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Changes in Manganese Superoxide Dismutase Expression After Exposure of the Retina to Intense Light 总被引:5,自引:0,他引:5
Miho Yamamoto Kria Lidia Huaqing Gong Setsuko Onitsuka Takayo Kotani Akihiro Ohira 《The Histochemical journal》1999,31(2):81-87
Manganese superoxide dismutase (Mn-SOD) is a naturally-occurring scavenger of superoxide, one of several reactive oxygen intermediates. To determine if Mn-SOD expression is enhanced as a defensive mechanism against oxidative challenges, such as intense light exposure, rats were exposed to cyclic light (80lux) for 2 weeks, intense light (1,800lux) for 24h, and then again to cyclic light. Experimental and control (exposed to cyclic light only) eyes were enucleated 3h, 1, 3, 7, and 14 days after light challenge. Protein expression was examined immunohistochemically using rabbit antisera against rat Mn-SOD. There was no significant difference between the light-exposed and the control groups in the thickness of the outer nuclear layers. Both retinal pigment epithelial cells and photoreceptor inner segments in the normal retina were labeled for Mn-SOD. Mn-SOD labeling was lost 3h and day 1 after light challenge. It was re-expressed in the retinal pigment epithelial cells 3, 7, and 14 days after the light challenge, and in the photoreceptor inner segments after day 14. These results suggest that the retina might have a protective potential against light damage, in which Mn-SOD may play an important role. 相似文献
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JEAN-CLAUDE DAVID CLAUDE PIEAU DANIÈLE S. CARRÉ 《Differentiation; research in biological diversity》1979,15(1-3):169-175
In the course of chick neural retina development, several forms of DNA ligase have been found. During embryonic life the major DNA ligase activity that is found at seven days is form I (8.2 S) which gradually decreases and disappears by 14 days after incubation, whereas form II (6.2 S) increases to reach a maximum at the time of hatching. Form II then decreases reaching a constant level by Day 7 and from that time new slow sedimenting forms also appear (forms III and IV). Form III (2 S) is first detectable at seven days and increases up to 90 days, whereas form IV (3 S) is the only form detected in the 17- and 18-month-old and also in the 5-year-old birds. These four forms display different elution patterns on phosphocellulose column chromatography. They also differ in their thermal stability and sensitivity towards N-ethylmaleimide. 相似文献
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目的对比研究兔眼视网膜脱离后选择不同时期手术复位视功能的变化情况,为临床手术时机的选择及预测术后视功能的恢复情况提供理论与实验依据。方法利用家兔制备孔源性视网膜脱离模型,成模后1 d、7 d1、4 d时经手术达解剖复位,采用多焦视网膜电流图检测复位后视网膜的功能,数据处理应用SPSS软件。制备组织病理学切片。结果多焦视网膜电流图显示1 d、7 d、14 d的RRD手术复位后P1波平均象限反应密度(QAP1,nV/deg2),P1波幅值(AP1,μV),N1波幅值(AN1,μV),P1波潜伏期(TP1,ms),N1波潜伏期(TN1,ms)各项数值差异有显著性(P<0.05)。光镜电镜显示视网膜脱离复位后组织病理学改变。结论视网膜脱离手术复位后视网膜细胞功能的恢复与脱离时间有明显的负相关性;多焦视网膜电流图对于局部视网膜功能的评价有重要意义;组织病理学研究提供了解释视功能变化的重要依据。 相似文献
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Gerrit Hilgen Antje K. Huebner Naoyuki Tanimoto Vithiyanjali Sothilingam Christina Seide Marina Garcia Garrido Karl-Friedrich Schmidt Mathias W. Seeliger Siegrid L?wel Reto Weiler Christian A. Hübner Karin Dedek 《PloS one》2012,7(10)
Regulation of ion and pH homeostasis is essential for normal neuronal function. The sodium-driven chloride bicarbonate exchanger NCBE (Slc4a10), a member of the SLC4 family of bicarbonate transporters, uses the transmembrane gradient of sodium to drive cellular net uptake of bicarbonate and to extrude chloride, thereby modulating both intracellular pH (pHi) and chloride concentration ([Cl−]i) in neurons. Here we show that NCBE is strongly expressed in the retina. As GABAA receptors conduct both chloride and bicarbonate, we hypothesized that NCBE may be relevant for GABAergic transmission in the retina. Importantly, we found a differential expression of NCBE in bipolar cells: whereas NCBE was expressed on ON and OFF bipolar cell axon terminals, it only localized to dendrites of OFF bipolar cells. On these compartments, NCBE colocalized with the main neuronal chloride extruder KCC2, which renders GABA hyperpolarizing. NCBE was also expressed in starburst amacrine cells, but was absent from neurons known to depolarize in response to GABA, like horizontal cells. Mice lacking NCBE showed decreased visual acuity and contrast sensitivity in behavioral experiments and smaller b-wave amplitudes and longer latencies in electroretinograms. Ganglion cells from NCBE-deficient mice also showed altered temporal response properties. In summary, our data suggest that NCBE may serve to maintain intracellular chloride and bicarbonate concentration in retinal neurons. Consequently, lack of NCBE in the retina may result in changes in pHi regulation and chloride-dependent inhibition, leading to altered signal transmission and impaired visual function. 相似文献
