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11.
Fluoride-resistant acid phosphatase (FRAP) activity as characterized in rat and mouse was studied in sensory ganglion and spinal cord of several mammals, using both the Gomori lead-ion capture and azo-dye coupling methods. FRAP was specifically localized to small- and medium-diameter primary afferent neurons and inner substantia gelatinosa of all nonrodent animals studied, including rabbit, cat, dog, monkey, cow, and human. In rabbit, sciatic nerve transection resulted in depletion of enzymatic activity in ipsilateral spinal cord dorsal horn in a pattern corresponding to the distribution of central terminals of the nerve. Further analysis of the substrate specificity and pH dependence of FRAP was carried out primarily in rat sensory ganglion and spinal cord; the enzyme was found to hydrolyze a wide variety of phosphomonoesters in a relatively nonselective manner at both pH 5 and pH 7, including 5′-nucleotides, phosphorylated amino acids, and several exogenous compounds.

The visualization of FRAP-like activity in several nonrodent species is discussed with reference to previous work indicating its presence only in mouse and rat. Technical factors are considered that limit the applicability of the lead-ion histochemical method in demonstration of FRAP and in efforts at functional characterization of the enzyme, especially in light of its ability to hydrolyze a broad spectrum of substrates over a wide pH range. Alternative interpretations of the expression of acid phosphatase activity in a select class of small sensory ganglion cells are suggested, including several possible nonsynaptic roles of FRAP in the peripheral nervous system.  相似文献   
12.
Prior intracellular recording and labeling experiments have documented local-circuit and projection neurons in the spinal trigeminal (V) nucleus with axons that arborize in more rostral and caudal spinal trigeminal subnuclei and nucleus principalis. Anterograde tracing studies were therefore carried out to assess the origin, extent, distribution, and morphology of such intersubnuclear axons in the rat trigeminal brainstem nuclear complex (TBNC). Phaseolus vulgaris leucoagglutinin (PHA-L) was used as the anterograde marker because of its high sensitivity and the morphological detail provided. Injections restricted to TBNC subnucleus caudalis resulted in dense terminal labeling in each of the more rostral ipsilateral subnuclei. Subnucleus interpolaris projected ipsilaterally and heavily to magnocellular portions of subnucleus caudalis, as well as subnucleus oralis and nucleus principalis. Nucleus principalis, on the other hand, had only a sparse projection to each of the caudal ipsilateral subnuclei. Intersubnuclear axons most frequently traveled in the deep bundles within the TBNC, the V spinal tract, and the reticular formation. They gave rise to a number of circumscribed, highly branched arbors with many boutons of the terminal and en passant types.

Retrograde single- or multiple-labeling experiments assessed the cells giving rise to TBNC intersubnuclear collaterals. Horseradish peroxidase (HRP) and/or fluorescent tracer injections into the thalamus, colliculus, cerebellum, nucleus principalis, and/or subnucleus caudalis revealed large numbers of neurons in subnuclei caudalis, interpolaris, and oralis projecting to the region of nucleus principalis. Cells projecting to more caudal spinal trigeminal regions were most numerous in subnuclei interpolaris and oralis. Some cells in lamina V of subnucleus caudalis and in subnuclei interpolaris and oralis projected to thalamus and/or colliculus, as well as other TBNC subnuclei. Such collateral projections were rare in nucleus principalis and more superficial laminae of subnucleus caudalis. TBNC cells labeled by cerebellar injections were not double-labeled by tracer injections into the thalamus, colliculus, or TBNC.

These findings lend generality to currently available data obtained with intracellular recording and HRP labeling methods, and suggest that most intersubnuclear axons originate in TBNC local-circuit neurons, though some originate in cells that project to midbrain and/or diencephalon.  相似文献   
13.
