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941.
不同月龄大鼠空肠粘膜上皮细胞的形态、增殖及凋亡   总被引:1,自引:0,他引:1  
为研究雄性大鼠空肠在发生、发育和衰老过程中上皮细胞增殖与凋亡形态学的变化,本实验采用增殖细胞核抗原(PCNA)免疫细胞化学染色、原位末端标记(TUNEL)法检测了不同生长发育阶段SD大鼠空肠绒毛粘膜上皮及小肠腺上皮的细胞增殖、凋亡的变化情况,并统计测量了不同发育阶段大鼠空肠绒毛的高度、肌层厚度及绒毛杯形细胞、肠腺杯形细胞的数量变化。观察到大鼠空肠肠腺隐窝增殖细胞的阳性着色表达从出生后开始增强,到3月龄时达最高峰,12月龄时增殖细胞阳性染色又减弱;凋亡细胞主要分布于固有层,凋亡阳性细胞数在3月龄最多;大鼠空肠绒毛的高度从初生后开始增加,到3月龄达顶峰,而后开始变矮;空肠肌层在3周龄、12月龄较厚;杯形细胞数量于生后3周迅速增长,不同发育阶段的大鼠空肠肠腺隐窝的杯形细胞数量与年龄呈正相关。  相似文献   
942.
切断海马伞对大鼠硬性脑挫伤后运动行为恢复的影响   总被引:3,自引:0,他引:3  
硬性挫伤运动皮层诱发大鼠偏瘫及其随后的行为代偿是研究中枢神经可塑性的一个理想模型。本工作观察了切断海马伞对脑挫伤后行为恢复的影响。结果表明:与对照组相比,(1)切断海马伞—穹隆通路明显延缓了大鼠运动平衡能力的恢复;(2)切断海马伞—穹隆通路后,银杏类黄酮(FGb)失去了促进脑挫伤后运动平衡能力恢复的作用;(3)原位杂交显示,脑损伤后海马DG(齿状回)和CA3区中生长相关蛋白(GAP—43)mRNA的水平明显提高;(4)FGb促进脑损伤后海马DG和CA3区中的GAP—43mRNA水平的上调。这些信息提示,海马参与脑硬性挫伤后的运动代偿,FGb促进脑损伤后的运动行为的恢复可能与海马相关[动物学报49(2):211-217,2003]。  相似文献   
943.
王晓云  张健  李健  段相林 《动物学报》2003,49(4):481-487
应用免疫细胞化学及图像分析等方法,对出生到生后25月龄各发育阶段SD大鼠睾丸内雄激素受体(AR)的表达变化进行了系统的研究。发现(1)睾丸间质细胞:从出生到生后3周龄,AR阳性表达强度较弱;到生后1月龄,AR阳性表达强度显著增强,并达到峰值;在生后2月龄,AR阳性表达强度显著减弱,此后AR阳性表达又呈增强趋势。(2)肌样细胞:从出生到生后2周龄,AR阳性表达强度较弱;到生后3周龄,AR阳性表达强度显著增强,并一直维持到生后2月龄;从生后3月龄,AR阳性表达强度呈减弱趋势,到生后25月龄达到最低水平。(3)血管内皮细胞:从生后3周龄到生后2月龄AR阳性表达较强;生后3月龄,AR阳性表达强度明显减弱;生后25月龄,AR阳性表达强度与生后3月龄相比变化不明显。(4)支持细胞:在生后1月龄出现AR阳性表达,到性成熟后,支持细胞AR阳性表达随生精周期变化而变化,在生后25月龄未见AR阳性表达的支持细胞。(5)生精细胞:出生组,前精原细胞内有AR阳性表达;生后2周龄,精子细胞开始出现AR阳性表达;生后1月龄,精原细胞开始出现AR阳性表达;生后2月龄出现阳性表达的精子,生后25月龄未见阳性表达的生精细胞。  相似文献   
944.
