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1.
目的:探讨人参皂甙Rg1对6-羟基多巴(6-OHDA)制备的去卵巢(OVX)帕金森病(PD)模型大鼠黑质(SN)多巴胺能神经元的保护作用及其可能机制。方法:应用6-OHDA制备的OVX PD模型大鼠,侧脑室给予Rg1或雌激素。免疫组织化学染色酪氨酸羟化酶(TH)阳性神经元和Bcl-2蛋白。Perls’铁染色检测SN铁含量。结果:①Rg1或雌激素可抑制阿朴吗啡诱导的PD大鼠旋转行为;②在损毁侧SN,Rg1或雌激素用药组TH阳性神经元数量较6-OHDA组显著增多;③6-OHDA组损毁侧SN内铁含量较健侧明显升高,应用Rg1或雌激素后,SN铁含量较模型组明显减少;④与6-OHDA模型组相比,Rg1及雌激素均可增加损毁侧大鼠SN内Bcl-2蛋白表达。结论:人参皂甙Rg1具有类雌激素样作用,对OVX PD模型大鼠黑质DA能神经元有明显的保护作用,其作用机制可能与降低铁负载和抗凋亡有关。  相似文献   

2.
帕金森病模型大鼠脑内多巴胺与铁含量的关系   总被引:12,自引:2,他引:10  
Jiang H  Chen WF  Xie JX 《生理学报》2001,53(5):334-338
实验采用原子吸收分光光度法,快速周期伏安法,高效液相电化学检测等方法,研究以6-羟基多巴(6-OHDA)制备的帕金森病(PD)模型大鼠黑质内铁含量的变化。铁对多巴胺(DA)能神经元的直接毒性作用以及铁离子螯合剂甲磺酸去铁胺的神经保护作用。结果发现:(1)PD大鼠损毁侧黑质内铁含量为非标准PD大鼠的3倍左右;(2)PD大鼠损毁侧纹状体内铁含量无明显改变;(3)单纯注射6-OHDA的大鼠其损毁侧纹状体(CPu)DA的释放量和含量均明显降低;(4)侧脑室预先注射甲磺酸去铁胺,再重复上述实验,损毁侧CPu DA释放量和含量均无明显改变;(5)单侧黑质内注射40ug FeCl3后,大鼠损毁侧CPu内DA释放量和含量显著降低。上述结果提示,6-OHDA可导致CPu DA释放量及含量减少,此过程有铁的参与。由于铁可导致DA神经元死亡,因此铁含量的增加可能是DA含量减少的原因之一,甲磺酸去铁胺具有保护DA神经元的作用。  相似文献   

3.
目的观察6-羟多巴胺(6-OHDA)单侧注射制备的帕金森病(PD)大鼠多巴胺(DA)能神经元的超微结构改变。方法单侧微量注射6-OHDA制备PD大鼠模型,用免疫荧光组织化学方法观察正常侧与6-OHDA注射侧黑质酪氨酸羟化酶(TH)阳性神经细胞及神经纤维的变化;并利用免疫电镜技术观察大鼠正常侧与注射侧黑质致密部DA能神经元的超微结构。结果免疫荧光法显示注射侧黑质致密部TH阳性细胞数和网状部TH阳性纤维面积与正常侧的百分比平均值分别为21.83%,23.19%。免疫电镜显示:TH免疫反应阳性产物表达于PD大鼠正常侧DA能神经元的高尔基复合体质膜面及胞质内,电子密度较高,注射侧很少见或几乎未见,且注射侧线粒体嵴有不同程度的溶解,呈空泡样变或髓样变,粗面内质网脱颗粒。结论6-OHDA可引起DA能神经元发生凋亡的超微结构改变。  相似文献   

