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1.
研究异丙肾上腺对心内神经节中肽能神经递质SS的影响。本在大鼠皮下注射异丙肾上腺素5mg/kg,连续三天,固定后取心房后壁,用免疫组织化学结合图像分析方法观察大鼠心骨神经节中肽能递质SS的变化,对照组大鼠心内神经节中含有SS免疫反应(SS-IR)性神经纤维和细胞,实验组大鼠心内神经节中SS-IR阳性神经纤维和神经元的积分光密度均明显减低。结果说明异丙肾上腺素可降低心内神经节中SS含量,提示,异丙肾上腺素的正性变时和变力作用可能通过降低SS的含量来实现。  相似文献   

2.
应用免疫组织化学和原位杂交方法研究了大鼠心内神经节细胞中SS的分布及其mRNA表达。结果发现,大鼠心内神经节中有SS-IR阳性神经纤维和细胞,心内神经部分细胞浆中有SSmRNA表达,表明大鼠心内神经节细胞有SS合成和贮存。用小剂量6-OH-DA选择性损毁心内交感神经纤维后,心内神经节中SS-IR阳性神经纤维和细胞的积分光密度均有不同程度增强,反映了心内交感神经和付交感神经的相互抑制作用。  相似文献   

3.
为了探讨心内神经节中去甲肾上腺素(NA)、乙酰胆碱(ACh)和NPY的相互作用,本实验应用6-OH-DA选择性切除大鼠心脏交感神经纤维,然后应用荧光和酶组织化学法、免疫组织化学结合图像分析法观察了大鼠心内神经节NA、AChE活性和NPY的变化。结果显示:实验组大鼠心内神经节中儿茶酚胺荧光反应阳性和NPY免疫反应(NPY-IR)阳性的神经纤维明显减少,AChE阳性神经纤维明显增多,AChE反应性神经元积分光密度增加,而儿茶酚胺荧光反应和NPY-IR阳性神经元变化不明显。结果提示:1.交感神经化学切除后大鼠心内神经节中NA、AChE活性和NPY出现不同的变化,体现了心脏交感神经和副交感神经的相互抑制作用;2.心内神经节可能含有两种性质的NPY,即交感性和非交感性NPY。  相似文献   

4.
研究异丙肾上腺对心内神经节中肽能神经递质 SS的影响 ,本文在大鼠皮下注射异丙肾上腺素 5 m g/ kg,连续三天 ,固定后取心房后壁 ,用免疫组织化学结合图像分析方法观察大鼠心内神经节中肽能递质 SS的变化。对照组大鼠心内神经节中含有 SS免疫反应 (SS- IR)阳性神经纤维和细胞 ;实验组大鼠心内神经节中 SS- IR阳性神经纤维和神经元的积分光密度均明显减低。结果说明异丙肾上腺素可降低心内神经节中 SS含量 ,提示 ,异丙肾上腺素的正性变时和变力作用可能通过降低 SS的含量来实现。  相似文献   

5.
本研究应用乙醛酸诱发儿茶酚胺(CA)荧光技术观察大鼠肾上腺素(NA)能神经在脊神经节内的分布;并应用HRP顺、逆行追踪技术对脊神经节内NA能神经纤维的起源及其与脊神经节神经元的关系进行了探讨。荧光组织化学观察发现、有些神经节神经元胞体周围分布有带膨体的NA能神经末梢;有的紧密围绕脊神经节细胞——卫星细胞复合体。颈上交感神经节内注射霍乱毒素B亚单位结合HRP(CB┐HRP),在同侧C3~6节段脊神经节内可见标记的点状纤维末梢紧邻于节细胞旁。T11~L2节段脊神经节内注射HRP后,在同侧椎旁交感链(T9~L1)内可见标记的交感节后神经元胞体。上述实验结果表明,交感节后神经元发出节后纤维可直接到达脊神经节内,与节细胞发生接触。本研究提示、交感神经在脊神经节水平可能参与躯体初级传入信息的调制  相似文献   

