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有髓鞘和无髓鞘大鼠主动脉压力感受器的频率依赖性反射差异整合

Differential frequency-dependent reflex integration of myelinated and nonmyelinated rat aortic baroreceptors.

作者信息

Fan W, Andresen M C

机构信息

Department of Physiology and Pharmacology, Oregon Health Sciences University, Portland, Oregon 97201-3098, USA.

出版信息

Am J Physiol. 1998 Aug;275(2):H632-40. doi: 10.1152/ajpheart.1998.275.2.H632.

Abstract

Electrical activation of myelinated (A type) and nonmyelinated (C type) baroreceptor axons (BR) in aortic depressor nerve (ADN) evoked baroreflex changes in mean arterial pressure (MAP) in chloralose-urethan-anesthetized rats. Low stimulation intensities (<3 V) activated only A-type BR electroneurograms (ENG). A-type selective stimulus trains required minimum frequencies >10 Hz to evoke reflex MAP decreases, and the largest MAP responses occurred at 50 Hz and higher. In contrast, high stimulation intensities (18-20 V) maximally activated two volleys in ADN ENG corresponding to A- and C-type BR volleys. High-intensity trains decreased MAP at low frequency (1 Hz) and largest reflex responses at >/=5 Hz. Capsaicin (Cap) applied periaxonally to ADN selectively blocked C-type ENG volleys but not A-type volleys. Reflex curves with supramaximal intensity during Cap were indistinguishable from the pre-Cap, low-intensity baroreflexes. In comparison, vagus ENG showed graded Cap block of the C-fiber volley (ED50 = 200 nM) without significant attenuation of the A-type volley below 1 microM. However, 100 microM Cap blocked conduction in all myelinated vagal axons as well as C-type axons. Thus Cap is selective for sensory C-type axons only at low micromolar concentrations. Myelinated and nonmyelinated arterial BR evoke characteristically different frequency-response reflex relations that suggest distinct differences in sensory information processing mechanisms.

摘要

在水合氯醛-乌拉坦麻醉的大鼠中,电刺激主动脉减压神经(ADN)中髓鞘化(A型)和无髓鞘(C型)压力感受器轴突(BR)可诱发平均动脉压(MAP)的压力反射变化。低刺激强度(<3V)仅激活A型BR的神经电图(ENG)。激活A型BR需要最低频率>10Hz的选择性刺激序列才能引起反射性MAP降低,最大的MAP反应出现在50Hz及更高频率。相反,高刺激强度(18 - 20V)可最大程度地激活ADN ENG中的两个波峰,分别对应A型和C型BR波峰。高强度刺激序列在低频(1Hz)时降低MAP,在≥5Hz时产生最大的反射反应。将辣椒素(Cap)经轴周应用于ADN可选择性阻断C型ENG波峰,但不影响A型波峰。在应用辣椒素期间,超最大强度的反射曲线与应用辣椒素前的低强度压力反射曲线无明显差异。相比之下,迷走神经ENG显示辣椒素对C纤维波峰有分级阻断作用(ED50 = 200 nM),在1μM以下对A型波峰无明显衰减。然而,100μM辣椒素可阻断所有有髓鞘迷走神经轴突以及C型轴突的传导。因此,辣椒素仅在低微摩尔浓度下对感觉C型轴突具有选择性。有髓鞘和无髓鞘的动脉压力感受器诱发的频率-反应反射关系具有明显不同的特征,这表明感觉信息处理机制存在明显差异。

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