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1.
Droperidol causes the blockage of the dopamine receptors in the central nervous system that are involved in pain transmission. However, the mechanism of action of droperidol in pain-related neurons is not clear, and it is still unknown whether opioids are involved in the modulation of this processing. The present study examines the effect of droperidol on the pain-evoked response of pain-excitation neurons (PENs) and pain-inhibition neurons (PINs) in the caudate nucleus (Cd) of rats. The trains of electric impulses applied to the sciatic nerve were used as noxious stimulation. Our results revealed that droperidol decreased the frequency of PEN discharge, and increased the frequency PIN discharge evoked by the noxious stimulation in the Cd of normal rats, while administration of droperidol to morphine-dependent rats produced the opposite response. Those demonstrated that droperidol is involved in the modulation of nociceptive information transmission in Cd, and there were completely opposite responses to painful stimulation between normal and morphine-dependent rats after administration of droperidol.  相似文献   

2.
Morphine is among the most effective analgesics. However, many evidences suggest that, besides the well-know analgesic activity, repeated opioids treatment can induce some side effects such as dependence, hyperalgesia and tolerance. The mechanism of noxious information transmission in the central nervous system after dependence is not clear. An important neurotransmitter, dopamine (DA) participates not only in the process of opioid dependence but also in pain modulation in the central nervous system. In the present study we observed changes of electrical activities of pain-excitation neurons (PENs) and pain-inhibition neurons (PINs) in the caudate nucleus (Cd) following the development of morphine dependence. We also observed the role of DA on these changes. Our results revealed that both the latency of PEN discharges and the inhibitory duration of PIN discharges decreased, and the net increased values of PEN and PIN discharges increased in the Cd of morphine dependent rats. Those demonstrated that electrical activities of both PENs and PINs increased in morphine dependent rats. DA inhibited the electrical activities of PENs and enhanced those of PINs in morphine dependent rats.  相似文献   

3.
Dizocilpine maleate (MK-801) causes the blockage of the glutamic acid (Glu) receptors in the central nervous system that are involved in pain transmission. However, the mechanism of action of MK-801 in pain-related neurons is not clear, and it is still unknown whether Glu is involved in the modulation of this processing. This study examines the effect of MK-801, Glu on the pain-evoked response of pain-excitation neurons (PENs) and pain-inhibition neurons (PINs) in the nucleus accumbens (NAc) of rats. The trains of electric impulses applied to the sciatic nerve were used as noxious stimulation. The electrical activities of PENs or PINs in NAc were recorded by a glass microelectrode. Our results revealed that the lateral ventricle injection of Glu increased the discharged frequency and shortened the discharged latency of PEN, and decreased the discharged frequency and prolonged the discharged inhibitory duration (ID) of PIN in NAc of rats evoked by the noxious stimulation, while intra-NAc administration of MK-801 produced the opposite response. On the basis of above findings we can deduce that Glu, MK-801 and N-methyl-d-aspartate (NMDA) receptor are involved in the modulation of nociceptive information transmission in NAc.  相似文献   

4.
Electroacupuncture (EA) has been successfully used to alleviate pain produced by various noxious stimulus. Cholecystokinin-8 (CCK-8) is a neuropeptide involved in the mediation of pain. We have previously shown that CCK-8 could antagonize the analgesic effects of EA on pain-excited neurons (PENs) and pain-inhibited neurons (PINs) in the nucleus parafascicularis (nPf). However, its mechanism of action is not clear. In the present study, we applied behavioral and neuroelectrophysiological methods to determine whether the mechanisms of CCK-8 antagonism to EA analgesia are mediated through the CCK-A receptors of PENs and PINs in the nPf of rats. We found that focusing radiant heat on the tail of rats caused a simultaneous increase in the evoked discharge of PENs or a decrease in the evoked discharge of PINs in the nPf and the tail-flick reflex. This showed that radiant heat could induce pain. EA stimulation at the bilateral ST 36 acupoints in rats for 15 min resulted in an inhibition of the electrical activity of PEN, potentiation of the electrical activity of PIN, and prolongation in tail-flick latency (TFL), i.e. EA stimulation produced an analgesic effect. The analgesic effect of EA was antagonized when CCK-8 was injected into the intracerebral ventricle of rats. The antagonistic effect of CCK-8 on EA analgesia was reversed by an injection of CCK-A receptor antagonist L-364,718 (100 ng/μl) into the nPf of rats. Our results suggest that the pain-related neurons in the nPf have an important role in mediating EA analgesia. L-364,718 potentiates EA analgesia through the CCK-A receptor of PENs and PINs in the nPf.  相似文献   