6.
异丙肾上腺素是临床常用的心脏骤停的抢救药物。为了研究该药对心内神经节中肽能递质的影响,本文在大鼠皮下注射异丙肾上腺素5mg/kg,连续三天,后固定取心房后壁,用免疫组化结合图像分析,观察心内神经节中肽能递质VIP的变化。对照组大鼠心内神经节中含有VIP免疫反应(VIP-IR)阳性神经纤维和胞体;实验组大鼠心内神经节中含有VIP-IR阳性神经纤维和胞体呈不同程度增多。其中VIP-IR阳性神经纤维积分光密度较对照组增加25.3%,而神经胞体积分光密度只增加8.1%。结果提示:1.大鼠心内神经节中VIP-IR阳性神经纤维可能有两个来源:即心内VIP-IR阳性神经节细胞和心外副交感神经元;2.异丙肾上腺素对心脏的作用并非单一的直接作用,其中部分是通过影响心内神经节中肽能递质的变化而发挥间接作用。  相似文献   

7.
大鼠膀胱及其牵涉区的初级传入神经起源   总被引:1,自引:0,他引:1  
目的:在确定大鼠膀胱痛牵涉区的基础上,明确膀胱及其牵涉区的初级传入神经的起源。方法:经静脉注入Evans Blne,观察染料渗出和皮肤部位;将CB-HRP分别注入膀胱壁内或牵拉区皮下,观察和计数阳性标记细胞出现的部位及数目。结果:深蓝色的染料渗漏斑仅出现在耻骨联合附近皮区,膀胱的CB-HRP阳性标记神经元胞体主要集中在L-L3和L6、S1节段背根神经节(DRG)中,牵涉区的则主要分布在L2、L3节段DRG。结论:大鼠的膀胱痛牵涉区主要位于耻骨联合附近的皮肤,膀胱的初级传入神经起源广泛,而牵涉区的初级传入神经起源局限,二者在L2、L3节段DRG有一定的重叠分布。  相似文献   

8.
为了研究大鼠“延髓内脏带”投射至缰核之儿茶酚胺能神经元在躯体伤害性刺激后的c-fos表达,使用了WGA-HRP逆行追踪法与抗Fos和抗酪氨酸羟化酶(TH)免疫组织化学染色结合的三重标记方法。将WGA-HRP定位注射入右侧缰核,48h后向右前爪跖部皮下注射50ml8%For-malin,2h后动物被处死,用500ml含4%多聚甲醛的0.1mol/L磷酸缓冲液(PB,pH7.4)灌流固定。取出WGA-HRP注射区,脊髓颈段和延髓,切制连续冠状冰冻切片(厚40μm)。首先用四甲基联苯胺(TMB)对WGA-HRP注射区和延髓切片进行组织化学反应,然后脊髓和延髓切片先进行抗Fos的免疫组化染色,延髓切片再进行抗TH的免疫组化反应。结果在光镜下于延髓内脏带区观察到七种标记神经元,即Fos、TH抗标记神经元,HRP逆行标记神经元;Fos/HRP、Fos/TH、HRP/TH双标记神经元。和Fos/HRP/TH三标记神经元。本文结果证明:延髓内脏带内某些投射至缰核的儿茶酚胺能神经元可能参与躯体伤害性刺激的传导和调控。  相似文献   

9.
Song G  Li Q  Shao FZ 《生理学报》2001,53(5):391-395
实验在6只成年猫上进行,将WGA-HRP微量注入C5膈神经核内,通过逆行追踪及5-HT免疫组织化学FITC荧光双重标记方法,研究了中缝核5-HT能神经元向脊髓膈神经核的投射,同时观察了延髓膈肌产运动神经元接受5-HT能纤维投射的情况,结果在中缝苍白核观察到较多的HRP-5-HT双标记神经元,在中缝大核,中缝隐核观察到少数散在的双标记神经元,在延髓疑核,孤束核腹外侧区域的HRP单核记神经元(即膈肌前运动神经元)周围观察到5-HT能轴突末梢,结构表明:发自中缝苍白核5-HT能神经元的传出纤维可投射到脊髓膈神经核,延髓膈肌前运动神经元接受5-HT能纤维的传入投射。  相似文献   

10.
将HRP(horseradish peroxidase,辣根过氧化物酶)注入7只家兔肠系膜上神经节内,观察逆行标记神经元胞体在脊神经节内的节段性分布。结果显示,标记细胞见于双侧T5(胸5)-L3(腰3)脊神经节内,较集中地分布于T8-T12节段,高峰在T9和T10。两侧脊神经节内的标记细胞数及节段分布模式无显著差异。标记细胞散布于脊神经节各部,大都是50μm以下的中,小型细胞。研究结果揭示了肠系膜  相似文献   