4.
Zhang QJ  Wu ZH  Liu J  Wang T  Wang S  Han LN 《生理学报》2008,60(2):259-269
本文采用玻璃微电极细胞外记录法,观察正常大鼠和6-羟多巴胺(6-hydroxydopamine,6-OHDA)损毁黑质致密部大鼠杏仁基底外侧核(basolateral nucleus,BL)神经元电活动的变化,以及体循环给予选择性5-HT1A受体拮抗剂WAY-100635对神经元电活动的影响.结果显示,正常大鼠BL投射神经元和中间神经元的放电频率分别足(O.39±0.04)Hz和(0.83±0.16)Hz,6-OHDA损毁大鼠BL投射神经元和中间神经元的放电频率分别足(0.32±0.04)Hz和(0.53±0.12)Hz,与正常大鼠相比无显著差异.在正常大鼠,所有投射神经元呈现爆发式放电;94%的中间神经元为爆发式放电,6%为不规则放电.在6.OHDA损毁大鼠,85%的投射神经元呈现爆发式放电,15%为不规则放电;86%的中间神经元为爆发式放电,14%为不规则放电,与正常大鼠相比无显著差别.静脉给予0.1 mg/kg体重的WAY-100635不改变正常大鼠和6-OHDA损毁人鼠BL投射神经元和中间神经元的放电频率.然而,0.5 mg/kg体重的WAY-100635却显著降低正常大鼠BL投射神经元的平均放电频率(P<0.01),明显增加6-OHDA损毁大鼠BL投射神经元的平均放电频率(P<0.004).高剂量WAY-100635不影响正常大鼠和6-OHDA损毁大鼠BL中间神经元的平均放电频率.结果表明,黑质多巴胺能损毁后内在和外在的传入调节BL神经元的活动,在正常大鼠和6-OHDA损毁大鼠5-HT1A 受体调节投射神经元的活动,并且在6-OHDA损毁大鼠WAY-100635诱发投射神经元平均放电频率增加.结果提示,5-HT1A 受体在帕金森病情感性症状的产生中起重要作用.  相似文献   

5.
目的探讨帕金森病(Parkinson disease,PD)大鼠模型中脑腹侧被盖区(ventral tegmental area,VTA)多巴胺能神经元的改变及其c-Jun蛋白表达情况,探讨其可能机制。方法应用6-羟基多巴胺(6-hydroxydopamine,6-OHDA)单侧一点注射大鼠黑质致密区(substantia nigra compacta,SNc),特异性毁损DA能神经元;术后1d、7d、14d、21d腹腔注射阿朴吗啡(apomorphine,APO)诱发行为学观察、电镜、尼氏染色观察中脑VTA神经元的改变,免疫组织化学ABC观察其DA能神经元酪氨酸羟化酶(tyrosine hydroxylase,TH)及c-Jun的改变并进行图像分析,Western blot观察c-Jun蛋白表达。结果APO诱发PD大鼠模型异常旋转行为,尼氏染色及电镜见PD大鼠中脑VTA有神经细胞肿胀、坏死等变化,VTA TH阳性(TH )神经元数量减少,形态学改变。APO诱导的旋转实验≥7转/min,VTA毁损侧c-Jun表达。结论中脑VTA DA能神经参与PD模型大鼠的改变;APO能诱导6-OHDA PD模型大鼠的旋转行为,其强弱可能与TH 神经元数量直接相关;c-Jun表达与DA能神经元毁损程度有一定的关系。  相似文献   

6.
6-羟多巴胺纹状体内注射制作大鼠帕金森病模型的研究   总被引:11,自引:0,他引:11  
目的 为拓宽6-OHDA损毁多巴胺能神经元所制备大鼠帕金森病模型的应用范围,采用多位点纹状体内注入6-OHDA的途径来制备模型。方法 研究用SD大鼠,两个针道内四点定位注射,每点注射3μg/μ16-OHDA3μl。结果 术后两周出现缓慢旋转,4周旋转行为达到7转/分并保持稳定;形态学染色可见损毁1周后注射侧黑质酪氨酸羟化酶免疫组化阳性细胞减少20%,2周后减少38%,3~4周减少70%以上,6周后损伤趋缓。高效液相-电化学法活体检测纹状体内多巴胺的代谢产物3、4-二羟基苯乙酸(DOPAC)和高香草酸(HVA),发现注射侧和非注射侧相比含量分别下降98.33%和96.05%;组织匀浆检测损毁侧黑质多巴胺含量下降了73%以上,3、4-二羟基苯乙酸(DOPAC)含量下降60%。结论 纹状体内注射6-OHDA能够制备帕金森病大鼠模型。  相似文献   