5.
大鼠杏仁核簇与痛觉调制的关系   总被引:2,自引:0,他引:2  
目的:研究伤害性刺激对大鼠杏仁核簇中各亚核痛反应神经元电活动的影响。方法:用串电脉冲刺激坐骨神经作为伤害性刺激,用玻璃微电极引导神经元放电。结果:杏仁核簇中多个亚核均存在痛反应神经元。伤害性刺激使痛兴奋神经元(PEN)诱发放电频率增加;使痛抑制神经元(PIN)诱发放电频率降低,并出现放电频率极低现象;两类神经元电活动相互配合。腹腔注射吗啡(10mg/kg)可以对抗伤害性刺激对痛反应神经元的作用。结论:杏仁核簇中的部分亚核在感受、整合和传递痛觉信息方面起一定作用,是中枢神经系统控制和处理痛觉信息的一个组成部分。  相似文献   

6.
本文观察了41只大鼠脑室注射去甲肾上腺素(NE)后对两侧束旁核痛反应神经元同时由活动的影响。结果表明:1.两个痛兴奋神经元(PEN)的电活动同时受至抑制,表现为诱发放电数目减少,潜伏期延长。2.两个痛抑制神经元(PIN)的抑制效应同时被解除,即诱发放电数目增加,抑制时程箱短。3.一个PEN的电活动受到抑制的同时,另一个PIN的电活动加强。上述结果证明NE能够同时影响丘脑束旁核PEN和PIN的电活动。  相似文献   

7.
Zhang XJ  Xu MY  Lv N 《生理学报》2005,57(1):66-70
本文研究了谷氨酸(glutamic acid,Glu)及其NMDA受体拮抗剂5-甲基二氢丙环庚烯亚胺马来酸(MK-801)对人鼠伏核(nucleus accumbens,NAc)痛兴奋神经元(pain-excitation neurons,PEN)痛诱发反应的影响。电刺激坐骨神经作为伤害性刺激,用玻璃微电极记录NAc的PEN放电,观察脑室内注射Glu和NAc内注射MK-801对大鼠NAc中PEN伤害性诱发活动的影响。结果显示,伤害性刺激可使NAc的PEN电活动增强;脑室内注射Glu(10nmol/10μl)可使NAc的PEN伤害性诱发放电频率增加;NAc内注射MK-801(1.0nmol/0.5μl)可阻断这种作用;MK-801本身也可部分抑制PEN伤害性诱发反应。上述结果表明,Glu对PEN伤害性反应的易化作用是通过NMDA受体介导的:Glu和NMDA受体参与NAc伤害性信息传递的调制。  相似文献   

8.
张丽娟  徐屯 《生理学报》1990,42(6):585-590
本实验观察了视前区(POA)内微量注入阿片样物质对丘脑束旁核(Pf)痛反应神经元电活动影响。结果如下:(1)POA 内微量注射高浓度吗啡(10μg/μl)能显著抑制 Pf 内大部分(20/26)痛兴奋神经元(PEN)的痛诱发放电,其中3个神经元注药后对伤害性刺激转变成抑制反应;POA 内微量注射低浓度吗啡(1μg/μl)也显著抑制 Pf 内大部分(19/23)PEN 的痛诱发放电。(2) POA 内微量注射两种浓度的吗啡,均使大多数痛抑制神经元(PIN,共27/33)的完全抑制时程缩短。上述结果提示,POA 内阿片样物质对 Pf 内痛反应神经元的电活动可能具有抑制作用。  相似文献   

9.
本实验利用两根微电极同时记录大鼠丘脑束旁核两个痛兴奋、两个痛抑制或一个痛兴奋和一个痛抑制神经元的放电,观察脑室注射5-羟色胺后对两个神经元同时电活动的影响。结果表明,当脑内5-羟色胺含量增加时,丘脑束旁核两个神经元同时电活动的变化主要有如下三个方面:1.两个痛兴奋神经元的电活动均受抑制,诱发放电频率减少,潜伏期延长。2.两个痛抑制神经元抑制均解除,诱发抑制时程均缩短。3.一个痛兴奋神经元电活动受抑制的同时,另一个痛抑制神经元的电活动加强。以上结果提示,在痛和镇痛过程中,痛兴奋和痛抑制神经元的作用是协同进行的。  相似文献   

10.
本实验观察了脑室注射乙酰胆碱(ACh)对丘脑束旁核(Pf)痛兴奋神经元(PEN)和痛抑制神经元(PIN)电活动的影响,并与吗啡的作用进行了比较。结果表明,脑内ACh增加可使PEN放电潜伏期延长,频率降低,持续时程缩短;可使PIN的完全抑制时程缩短。腹腔注射吗啡与ACh的作用相似。M胆碱受体阻断剂阿托品能阻断ACh对PEN和PIN的作用,但不影响吗啡对PEN和PIN的作用。说明吗啡镇痛不是通过胆碱能转递而实现的。  相似文献   