Transganglionic transport of horseradish peroxidase conjugated to wheatgerm agglutinin (HRP:WGA) entrapped in hypoallergenic polyacrylamide gel was used to study the patterns of termination of primary afferents that innervate the upper and lower tooth pulps within the trigeminal sensory nuclear complex (TSNC) of the monkey. HRP:WGA injections were also made into the lower incisors and molars, in order to examine the topographic arrangement of pulpal afferent projections. HRP-labeled pulpal afferents innervating lower and upper teeth projected ipsilaterally to the rostral subnucleus dorsalis (Vpd) and caudal subnucleus ventralis (Vpv) of the nucleus principalis (Vp); the rostrodorsomedial (Vo.r) and dorsomedial (Vo.dm) subdivisions of the nucleus oralis (Vo); the dorsomedial subdivision of the nucleus interpolaris (Vi); and laminae I—II and/or V of the nucleus caudalis (Vc) at its rostralmost level. The HRP-labeled terminals from upper and lower pulpal afferents formed a rostrocaudal column from the midlevel of Vp to the rostral tip of Vc. The label in Vp and Vo was considerably dense, but the column of terminals was interrupted at the Vpd-Vpv transition. The label in Vi and Vc was much less dense compared to that in the rostral nuclei, and the column of terminals was interrupted frequently. The representation of the upper and lower teeth in TSNC was organized in a somatotopic fashion that varied from one subdivision to the next, though their terminal zones overlapped within Vpd. The upper and lower teeth were represented in Vpv, Vo.r, Vo.dm, Vi, and Vc in a ventrodorsal, dorsoventral, lateromedial, lateromedial, and lateromedial sequence, respectively. Topographic arrangement was also noticed for the projections of pulpal afferents from the lower incisors and molars: The representations of the lower incisors and molars in Vpv, Vo.r, Vo.dm, Vi, and Vc were organized in a lateromedial, dorsoventral, ventrodorsal, ventrodorsal, and lateromedial sequence, respectively. The present results indicating sparse projections from pulpal afferents in the monkey's Vc are in good correspondence with a clinical report that trigeminal tractotomy just rostral to the obex has no significant effect on dental pain perception in patients. Furthermore, the present study indicates that projection patterns of pulpal afferents—which include the termination sites, the density of terminations between nuclei, and topographic arrangement—differ among animal species.  相似文献   
14.
目的:分析携带基因突变和未携带基因突变的特发性扩张型心肌病(IDCM)患者的临床发病及预后的差异性。方法:收集2011年01月-2014年09月于南京鼓楼医院就诊的IDCM患者115例,经靶向二代测序鉴定后分为基因突变组和未突变组,出院后对两组患者进行定期随访,将两组患者的临床资料及随访结果进行统计学分析。结果:两组患者的一般临床特征(如性别比例、首发症状年龄、血压、糖尿病比例等)无显著差异(P0.05);辅助检查特征(如左室射血分数、左室舒张末内径、室壁厚度、QRS-T夹角和血肌酐水平等)无显著差异(P0.05);治疗情况(如药物和器械治疗)无差异(P0.05);随访资料(如再入院和生存分析)亦无统计学差异(P0.05,Log rank P=0.12);将性别比例、是否吸烟、是否合并糖尿病、是否植入器械、是否发生突变等临床参数进行Cox回归分析,发现上述参数未影响患者的临床预后(P0.05)。结论:本组资料显示携带基因突变的IDCM患者临床发病及预后较未携带突变者无显著差异。  相似文献   
15.
Cranial placodes are ectodermal regions that contribute extensively to the vertebrate peripheral sensory nervous system. The development of the ophthalmic trigeminal (opV) placode, which gives rise only to sensory neurons of the ophthalmic lobe of the trigeminal ganglion, is a useful model of sensory neuron development. While key differentiation processes have been characterized at the tissue and cellular levels, the signaling pathways governing opV placode development have not. Here we tested in chick whether the canonical Wnt signaling pathway regulates opV placode development. By introducing a Wnt reporter into embryonic chick head ectoderm, we show that the canonical pathway is active in Pax3+ opV placode cells as, or shortly after, they are induced to express Pax3. Blocking the canonical Wnt pathway resulted in the failure of targeted cells to adopt or maintain an opV fate, as assayed by the expression of various markers including Pax3, FGFR4, Eya2, and the neuronal differentiation markers Islet1, neurofilament, and NeuN, although, surprisingly, it led to upregulation of Neurogenin2, both in the opV placode and elsewhere in the ectoderm. Activating the canonical Wnt signaling pathway, however, was not sufficient to induce Pax3, the earliest specific marker of the opV placode. We conclude that canonical Wnt signaling is necessary for normal opV placode development, and propose that other molecular cues are required in addition to Wnt signaling to promote cells toward an opV placode fate.  相似文献   
16.