7.
Meng JL  Ma YY  Luo HY  Kong SZ  He YW  Dong BC  Wu SH  He M 《生理学报》2008,60(3):369-374
本研究以P50听觉诱发电位(P50 auditory evoked potential, P50)和酪氨酸羟化酶(tyrosine hydroxylase, TH)阳性细胞计数作为黑质功能和形态学指标,动态追踪研究雌激素对6-羟基多巴胺(6-hydroxydopamine, 6-OHDA)损伤黑质多巴胺(dopamine, DA)能神经元的作用.将大鼠分为4组:(1)正常雌性大鼠对照组;(2)单纯帕金森氏病(Parkinson's disease, PD)模型组;(3)双侧去卵巢PD模型组;(4)去卵巢回补3d雌激素的PD模型组.在大鼠清醒和安静的生理状态下连续14d记录黑质的P50,并检测黑质TH 细胞数目的变化.结果显示:单纯PD模型大鼠黑质P50的T/C值较正常雌鼠降低40.60%(P<0.01),其损伤侧黑质TH 细胞数目减少64.74%(P<0.01);去卵巢PD模型大鼠黑质P50的T/C值较单纯PD模型大鼠进一步降低45.88%(P<0.01),同时其黑质TH 细胞数目值也进一步减少57.26%(P<0.01),表明急性缺乏生理水平性腺雌激素将增大6-OHDA损伤黑质DA能神经元的程度,同时使黑质的感觉门控(sensory gating, SG)功能明显受损;去卵巢后回补3d生理剂量雌激素,可明显改善大鼠黑质的SG功能,提高TH 细胞数量(与去卵巢PD模型大鼠比较,P<0.01),其黑质损伤程度与单纯PD模型大鼠相当.以上结果提示,生理水平的雌激素具有提高黑质DA能神经元对伤害性刺激耐受性的神经保护作用.缺乏性腺源性的雌激素时,及时给予生理剂量的雌激素可以减轻神经毒素6-OHDA对黑质DA能神经元结构和功能的损伤.  相似文献   

8.
雌激素和植物雌激素对大鼠杏仁核多巴胺能系统的调节   总被引:4,自引:1,他引:3  
Dong XL  Xie JX 《生理学报》2003,55(5):589-593
用快速周期伏安法(fast cyclic voltammetry,FCV)测定了动情周期各期雌鼠、去卵巢(ovaricectomized,OVX)鼠和正常雄鼠的杏仁核(amygdala,Amy)多巴胺(dopamine,DA)释放,同时应用酪氨酸羟化酶(tyrosine hydrox-ylase,TH)免疫组化技术检测了以上各组大鼠腹侧背盖区(ventral tegmental area,VTA)的TH阳性神经元数目。并在此基础上,将植物雌激素——大豆异黄酮侧脑室注射,观察了其对各组大鼠Amy DA释放的作用。结果显示,雌鼠动情前期DA释放量最高,高于其余三期和OVX鼠;AmyDA释放和VTATH阳性神经元数目存在明显的性别差异,雌性高于雄性;大豆异黄酮可快速(5min内)增加雌鼠、OVX鼠的Amy DA释放,提示大鼠内源性雌激素水平差异对中脑边缘系统DA能神经元存在调节作用,大豆异黄酮可在中枢发挥类雌激素作用,调节杏仁核DA能神经递质系统功能。  相似文献   

9.
目的:研究早期帕金森病(PD)大鼠血清抗氧化能力的改变。方法:观察6-羟多巴胺(6-OHDA)早期PD大鼠多巴胺(DA)能神经元和血清抗氧化能力的异常改变。结果:早期PD动物DA能神经元的数量明显减少,血清抗氧化能力明显降低。结论:早期PD大鼠血清抗氧化能力降低,这可能与DA能神经元损伤有关。  相似文献   