11.
大鼠扣带回前部对外侧缰核单位放电的抑制作用   总被引:1,自引:0,他引:1  
电刺激扣带回前部,对75%的外侧缰核痛兴奋神经元(pain-excitative neuron of lateral habenular nucleus,LHPE)和75%的痛抑制神经元(pain-inhibitive neuron of lateral habenular nucleus,LHPI)的自发放电均产生抑制作用,并取消躯体和内脏伤害性刺激对外侧缰核(lateral habenular nucleus,LHN)单位放电的影响。扣带回内微量注射吗啡可以抑制LHPE的自发放电,并取消伤害性刺激对LHPE的增频效应。注射纳洛酮则使LHPE的自发放电增多,加强伤害性刺激对LHPE的增频作用,并可拮抗电针对LHPE伤害性刺激反应的抑制作用。  相似文献   

12.
张竞  刘敏芝 《动物学报》1989,35(3):279-286
用微电极细胞外记录的方法,观察内脏痛、躯体痛和触觉刺激对大鼠丘脑后核(PO)中770个神经元电活动的影响,其中305(38.3%)个对伤害性刺激起反应,103(13.4%)个对触觉刺激起反应。对伤害性刺激反应的神经元中多数对躯体痛和内脏痛刺激均起反应且反应形式相同,少数反应不同或相反,对触觉刺激反应的神经元中多数也对两种伤害性刺激均起反应,只对触觉刺激反应的神经元很少。  相似文献   

13.
多巴胺对大鼠背角WDR神经元的抑制不被酚妥拉明...   总被引:3,自引:0,他引:3  
吕韶岗  梅俊 《生理学报》1992,44(4):362-369
The inhibitory effects of dopamine (DA) applied spinally on the wide dynamic range (WDR) neurons of dorsal horn in rats were studied with extracellular recording technique. 54 WDR units were tested from 43 rats. With a dosage of DA from 0.26 x 10(-6) to 1.58 x 10(-6) mol/kg, the inhibitory effect of the neurotransmitter on the responses of dorsal horn neurons to noxious transcutaneous electrical stimulation exhibited a gradual increase. After DA (0.52 x 10(-6) mol/kg) administration, the inhibitory effect of DA began to appear in 5 min and reach to maximum in 15 min, whereupon the maximum level could be maintained for about 25 min. This effect of DA could be reversed completely by dopaminergic receptor antagonist, droperidol (0.66 x 10(-6) mol/kg) but not by 2.65 x 10(-6) mol/kg phentolamine or 1.37 x 10(-6) mol/kg naloxone. The results of the present investigation suggest that DA may be involved in the modulation of nociception at the spinal level as an independent neurotransmitter.  相似文献   

14.
Acetylcholine (ACh) causes a wide variety of anti-nociceptive effects. The dentate gyrus (DG) region of the hippocampal formation (HF) has been demonstrated to be involved in nociceptive perception. However, the mechanisms underlying this anti-nociceptive role have not yet been elucidated in the cholinergic pain-related neurons of DG. The electrical activities of pain-related neurons of DG were recorded by a glass microelectrode. Two kinds of pain-related neurons were found: pain-excited neurons (PEN) and pain-inhibited neurons (PIN). The experimental protocol involved intra-DG administration of muscarinic cholinergic receptor (mAChR) agonist or antagonist. Intra-DG microinjection of 1 μl of ACh (0.2 μg/μl) or 1 μl of pilocarpine (0.4 μg/μl) decreased the discharge frequency of PEN and prolonged firing latency, but increased the discharge frequency of PIN and shortened PIN inhibitory duration (ID). Intra-DG administration of 1 μl of atropine (1.0 μg/μl) showed exactly the opposite effects. According to the above experimental results, we can presume that cholinergic pain-related neurons in DG are involved in the modulation of the nociceptive response by affecting the discharge of PEN and PIN.  相似文献   

15.
C Reyes-Vázquez  N Dafny 《Life sciences》1983,32(13):1443-1448
Local administration (microiontophoretically) of naloxone was tested in 57 parafascicularis thalamic (PF) neurons of morphine-naive and morphine-dependent rats. In morphine-naive rats microiontophoretic applications of naloxone induced changes in 52% of the PF neurons. Reduction in neuronal activity was observed in the majority of them; this reduction phenomena exhibited dose response characteristics, i.e., each incremental naloxone dose caused further decrease of the neuronal discharges. In morphine-dependent animals, 64% of the PF neurons were affected. The changes seen after naloxone were mainly increases of electrical discharges (i.e. the opposite effects obtained in morphine-naive animals).  相似文献   