移植视网膜NOS阳性神经元的发育   总被引:2,自引:1,他引:1  
目的 观察不同年龄组段大鼠正常视网膜及移植视网膜内NOS阳性神经元的发育情况及其定位分布。方法 实验分正常视网膜发育组和移植视网膜发育组,应用还原型烟酰胺腺嘌呤二核苷酸磷酸(NADPH)组织化学方法显示。结果 1、NOS阳性神经元最早出现于生后第五天(P5),P18时阳性神经元数目达到最高峰,2、移植视网膜具有正常视网膜的各层结构和相似的生长规律,NOS阳性神经元在生后第4天移植视网膜(TP4)中出现,TP12数量达到高峰值,TP22后降至正常成年鼠水平。结论 根据NOS阳性神经元的定位,分布,推测其为无长突细胞,移位无长突细胞及节细胞。  相似文献   
945.
周围神经43kD蛋白免疫化学研究   总被引:3,自引:1,他引:2  
目的:制图周围神经43kD蛋白单克隆抗体,并检测该蛋白在正常及损伤坐骨神经中的表达,方法:实验用SDS-聚丙烯酰胺胺凝胶电泳系统,从周围神经中分离回收43kD蛋白作为抗原,免疫BALB/c小鼠,通过杂交瘤技术和点膜印迹法检测,获得分泌识别43kD蛋白的单克隆抗体的杂交瘤细胞株,以Westernblot方法检测单克隆抗体的特异性,并检测43kD蛋白在正常坐骨神经及损伤坐骨神经远侧端中的表达。结果:经检测获得了识别43kD蛋白的单克隆抗体,Westernblot显示在正常大鼠坐骨神经与损伤后2周的坐骨神经远侧端组织电泳图谱43kD处均出现特异的阳性反应条带,在损伤神经中43kD蛋白阳性反应产物着色较深。结论:43kD蛋白具有独特的免疫化学特性,在正常与损伤坐骨神经中的有表达,在损伤坐骨神经中表达更强。  相似文献   
946.
目的 研究spinophilin与癫痫发病的关系。方法 采用侧脑室注射L-谷氨酸钠6μl(50mg/ml)制作大鼠癫痫模型。动物存活2小时,然后用免疫组织化学方法观察大鼠海巴内spinophilin表达的变化。结果 实验组大鼠海马CAI及CA3区阳性反应产物较对照组明显增多。结论 提示spinophilin可能参与了癫痫的发生。但是其机理尚需要进一步探索。  相似文献   
947.
目的 通过大鼠在不同发育阶段中胃底腺细胞表达α-N-乙酰氨基葡萄糖(GluNAc)残基的情况,来研究大鼠胃底腺颈粘液细胞的发生。方法 利用单克隆抗体HIK1083能特异性识别α-GluNA残基的特点,进行免疫组化研究。结果 HIK1083阳性细胞从第19.5天胚胎鼠的胃底腺中开始辨认出来,一直存在至成鼠,这些细胞最初出现在胃底腺的底部,然后向上方移动,最后位于腺体的颈部。结论 胚胎晚期开始表达α-GluNAc残基的细胞可能是原始的颈粘液细胞,随着鼠胃底腺的发育。这些细胞逐渐向上方移动,最终成为颈粘液细胞。  相似文献   
948.
Neural cell adhesion molecule (N-CAM) mediates homophilic adhesion between cells and heterophilic adhesion between cells and extracellular matrix in a Ca2+-independent manner. N-CAM is widely expressed during development and plays a crucial role in cell division, migration, and differentiation, but its expression is restricted in adults. The distribution of N-CAM immunoreactivity in adult rat tissues was investigated in the present study. N-CAM immunoreactivity was present in the nervous system in the molecular layer of the cerebellum, ependymal cells surrounding the central canal, axons of the white matter, and in Lamina X of the gray matter of the spinal cord. N-CAM immunoreactivity also was found in autonomic nerves. In the digestive system, N-CAM immunoreactivity was found in the stratified squamous epithelium and nerve plexus of the esophagus, glandular cells of the stomach and pylorus, lamina propria, and epithelium of the villi of the duodenum, jejunum, and ileum. N-CAM immunoreactivity was demonstrated in the secretory cells of the adenohypophysis, islets of Langerhans, and acinar cells of the exocrine pancreas. Alveolar cells of the lung were also N-CAM immunoreactive. In the urinary system, N-CAM immunoreactivity was seen in the proximal convoluted tubules of the kidney. In the male reproductive system, N-CAM immunoreactivity was demonstrated in the nerve plexus around the urethral epithelium and in the nerve fibers around the smooth muscle cells of the corpus cavernosum penis. In the visual system, N-CAM immunoreactivity was seen in the epithelial cells of the corpus ciliaris. Cornea and lens epithelium also showed positive immunoreactivity. Our results suggest that cells in many tissues and organs of the adult rat synthesize N-CAM.  相似文献   
949.