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Genomic imprinting (or imprinting) refers to an epigenetic phenomenon by which the allelic expression of a gene depends on the parent of origin. It has evolved independently in placental mammals and flowering plants. In plants, imprinting is mainly found in endosperm. Recent genome-wide surveys in Arabidopsis, rice, and maize identified hundreds of imprinted genes in endosperm. Since these genes are of diverse functions, endosperm development is regulated at different regulatory levels. The imprinted expression of only a few genes is conserved between Arabidopsis and monocots, suggesting that imprinting evolved quickly during speciation. In Arabidopsis, DEMETER (DME) mediates hypomethylation in the maternal genome at numerous loci (mainly transposons and repeats) in the central cell and results in many differentially methylated regions between parental genomes in the endosperm, and subsequent imprinted expression of some genes. In addition, histone modification mediated by Polycomb group (PcG) proteins is also involved in regulating imprinting. DME-induced hypomethylated alleles in the central cell are considered to produce small interfering RNAs (siRNAs) which are imported to the egg to reinforce DNA methylation. In parallel, the activity of DME in the vegetative cell of the male gametophyte demethylates many regions which overlap with the demethylated regions in the central cell. siRNAs from the demethylated regions are hypothesized to be also transferred into sperm to reinforce DNA methylation. Imprinting is partly the result of genome-wide epigenetic reprogramming in the central cell and vegetative cell and evolved under different selective pressures. 相似文献
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Visual Adaptation in the Retina of the Skate 总被引:5,自引:16,他引:5
The electroretinogram (ERG) and single-unit ganglion cell activity were recorded from the eyecup of the skate (Raja erinacea and R. oscellata), and the adaptation properties of both types of response compared with in situ rhodopsin measurements obtained by fundus reflectometry. Under all conditions tested, the b-wave of the ERG and the ganglion cell discharge showed identical adaptation properties. For example, after flash adaptation that bleached 80% of the rhodopsin, neither ganglion cell nor b-wave activity could be elicited for 10–15 min. Following this unresponsive period, thresholds fell rapidly; by 20 min after the flash, sensitivity was within 3 log units of the dark-adapted level. Further recovery of threshold was slow, requiring an additional 70–90 min to reach absolute threshold. Measurements of rhodopsin levels showed a close correlation with the slow recovery of threshold that occurred between 20 and 120 min of dark adaptation; there is a linear relation between rhodopsin concentration and log threshold. Other experiments dealt with the initial unresponsive period induced by light adaptation. The duration of this unresponsive period depended on the brightness of the adapting field; with bright backgrounds, suppression of retinal activity lasted 20–25 min, but sensitivity subsequently returned and thresholds fell to a steady-state value. At all background levels tested, increment thresholds were linearly related to background luminance. 相似文献
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Mariana López-Góngora Antonio Escartín Saul Martínez-Horta Ramón Fernández-Bobadilla Luis Querol Sergio Romero Miquel àngel Ma?anas Jordi Riba 《PloS one》2015,10(8)