16.
赵涤尘  徐屯  孙明智 《生理学报》1988,40(4):326-334
在54只大鼠上,用两支微电极同时记录神经元放电的方法,研究了脑室注射乙酰胆碱(ACh)对丘脑束旁核(Pf)和中脑网状结构(RF)痛反应神经元电活动的影响。结果表明,当脑内ACh含量增加时,Pf和RF中两个痛兴奋神经元(PEN)的电活动同时减弱,两个痛抑制神经元(PIN)的电活动同时加强,Pf中一个PEN电活动减弱的同时RF中一个PIN电活动加强,或者相反。阿托品可以阻断ACh的上述作用。这提示,ACh对不同中枢痛反应神经元的电活动的影响是通过M胆碱能受体而实现的。  相似文献   

17.
已知脑室注射硫化八肽胆囊收缩素(CCK-8)对吗啡镇痛效应(用辐射热甩尾反应的潜伏期作测痛指标)有对抗作用。本工作研究了脑室注射CCK-8对吗啡引起的大鼠丘脑两侧束旁核痛反应神经元同时电变化的影响。结果如下:(1)腹腔注射吗啡(10mg/kg)可抑制痛兴奋神经元(PEN)和加强痛抑制神经元(PIN)的电活动。(2)脑室注射CCK-8(15ng/15μl)能对抗吗啡引起PEN放电的抑制作用和PIN电活动的加强作用。无硫CCK-8对吗啡的效应没有对抗作用。(3)注射CCK-8可同时对抗吗啡对束旁核中一个PEN的抑制作用和一个PIN的加强作用。上述结果与甩尾阈测痛的结果一致,即CCK-8对吗啡引起的镇痛效应有明显的对抗作用。  相似文献   

18.
刺激杏仁基底外侧核对外侧缰核神经元单位放电的影响   总被引:2,自引:0,他引:2  
用玻璃微电极细胞外记录大鼠外侧缰核(LHN)神经元的单位放电。共记录了110个神经元。其中痛兴奋神经元(LHPE)75个;痛抑制神经元(LHPI)11个;广动力型神经元2个;无反应神经元17个;此外还有5个对躯体与内脏伤害性刺激反应不同的神经元。电刺激杏仁基底外侧核(以下简称杏仁核,AMG)对LHPE和LHPI的自发放电主要产生抑制作用,分别占总数的81.1%和72.7%,并抑制其对伤害性刺激的反应;对无反应神经元和广动力型神经元无明显影响。AMG内微量注射吗啡能抑制LHPE的伤害性刺激反应,但对其自发放电无明显影响。微量注射纳洛酮则可增加LHPE的自发放电频率,并加强其对伤害性刺激的反应。注射纳洛酮还可以取消电针对LHPE的伤害性刺激反应的抑制作用。  相似文献   

19.
Mechanisms of interaction between central and receptor neurons of the crayfish (the principal inhibitory neuron — PIN — and the slow-adapting stretch receptor — SAR) when functioning under different conditions were investigated: during regular spontaneous activity of SAR, grouped discharges of PIN, and regular spontaneous activity of PIN. A close connection was found between the various parameters of the PIN and SAR responses. Adaptation of SAR to the action of adequate, regular repetitive stimulation takes place faster in the presence of stationary background activity of PIN. The appearance and disappearance of SAR spike activity are determined by the ratio between the firing rates of SAR and PIN: at the moment of changeover the neuron with the higher firing rate is predominant.I. P. Pavlov Institute of Physiology, Academy of Sciences of the USSR, Leningrad. Institute of Zoology, Academy of Sciences of the Moldavian SSR, Kishinev. Translated from Neirofiziologiya, Vol. 4, No. 4, pp. 429–438, July–August, 1972.  相似文献   

20.
目的:探讨迷走神经是否可以作为LPS信息由外周组织传入中枢神经系统的桥梁。方法:将Wistar大鼠随机分组,实验组为膈下迷走神经切断并给予LPS组,三个对照组为假手术生理盐水组,假手术LPS组,膈下迷走神经切断生理盐水组。用数字体温检测仪测定大鼠体温,用玻璃微电极记录正常大鼠和膈下迷走神经切断大鼠给予LPS前后下丘脑室旁核的单位放电。结果:体温变化:实验组大鼠体温变化值与假手术LPS组相比明显降低(P<0.05)。单位放电变化:正常大鼠给予LPS后室旁核单位放电放电频率明显增加,膈下迷走神经切断大鼠给予LPS后室旁核单位放电频率无明显变化,结论:外周LPS信息可能通过迷走神经传递到脑组织。  相似文献   

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