摘要 目的:探讨纳布啡鞘内注射对糖尿病神经痛(diabetic neuropathic pain, DNP)模型大鼠行为能力及背根神经节瞬时受体电位V1(transient receptor potential V1,TRPV1)表达的影响。方法:将糖尿病神经痛模型大鼠(n=48)随机平方为三组-模型组、纳布啡1组与纳布啡2组,每组16只。纳布啡1组与纳布啡2组分别给予纳布啡鞘内注射0.5 μg/10 μL与1.0 μg/10 μL,模型组给予注射等剂量的0.9 %氯化钠溶液,每天1次。分别于治疗第7 d、第14 d,采用血糖仪测定与记录空腹血糖(fasting blood glucose,FBG)水平并进行机械痛阈检测;治疗第14 d、第28 d,采用酶联免疫法检测血清IL-6与TNF-α含量,采用免疫印迹法检测背根神经节TRPV1蛋白的相对表达。结果:模型组、纳布啡1组与纳布啡2组治疗第7 d、第14 d的空腹血糖水平都高于20.00 mmol/L,组内与组间对比差异不具有统计学意义(P>0.05)。纳布啡1组与纳布啡2组治疗第7 d、第14 d的机械痛阈高于模型组(P<0.05),也高于治疗前(P<0.05),纳布啡2组与纳布啡1组差异具有统计学意义(P<0.05)。纳布啡1组与纳布啡2组治疗第14 d、第28 d的血清白细胞介素(Interleukin,IL)-6与肿瘤坏死因子(Tumor necrosis factor,TNF)-α含量明显低于模型组(P<0.05),纳布啡2组明显低于纳布啡1组(P<0.05)。纳布啡1组与纳布啡2组治疗第14 d、第28 d的背根神经节TRPV1相对表达水平明显低于模型组(P<0.05),纳布啡2组明显低于纳布啡1组(P<0.05)。结论:纳布啡鞘内注射在糖尿病神经痛模型大鼠的应用能改善行为能力,抑制背根神经节TRPV1的表达,还可抑制血清IL-6与TNF-α的释放,从而发挥镇痛治疗效用。  相似文献   
17.
摘要 目的:探讨炙甘草汤对特发性肺纤维化(Idiopathic pulmonary fibrosis,IPF)小鼠纤维化相关指标的影响,挖掘炙甘草汤治疗IPF的机制。方法:将60只SPF级ICR小鼠随机分为空白组、模型组、吡菲尼酮组和炙甘草汤组,除空白组外,其余组采用气管滴注博莱霉素(5 mg/kg)方法复制IPF小鼠模型,并给予相应的药物治疗。空白组和模型组小鼠灌胃生理盐水,吡菲尼酮组和炙甘草汤组小鼠分别灌胃吡菲尼酮(50 mg/kg)和炙甘草汤(25.4 g/kg),各组均连续给药4周后取材,记录各组小鼠的死亡情况,计算各组肺系数;观察肺组织切片病理变化;碱水解法检测肺组织羟脯氨酸(HYP)含量;比色法检测肺组织丙二醛(MDA)含量、超氧化物歧化酶(SOD)和谷胱甘肽过氧化物酶(GSH-Px)的活性;免疫组化、荧光定量PCR检测α-SMA、COL1A蛋白和mRNA的表达水平。结果:炙甘草汤组小鼠死亡数减少,肺系数显著降低(P<0.01),炎性细胞浸润和胶原沉积面积大量减少,肺泡结构逐渐修复,HYP、MDA含量降低(P<0.01),SOD活性(P<0.05)和GSH-Px活性(P<0.01)显著增强;α-SMA、COL1A蛋白和mRNA表达均降低(P<0.01)。结论:炙甘草汤通过抑制氧化应激反应,从而抑制成纤维细胞活化,减少细胞质基质沉积,从而减缓IPF疾病进程。  相似文献   
18.