Early life history of a seahorse, Hippocampus mohnikei, in Tokyo Bay, Japan   总被引:1,自引:1,他引:0  
The early morphological development, seasonal and spatial occurrence patterns, and food habits of a seahorse, Hippocampus mohnikei, in offshore waters of Tokyo Bay, central Japan, were studied on the basis of 206 juvenile and young specimens (6.0–65.3 mm TL) collected between August 1995 and January 1999. All the specimens were collected within the period from May to January, inclusive, each year. In the least developed specimen (6.0 mm TL), the number of dorsal, anal, and pectoral fin rays had attained the adult complement, whereas the minute caudal fin, consisting of two rays, was present in juveniles of 6.0–26.4 mm TL. Hippocampus mohnikei≧35 mm TL, being larger than settlement size (ca. 30 mm TL), had very low gut fullness index values (GFI = 0, >70% of specimens), whereas those of 15–29 mm TL had higher values (GFI = 2–4, >80% of specimens). In addition, larger individuals selectively fed on larger planktonic animals (species of Brachyura), which occurred naturally at low densities, although smaller food items, such as Oithona davisae and Penilia avirostris, occurred abundantly, being consumed by smaller H. mohnikei individuals (15–34 mm TL). These results indicated that food availability for H. mohnikei in offshore waters of Tokyo Bay is significant for individuals larger than settlement size, because their food preference would shift from smaller food items to larger food items, which would be scarce in their environments. Received: January 12, 2001 / Revised: May 13, 2001 / Accepted: June 14, 2001  相似文献   
950.
Mammalian endogenous circadian rhythms are entrained to the environmental day-night cycle by light exposure. Melatonin is involved in this entrainment by signaling the day-night information to the endogenous circadian pacemaker. Furthermore, melatonin is known to affect the circadian rhythm of body temperature directly. A striking property of the endogenous melatonin signal is its synthesis pattern, characterized by long-term elevated melatonin levels throughout the night. In the present study, the influence of prolonged treatment with the melatonin agonist S20098 during the activity phase of free-running rats was examined. This was achieved by giving S20098 in the food. The free-running body temperature and activity rhythms were studied. The present study shows that enhancement of the melatonin signal, using S20098, affected the free-running rhythm by gradual phase advances of the start of the activity phase, consequently causing an increase in length of the activity phase. A well-known feature of circadian rhythms is its time-dependent sensitivity for light. Light pulse exposure of an animal housed under continuous dark conditions can cause a phase shift of the circadian pacemaker. Therefore, in a second experiment, the influence of melatonin receptor stimulation on the sensitivity of the pacemaker to light was examined by giving the melatonin agonist S20098 in the food during 1 day prior to exposure to a 60-min light pulse of 0, 1.5, 15, or 150 lux given at circadian time (CT) 14. S20098 pretreatment caused a diminished lightpulse- induced phase shift when a light pulse of low light intensity (1.5 lux) was given. S20098 treatment via the food was sufficient to exert chronobiotic activity, and S20098 treatment resulting in prolonged overstimulation of melatonin receptors is able to attenuate the effect of light on the circadian timing system. (Chronobiology International, 18(5), 781-799, 2001)  相似文献   
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