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大鼠内侧前额叶皮层对压力反射副交感神经成分的调节作用

Medial prefrontal cortex modulation of the baroreflex parasympathetic component in the rat.

作者信息

Resstel L B M, Fernandes K B P, Corrêa F M A

机构信息

Department of Pharmacology, School of Medicine of Ribeirão Preto, University of São Paulo, Avenida Bandeirantes 3900, Ribeirão Preto, SP 14090-090, Brazil.

出版信息

Brain Res. 2004 Jul 23;1015(1-2):136-44. doi: 10.1016/j.brainres.2004.04.065.

Abstract

The ventral portion of the medial prefrontal cortex (vMPFC) that comprises the prelimbic and infralimbic cortex is involved in arterial blood pressure and heart rate control. In the present study, we attempted to verify the effect of an acute and reversible blockade of vMPFC activity by local bilateral microinjections of either lidocaine (a local anesthetic) or CoCl2 (a nonselective synapse blocker) on the baroreflex response of unanesthetized rats. Bilateral microinjection of lidocaine into the vMPFC did not affect the tachycardiac response to mean arterial pressure (MAP) decreases caused by i.v. infusion of sodium nitroprusside or the baroreflex gain in unanesthetized rats. However, lidocaine caused a reversible shift of the reflex threshold pressure toward higher (MAP) increases in response to i.v. infusion of phenylephrine, thus indicating an action on the parasympathetic component of the baroreflex. The effects of the blockade of local synapses in the vMPFC by CoCl2 were similar to those observed after the acute ablation of that area caused by lidocaine. Bilateral microinjection of CoCl2 into the vMPFC also caused a shift of the reflex threshold pressure bradycardiac responses to MAP increases toward higher MAP values, without affecting the baroreflex gain. In conclusion, our data indicate that the vMPFC is involved in baroreflex control, and more specifically in the modulation of the parasympathetic baroreflex component. The temporary ablation of this area by local microinjections of lidocaine caused a shift of the reflex threshold pressure toward higher MAP values, which is compatible with the idea that the vMPFC has a modulatory action on the baroreflex. The observation that CoCl2 and lidocaine microinjections had similar effects on the baroreflex also suggests that this modulation involves local synaptic neurotransmission within the vMPFC.

摘要

内侧前额叶皮质(vMPFC)的腹侧部分,包括前边缘皮层和边缘下皮层,参与动脉血压和心率控制。在本研究中,我们试图通过向双侧局部微量注射利多卡因(一种局部麻醉剂)或氯化钴(一种非选择性突触阻滞剂)来急性可逆地阻断vMPFC的活动,以验证其对未麻醉大鼠压力感受性反射反应的影响。向vMPFC双侧微量注射利多卡因,对静脉注射硝普钠引起的平均动脉压(MAP)降低所产生的心动过速反应或未麻醉大鼠的压力感受性反射增益没有影响。然而,利多卡因使反射阈压力出现可逆性变化,在静脉注射去氧肾上腺素时,反射阈压力向更高的(MAP)升高方向移动,从而表明其对压力感受性反射的副交感神经成分有作用。氯化钴对vMPFC局部突触的阻断作用与利多卡因急性损毁该区域后观察到的作用相似。向vMPFC双侧微量注射氯化钴也使对MAP升高的反射阈压力心动过缓反应向更高的MAP值移动,而不影响压力感受性反射增益。总之,我们的数据表明,vMPFC参与压力感受性反射控制,更具体地说是参与副交感神经压力感受性反射成分的调节。通过局部微量注射利多卡因暂时损毁该区域,导致反射阈压力向更高的MAP值移动,这与vMPFC对压力感受性反射具有调节作用的观点相符。氯化钴和利多卡因微量注射对压力感受性反射有相似作用这一观察结果也表明,这种调节涉及vMPFC内的局部突触神经传递。

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