10.
苍白球是基底神经节间接环路的重要核团,在机体正常及病理状态下调节运动功能。前期研究工作显示苍白球接受来自黑质纹状体轴突侧支的多巴胺能纤维支配。苍白球表达多巴胺D1和D_2样受体。本研究旨在采用多管微电极细胞外电生理记录技术,探讨多巴胺D_2样受体对正常及帕金森病模型大鼠苍白球神经元自发放电的直接调控效应。结果显示,在正常大鼠上,微压力给予多巴胺D_2样受体激动剂quinpirole对苍白球神经元自发放电发挥不同的电生理效应。在所记录的61个苍白球神经元,quinpirole可使24个神经元的放电频率增加(62.7±11.2)%,而使另外16个神经元放电频率降低(37.5±2.9)%,联合给予D_2样受体阻断剂sulpride可阻断quinpirole对苍白球神经元自发放电的调控效应。在6-羟基多巴胺(6-hydroxydopamine,6-OHDA)帕金森病模型大鼠损毁侧所记录的47个苍白球神经元中,quinpirole可使其中25个神经元的放电频率增加(64.2±10.1)%,而使另外11个神经元放电频率降低(51.9±6.2)%。以上结果提示,多巴胺D_2样受体双向调节苍白球神经元的自发放电活动;在帕金森病状态下,多巴胺D_2样受体仍具有双向调节苍白球神经元兴奋性的效应。  相似文献   

11.
Wang J  Jiang H  Xie JX 《Neurochemical research》2004,29(12):2239-2243
The early changes in iron level and neuronal loss in rat nigrostriatal system were investigated using 6-hydroxydopamine (6-OHDA) unilaterally lesioned rats. The results showed that: 1, 3, 5, 7, and 14 days of postlesion, there was a progressive reduction in the density of the tyrosine hydroxylase immunoreactive (TH-ir) cells in the lesioned substantia nigra (SN). Iron level increased in the lesioned SN from 1–14 days following 6-OHDA lesions, but there were no differences in iron level among them. Only on 14 days of postlesion, did the DA release decrease in striatum (Str) of the lesioned side, while there were no changes in other groups. These results implied that the increased iron level in SN occured when there was a moderate reduction of DA neurons. However, the DA release in Str was unchanged until TH-ir cells were highly reduced due to the immense compensatory mechanism of the DA system.  相似文献   

12.
MPTP诱导小鼠黑质区铁摄取和DMT1表达增加   总被引:10,自引:0,他引:10  
Jiang H  Qian ZM  Xie JX 《生理学报》2003,55(5):571-576
铁在帕金森病(Parkinson‘s disease,PD)的发病机制中起着非常关键的作用,为了探讨PD中铁升高的机制,本实验观察了1-甲基4-苯基—1,2,3,6-四氢吡啶(MPTP)处理小鼠黑质(substantia nigra,SN)内铁摄取及新的铁转运蛋白二价金属离子转运蛋白1(DMT1)的表达变化。结果表明:(1)MPTP处理组小鼠SN内铁染色增高,注射MPTP7d组明显高于3d组。(2)MPTP处理组小鼠,酪氨酸羟化酶(TH)免疫阳性细胞数目显著减少。(3)MPTP处理组小鼠,“-IRE”型DMT1表达在各组中均增加,而“ IRE”型DMT1仅在MPTP处理后7d才出现变化。上述结果提示,这种新发现的哺乳动物跨膜铁转运蛋白表达增加可能是引起MPTP处理小鼠SN中铁升高的关键因素,铁的升高进一步导致DA神经元的死亡。  相似文献   