The literature on gait analysis in Vascular Parkinsonism (VaP), addressing issues such as variability, foot clearance patterns, and the effect of levodopa, is scarce. This study investigates whether spatiotemporal, foot clearance and stride-to-stride variability analysis can discriminate VaP, and responsiveness to levodopa.Fifteen healthy subjects, 15 Idiopathic Parkinson's Disease (IPD) patients and 15 VaP patients, were assessed in two phases: before (Off-state), and one hour after (On-state) the acute administration of a suprathreshold (1.5 times the usual) levodopa dose. Participants were asked to walk a 30-meter continuous course at a self-selected walking speed while wearing foot-worn inertial sensors. For each gait variable, mean, coefficient of variation (CV), and standard deviations SD1 and SD2 obtained by Poincaré analysis were calculated. General linear models (GLMs) were used to identify group differences. Patients were subject to neuropsychological evaluation (MoCA test) and Brain MRI.VaP patients presented lower mean stride velocity, stride length, lift-off and strike angle, and height of maximum toe (later swing) (p < .05), and higher %gait cycle in double support, with only the latter unresponsive to levodopa. VaP patients also presented higher CV, significantly reduced after levodopa. Yet, all VaP versus IPD differences lost significance when accounting for mean stride length as a covariate.In conclusion, VaP patients presented a unique gait with reduced degrees of foot clearance, probably correlated to vascular lesioning in dopaminergic/non-dopaminergic cortical and subcortical non-dopaminergic networks, still amenable to benefit from levodopa. The dependency of gait and foot clearance and variability deficits from stride length deserves future clarification.  相似文献   
19.
Two experiments examined time/concentration trading for the detection of carbon dioxide, an irritant with little or no odor. Experiment 1 employed the nasal lateralization method: subjects attempted to determine which nostril received carbon dioxide and which received pure air when presented simultaneously. Experiment 2 employed a temporal, two-alternative, forced-choice, detection paradigm with monorhinal stimulation. In both experiments, stimulus duration was varied at a number of fixed concentrations to determine the shortest, detectable pulse. Under both conditions, threshold pulse duration decreased as stimulus concentration increased. Power functions with exponents of less than negative one described the data quite well: More than a twofold increase in duration was needed to compensate for a twofold decrease in concentration. Thus, for carbon dioxide, the nasal trigeminal system functions as an imperfect integrator at threshold-level.  相似文献   
20.
It is not possible to accurately predict the perceptual response to odorants and odorant mixtures without understanding patterns of suppression and facilitation that result from interactions between the olfactory and trigeminal systems. The current study extends previous findings by exploring the effect of intensive training on the interaction between these systems and also by using a different mixed chemosensory stimulus to examine whether the principles established in earlier studies generalize to different odorants. Stimuli were chosen so as to selectively activate the olfactory (H2S) and trigeminal (CO2) nerves. In addition, linalool was included as a stimulus that activated both systems. Thirty-five participants (19 men, 16 women) rated the intensity of each stimulus when presented both alone and in binary mixtures (linalool + H2S, and linalool + CO2). Chemosensory event-related potentials were obtained from three recording positions. Analysis of intensity ratings showed that linalool was significantly less intense than the other stimuli when presented alone. In binary mixtures, H2S was strongly suppressed by linalool. One week of intensive odor training produced significant and specific reductions in the intensity of linalool and H2S, both alone and in their mixture. Training with a different odor (champignol) had no effect. Chemosensory event-related potential data confirmed previous findings showing changes in topographical distribution that reflected the degree of trigeminal activity. Binary mixtures generally produced larger amplitudes than single stimuli. Latencies clearly differentiated between the three single stimuli and the binary mixtures. Changes were observed in event-related potentials that reflected those obtained for intensity ratings in that they were observed for linalool and H2S in the linalool trained group only. The amplitude of the late 'endogenous' component (P3) was significantly decreased for these odors at frontal recording sites. In summary, strong and specific training effects were observed in intensity ratings for participants trained with the test odor (linalool), but not for those trained with a different odor. This was supported by a significant decrease of amplitudes of the event-related potentials at frontal recording sites following training with the test odor only  相似文献   
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