觉反馈的强度可能很重要。