11.
The presence of vasoactive intestinal polypeptide (VIP) has been analyzed in fibers and neurons within the guinea pig intrinsic cardiac ganglia and in fibers innervating cardiac tissues. In whole-mount preparations, VIP-immunoreactive (IR) fibers were present in about 70% of the cardiac ganglia. VIP was co-localized with neuronal nitric oxide synthase (nNOS) in fibers innervating the intrinsic ganglia but was not present in fibers immunoreactive for pituitary adenylate cyclase-activating polypeptide, choline acetyltransferase (ChAT), tyrosine hydroxylase, or substance P. A small number of the intrinsic ChAT-IR cardiac ganglia neurons (approximately 3%) exhibited VIP immunoreactivity. These few VIP-IR cardiac neurons also exhibited nNOS immunoreactivity. After explant culture for 72 h, the intraganglionic VIP-IR fibers degenerated, indicating that they were axons of neurons located outside the heart. In cardiac tissue sections, VIP-IR fibers were present primarily in the atria and in perivascular connective tissue, with the overall abundance being low. VIP-IR fibers were notably sparse in the sinus node and conducting system and generally absent in the ventricular myocardium. Virtually all VIP-IR fibers in tissue sections exhibited immunoreactivity to nNOS. A few VIP-IR fibers, primarily those located within the atrial myocardium, were immunoreactive for both nNOS and ChAT indicating they were derived from intrinsic cardiac neurons. We suggest that, in the guinea pig, the majority of intraganglionic and cardiac tissue VIP-IR fibers originate outside of the heart. These extrinsic VIP-IR fibers are also immunoreactive for nNOS and therefore most likely are a component of the afferent fibers derived from the vagal sensory ganglia. This work was supported by NIH grant HL65481 (R.L.P.) and HL54633 (D.B.H.). Use of the DeltaVision Restoration microscope was provided through the Imaging/Physiology Core supported by NIH Grant P20 RR16435 from the COBRE program of the National Center for Research Resources  相似文献   

12.
Summary By employing biochemical assay and histochemical enzyme techniques the effect of preganglionic sympathectomy on the cholinesterase (ChE) activity in the superior cervical ganglia of rats and hamsters was investigated. Biochemical assays indicate that the ChE activity in the superior cervical ganglia of adult rats and hamsters is 57.19 and 28.63 respectively (expressed in u moles acetylcholine hydrolyzed per min per g of tissue); two weeks after preganglionic denervation, about 50% and 60% of ChE activity are lost respectively. Histochemical enzyme examination reveals that in the rat superior cervical ganglion, the majority of the neurons are adrenergic with weak to moderate acetylcholinesterase (AChE) reaction and the minority of the neurons are cholinergic with strong AChE activity, while only one type of adrenergic neurons exhibits a weak AChE activity in the hamster superior cervical ganglion. The AChE activity is localized in the perinuclear area, in the cisternae of the rough surfaced endoplasmic reticulum, in the Golgi complex and on the plasma membrane of the hamster's neurons; it is mainly localized in the cisternae of the rough surfaced endoplasmic reticulum of the rat's neurons. AChE reaction product is also detected on the axolemmal membranes of the preganglionic nerve fibers in the sympathetic ganglia of rats and hamsters.After preganglionic sympathectomy, the AChE activity in the adrenergic neurons and in the preganglionic unmyelinated nerve fibers is markedly reduced, whereas the cholinergic neurons and preganglionic myelinated nerve fibers remain unchanged. On the basis of these results two conclusions have been reached: (1) The fact that strong AChE activity localized in the cholinergic neurons and preganglionic myelinated fibers is not influenced by denervation, suggests that these structures are able to produce AChE. (2) The reduction of AChE activity in the rat and hamster superior cervical ganglia two weeks after preganglionic denervation, observed by histochemical examination, can be correlated with a concomitant measurable reduction determined by biochemical assays.Supported in part by a grant from the National Science Council, Republic of China. The author wishes to express his gratitude to the Department of Pharmacology, College of Medicine, National Taiwan University, for the use of its equipment for biochemical assays  相似文献   