Multiple sclerosis (MS) is a chronic central nervous system disorder characterized by white matter inflammation, demyelination and neurodegeneration. Although cognitive dysfunction is a common manifestation, it may go unnoticed in recently-diagnosed patients. Prior studies suggest MS patients develop compensatory mechanisms potentially involving enhanced performance monitoring. Here we assessed the performance monitoring system in early-stage MS patients using the error-related negativity (ERN), an event-related brain potential (ERP) observed following behavioral errors. Twenty-seven early-stage MS patients and 31 controls were neuropsychologically assessed. Electroencephalography recordings were obtained while participants performed: a) a stop task and b) an auditory oddball task. Behavior and ERP measures were assessed. No differences in performance were found between groups in most neuropsychological tests or in behavior or ERP components in the auditory oddball task. However, the amplitude of the ERN associated with stop errors in the stop task was significantly higher in patients. ERN amplitude correlated positively with scores on the Expanded Disability Status Scale and the Multiple Sclerosis Severity Score, and negatively with the time since last relapse. Patients showed higher neuronal recruitment in tasks involving performance monitoring. Results suggest the development of compensatory brain mechanisms in early-stage MS and reflect the sensitivity of the ERN to detect these changes. 相似文献
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目的:研究黄芪甲苷IV(AS-IV)对人肝癌细胞HepG2中多药耐药相关蛋白-3(MRP3)的调节作用,为AS-IV可能引发的药物相互作用阐明机制。方法:培养HepG2细胞,用不同浓度AS-IV进行干预,Western blotting方法检测细胞中MRP3的蛋白水平,流式细胞术检测胞内5-羧基荧光素(5-CF)的荧光强度,反映MRP的功能;给予MRP3 si RNA干扰,观察AS-IV诱导的MRP3蛋白表达是否增加其外排转运功能;提取胞核、总蛋白,检测胞核核因子E2相关因子2(Nrf2)、总Nrf2蛋白水平;给予Nrf2 si RNA干扰,观察AS-IV诱导的MRP3蛋白表达是否依赖于Nrf2。结果:200μmol/L AS-IV作用48 h后,细胞MRP3的蛋白水平显著增加(P0.05),胞内5-CF的平均荧光强度(MFI)明显低于对照组(P0.05),与单独给予AS-IV组相比,给予MRP3 si RNA干扰显著增加了胞内5-CF的MFI(P0.05)。AS-IV增加了胞核内Nrf2的蛋白水平(P0.01),亦增加了总Nrf2的蛋白表达(P0.01)。给予Nrf2 si RNA干扰后,AS-IV诱导上调的MRP3被显著抑制(P0.05)。结论:AS-IV可通过上调MRP3的蛋白表达,增加其外排转运功能,Nrf2的激活在AS-IV诱导MRP3蛋白表达中起着重要的作用。本研究提示,AS-IV与MRP3底物合用时,可能会产生药物-药物相互作用。 相似文献
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E. É. Kolesnikova 《Neurophysiology》2011,42(4):294-304
This review deals with modern concepts on the mechanisms of involvement of main central excitatory and inhibitory neurotransmitters, glutamate and GABA, in the control of the respiratory function. 相似文献
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目的:microRNAs(miRNAs)的异常表达与多种疾病密切相关,并有可能用于肿瘤治疗。本研究探讨了miR一143在人膀胱癌细胞中的作用及机制,为膀胱癌的临床诊治提供参考。方法:采用体外培养的T24细胞株为研究对象,按照处理方式分为空白对照组(T24)、阴性对照组(NC)、miRNA-143转染组(miR-143)以及si—COX-2转染组(si—COX-2)。3H—thymidine法和Transwell趋化实验检测T24细胞增殖和迁移能力,免疫印迹法检测COX一2蛋白表达变化。结果:miR-143和si—COX-2转染T24细胞48h-72h后,细胞增值能力较正常T24细胞相比下降36%.49%(P〈0.01),迁移能力下降81%。免疫印迹结果表明,si—COX-2或miR-143转染的T24细胞内源性COX-.2表达水平显著减少至正常T24细胞表达水平的O.39和0-31倍(P〈0.01)。结论:miR-143可降低膀胱癌T24细胞增值力和侵袭力,并抑制COX.2表达。miR-143可能通过COX-2通路发挥对膀胱癌T24细胞的增殖和侵袭的抑制作用。研究结果更加明确了microRNA在癌症中的功能,提示miR-143可作为膀胱癌的治疗候选药物。本研究为探索肿瘤生物标志物和治疗提供新的启示。 相似文献
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猫视网膜年龄相关的形态学变化 总被引:7,自引:1,他引:6
取老年猫(12龄,3~3.5kg)和青年猫(1~3龄,2~2.5kg)各4只的视网膜,经4%多聚甲醛处理后,用H.E.染色以显示视网膜结构,Nissl染色显示神经节细胞,免疫组织化学ABC法染色以显示星形胶质细胞特征性标志物胶质纤维酸性蛋白(GFAP)的阳性反应细胞的分布。显微镜下观察测量视网膜厚度,计数神经节细胞、GFAP免疫反应阳性细胞数。与青年猫比较,老年猫视网膜总厚度以及外核层、外网状层、内核层和内网状层厚度均显著减小;神经节细胞层的细胞密度显著下降;GFAP免疫反应阳性细胞显著增加,GFAP阳性细胞阳性反应强,胞体明显膨胀,突起稠密粗大。推测在衰老过程中视网膜细胞有神经元丢失现象,可能是造成视觉功能衰退的重要原因之一;视网膜星形胶质细胞的功能增强可能会延缓衰老。 相似文献
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T. A. Pivneva 《Neurophysiology》2009,41(5):365-373
The author generalizes and analyzes the published data and her own findings related to the cellular and molecular mechanisms underlying a demyelinating disease, multiple sclerosis. The mechanisms of the immunopathogenic process in multiple sclerosis, the involvement of microglia and astrocytes in destruction of the myelin sheaths, and injury of oligodendrocytes are discussed. Experimental models used for examination of the processes of demyelination of the nerve tissue in vitro (tissue cultures) and in vivo (experimental allergic encephalomyelitis) are also described. 相似文献
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取老年猫(12龄,2.5~3 kg)和青年猫(1~3龄,2~2.5 kg)各4只的视网膜,经4%多聚甲醛处理后用H.E染色以显示视网膜和脉络膜的结构。光学显微镜下观察感光细胞层、玻璃膜(Bruch’s membrane)结构的变化,计数色素上皮层(retinal pigment epithelium,RPE)细胞数、脉络膜毛细血管数,测量玻璃膜、脉络膜厚度,脉络膜毛细血管之间的距离。结果显示,与青年猫比较,老年猫视网膜感光细胞层结构杂乱;色素上皮细胞数显著下降;玻璃膜厚度无显著变化,出现较多碎片;脉络膜厚度明显变薄,脉络膜毛细血管数显著减小,脉络膜毛细血管之间的距离显著增大。推测老年猫脉络膜的退化可能是导致玻璃膜、色素上皮层的退化,进而导致感光细胞的功能衰退的重要原因。 相似文献