13.
Iron accumulation is considered to be involved in the pathogenesis of Parkinson's disease. To demonstrate the relationship between peripheral iron overload and dopaminergic neuron loss in rat substantia nigra (SN), in the present study we used fast cyclic voltammetry, tyrosine hydroxylase (TH) immunohistochemistry, Perls' iron staining, and high performance liquid chromatography-electrochemical detection to study the degeneration of dopaminergic neurons and increased iron content in the SN of iron dextran overloaded animals. The findings showed that peripheral iron dextran overload increased the iron staining positive cells and reduced the number of TH-immunoreactive neurons in the SN. As a result, dopamine release and content, as well as its metabolites contents were decreased in caudate putamen. Even more dramatic changes were found in chronic overload group. These results suggest that peripheral iron dextran can increase the iron level in the SN, where excessive iron causes the degeneration of dopaminergic neurons. The chronic iron overload may be more destructive to dopaminergic neurons than the acute iron overload.  相似文献   

14.
The aim of the present study was to investigate whether the iron chelator Desferal prevents the degeneration of dopaminergic neurons in the substantia nigra (SN) induced by iron-overload in rats. Using fast cyclic voltammetry, tyrosine hydroxylase (TH) immunohistochemistry, Perls' iron staining, and high-performance liquid chromatography-electrochemical detection, we measured the degeneration of dopaminergic neurons and increased iron content in the SN of rats overloaded with iron dextran and assessed the effects of treatment with Desferal. The results showed that iron dextran overload increased the iron content in the SN, decreased dopamine release and content, and reduced the numbers of TH-immunoreactive neurons. Treatment with Desferal prevented the increased iron content in the SN. As a result, dopamine release and content remained at almost normal levels, while the numbers of TH-immunoreactive neurons remained at control values. This study suggests that the iron chelator Desferal is neuroprotective against iron-overload, so iron chelators that can cross the blood-brain barrier may have the potential to treat cases where abnormal iron accumulation in the brain is associated with the degenerative processes, as in Parkinson's disease.  相似文献   

15.
We investigated the effect of an injection of 6-hydroxydopamine (6-OHDA) into the rat medial forebrain bundle (MFB) on the degeneration and the function of the dopaminergic cell bodies in the substantia nigra (SN) 3 and 5 weeks after lesioning. After injection of 6-OHDA into the MFB a complete loss of dopamine content was apparent in the striatum 3 weeks after lesioning. In the SN the amount of tyrosine hydroxylase-immunoreactive dopamine cells decreased gradually, with a near-complete lesion (> 90%) obtained only after 5 weeks, indicating that neurodegeneration of the nigral cells was still ongoing when total dopamine denervation of the striatum had already been achieved. Baseline dialysate and extracellular dopamine levels in the SN, as determined by in vivo microdialysis, were not altered by the lesion. A combination of compensatory changes of the remaining neurones and dopamine originating from the ventral tegmental area may maintain extracellular dopamine at near-normal levels. In both intact and lesioned rats, the somatodendritic release was about 60% tetrodotoxin (TTX) dependent. Possibly two pools contribute to the basal dopamine levels in the SN: a fast sodium channel-dependent portion and a TTX-insensitive one originating from diffusion of dopamine. Amphetamine-evoked dopamine release and release after injection of the selective dopamine reuptake blocker GBR 12909 were attenuated after a near-complete denervation of the SN (5 weeks after lesioning). So, despite a 90% dopamine cell loss in the SN 5 weeks after an MFB lesion, extracellular dopamine levels in the SN are kept at near-normal levels. However, the response to a pharmacological challenge is severely disrupted.  相似文献   

16.
目的探讨线刀损毁内侧前脑束建立的帕金森病模型大鼠行为学改变与黒质致密部多巴胺能神经元存活率之间的相关性。方法采用可伸缩线刀切断大鼠内侧前脑束建立单侧损伤的帕金森病大鼠模型;皮下注射阿朴吗啡后测试大鼠的旋转行为;取中脑黑质切片进行酪氨酸羟化酶免疫组织化学染色,通过计数黑质致密部酪氨酸羟化酶阳性神经元的数目得到多巴胺能神经元存活率。结果模型组大鼠损伤侧酪氨酸羟化酶阳性神经元的数目明显下降,而由阿朴吗啡诱导的旋转行为明显增加。结论线刀损毁术后4周,帕金森病模型大鼠由阿朴吗啡诱导的旋转行为和黒质致密部多巴胺能神经元存活率之间存在着明显的负相关。  相似文献   