13.
The lipid content and composition of rat superior cervical ganglia containing sympathetic motor neurons and nodose ganglia containing parasympathetic sensory neurons were studied for the first time to elucidate the mechanism of the different effects of exogenous gangliosides on these neurons in the culture medium. The ganglioside content of the superior cervical ganglia was almost 3-times that of the nodose ganglia. Although both ganglia contained GM3, GD3, GD1b and GT1b as major gangliosides, the nodose ganglia additionally contained a significant amount of sialosyllactoneotetraosylceramide LM1 (10% of total sialic acids). Contrasting with nodose ganglia, vagus fiber and dorsal root ganglia of rats, superior cervical ganglia had a higher content of sulfatide than galactosylceramide. The phospholipid content was lower in superior cervical ganglia than in nodose ganglia. Superior cervical ganglia contained less ethanolamine plasmalogen and more phosphatidylcholine than nodose ganglia. Sphingomyelin in superior cervical ganglia contained mainly medium-chain fatty acids, while that in nodose ganglia contained mainly longer-chain fatty acids. Differences in the fatty acid composition of glycerophospholipids were also observed. The results indicate that the properties of neuronal cell membranes from superior cervical ganglia and nodose ganglia are quite different, and that the differences may reflect the physiological roles of these ganglia.  相似文献   

14.
The localization of the sympathetic postganglionic and parasympathetic preganglionic neurons innervating the monkey heart were investigated through retrograde axonal transport with horseradish peroxidase (HRP). HRP (4 mg or 30 mg) was injected into the subepicardial and myocardial layers in four different cardiac regions. The animals were euthanized 84-96 hours later and fixed by paraformaldehyde perfusion via the left ventricle. The brain stem and the paravertebral sympathetic ganglia from the superior cervical, middle cervical, and stellate ganglia down to the T9 ganglia were removed and processed for HRP identification. Following injection of HRP into the apex of the heart, the sinoatrial nodal region, or the right ventricle, HRP-labeled sympathetic neurons were found exclusively in the right superior cervical ganglion (64.8%) or in the left superior cervical ganglion (35%). Fewer labeled cells were found in the right stellate ganglia. After HRP injection into the left ventricle, labeled sympathetic cells were found chiefly in the left superior cervical ganglion (51%) or in the right superior cervical ganglion (38.6%); a few labeled cells were seen in the stellate ganglion bilaterally and in the left middle cervical ganglion. Also, in response to administration of HRP into the anterior part of the apex, anterior middle part of the right ventricle, posterior upper part of the left ventricle, or sinoatrial nodal region, HRP-labeled parasympathetic neurons were found in the nucleus ambiguus on both the right (74.8%) and left (25.2%) sides. No HRP-labeled cells were found in the dorsal motor nucleus of the vagus on either side.  相似文献   

15.
Abstract— Immunosympathectomy was produced in Sprague-Dawley rats by the subcutaneous injection of 300 units of nerve growth factor (NGF)-antiserum (1.56 mg of freeze-dried serum)/g/day for 6 days, the first dose being given 5–8 hr after birth. The immunosympathectomized rats and their control littermates were killed 2½ and 7 months after birth. Ganglionic acetylcholinesterase and pseudocholinesterase activities were measured by an adaption (Kungman , Kungman and Pouszczuk , 1968) of the colorimetric method of Ellman , Courtney , Andres and Featherstone (1961). Following immunosympathectomy the activities of these enzymes decreased significantly in superior cervical, stellate, thoracic chain, cardiac (abdominal), coeliac and superior mesenteric ganglia. The reduction of the acetylcholinesterase activity was greater than expected in a number of sympathetic ganglia, e.g. superior cervical, stellate, coeliac and cardiac ganglia, if one considered that only the postganglionic neurons were affected by immunosympathectomy. The activities of these enzymes were also reduced in the cervical sympathetic trunks from NGF-antiserum-treated rats. By means of decentralization and axotomy it was shown that 45 per cent of the total ganglionic acetylcholinesterase activity was associated with the preganglionic and 55 per cent with the postganglionic elements of the superior cervical ganglion from control rats. It was concluded that immunosympathectomy also affects the preganglionic sympathetic neurons. It is not known whether this is a primary effect of the NGF-antiserum or a secondary effect resulting from the absence of over 90 per cent of the postganglionic sympathetic cell bodies.  相似文献   

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