17.
帕金森病(Parkinson’s disease,PD)是常见的中枢神经系统退行性疾病之一,其主要病理学特征是中脑黑质部的多巴胺(dopamine,DA)能神经元选择性丢失。虽然已发现基因易感性、衰老、环境毒素等因素与PD发病有关,但导致DA能神经元退行性死亡的细胞分子机制仍不明确。DA代谢是DA能神经元中的重要生理过程,其过程与黑质DA能神经元丢失密切相关,DA代谢异常参与了PD神经元变性相关的诸多病理学过程,例如铁代谢异常、α-突触核蛋白异常聚集、内质网应激、蛋白质降解功能障碍、神经炎症反应等。本文就DA代谢异常在PD相关病理学过程中的作用进行综述。  相似文献   

18.
After treatment with the neurotoxin, 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP), there was a severe loss of dopamine (DA) at all examined sites in the striatum, both in those monkeys which remained asymptomatic (77-99%) and in one monkey which developed severe parkinsonian disability (94-99%). However, the asymptomatic animals had normal DA concentration in the substantia nigra (SN); yet in the symptomatic animal DA was largely depleted in the central (86%) and medial (94%), but not lateral (8%) regions of the SN. The HVA/DA ratio was raised in the striatum of all MPTP-treated animals. In the SN though, this ratio was elevated only in the symptomatic animal, in the central and medial, but not lateral regions. The contralateral half of these brains were examined for DA histofluorescence. The SN of asymptomatic animals had a slight increase in lipofuscin fluorescence within dopaminergic neurons and a small reduction in the number of dopaminergic cells, while fluorescent intensity of individual neurons was unchanged. The SN of the symptomatic animal displayed a sharp decline in the number of DA neurons along with an increase in autofluorescent pigment granules; these changes were most pronounced in the central and medial regions of the SN. These data suggest that after MPTP the terminals of the nigrostriatal pathway are affected before the cell bodies. In the one symptomatic animal emergence of parkinsonian disability corresponded with a marked loss of DA neurons and DA concentration in the central and medial regions of the SN. In the control monkeys a gradient in the concentration of amines and metabolites was observed within the SN; the lateral region contained the highest and the medial region the lowest concentration.  相似文献   

19.
For these studies, young (8-9 years), middle-aged (14-17 years) and aged (23-28 years) rhesus monkeys were used as a model of normal aging in humans to investigate changes in dopamine (DA)-containing neurons in senescence. Aged monkeys exhibited significant age-related motoric declines as compared to the young animals. In vivo microdialysis studies showed that basal levels of the DA metabolites, homovanillic acid (HVA) and 3,4-dihydroxyphenylacetic acid (DOPAC) were diminished by 44% and 79%, respectively, in the substantia nigra (SN) of aged monkeys. In addition, d-amphetamine-evoked overflow of DA in the SN was diminished by 30% in the middle-aged animals and 67% in the aged monkeys. Post-mortem measures of DA and DA metabolites showed significant decreases in DA (20%), DOPAC (47%) and HVA (22%) levels in the putamen and a 25% decline in HVA tissue levels in the SN of the aged monkeys as compared to the young animals. Unbiased stereological cell counting of tyrosine hydroxylase (TH)-immunoreactive neurons in the SN showed a small (15-20%) but significant age-related decline in TH-positive neurons. In addition, there was a small (15-20%) but significant decline in TH-positive fiber density and TH-positive cell size. In comparison to the massive loss of DA neurons responsible for the movement dysfunctions seen in Parkinson's disease, pronounced functional changes in DA release in the SN and putamen may significantly contribute to the motoric dysfunctions characterizing normal aging in rhesus monkeys.  相似文献   

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