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1.
NO对大鼠睡眠-觉醒的调节   总被引:10,自引:0,他引:10  
目的和方法:通过对大鼠侧脑室微量注射NOS抑制剂L-NAME及NO的前体L-精氨酸(L-Arg)观察两种物质对大鼠睡眠-觉醒的影响。结果:注射1mg L-NAME(5μL)后4h觉醒(W)明显增加,尤以注射后第1 ̄2h显著;4h慢波睡眠(SWS)明显减少,该效应同样以注射后第1 ̄2h显著;异相睡眠(PS)无明显变化。小剂量L-NAME(0.2mg,5μl)对大鼠的W、SWS、PS无明显影响;同样方  相似文献   

2.
小麦高分子量麦谷蛋白亚基分离方法的研究   总被引:1,自引:0,他引:1  
小麦高分子量麦谷蛋白亚基(HMW-GS)与小麦面包烘烤质量和面粉的加工特性密切相关,SDS-PAGE是其常用的分离方法之一。SDS-PAGE方法一般分为2类:第一类采用11%和5%浓度的胶,后者用于分离2亚基和2^*亚基,该种方法常使用碱性提取液,需要2次电泳过程,且在5%浓度的胶中HMW-GS易于和麦醇蛋白混淆;另外一类SDS-PAGE采用梯度胶,配合使用银染方法,制梯度胶则使用梯度仪及磁力搅拌  相似文献   

3.
以前的SDS-PAGE分析表明龙麦15在Glu-D1位点的高分子量(HMW)麦谷蛋白亚基为2+12。我们通过对龙麦15进行大量的SDS-PAGE分析,发现了Glu-D1位点的HMW麦谷蛋白亚基为5+10的龙麦15生物型。文章分析了5+10龙麦15生物型的产生,利用及对当前优质麦育种工作的理论和实践意义。  相似文献   

4.
张延滨  祁适雨 《植物研究》1996,16(1):118-121
以前的SDS-PAGE分析表明龙麦15在Glu-D1位点的高分子量(HMW)麦谷蛋白亚基为2+12。我们通过对龙麦15进行大量的SDS-PAGE分析,发现了Glu-D1位点的HMW麦谷蛋白亚基为5+10的龙麦15生物型。文章分析了5+10龙麦15生物型的产生,利用及对当前优质麦育种工作的理论和实践意义。  相似文献   

5.
MPEG-SOD对急性低氧下鼠左心功能的保护作用   总被引:1,自引:0,他引:1  
单甲氧基聚乙二醇(MPEG)活化后与超氧化物歧化酶(SOD)偶联,经纯化后得到MPEG-SOD,鉴定其分子量约为7.0×105Dation。其在血液循环中酶活性半衰期超过30h,远大于天然SOD(6-10min)。SD雄性大鼠分三组.对照组(n=8.由股静脉注入0.2ml生理盐水)、NativeSOD组(n=8,注以0.2ml生理盐水配的800USOD)和MPEG-SOD组(n=9,注以800UMPEG-SOD)。低氧前三组鼠的心率(HR)、左室内峰压(LVP)、左室压微分(LV±dp/dtmax)和股动脉压(AP)均无统计学差别。在模拟6000—6500m高度急性低氧1.8.14min记录上述各项指标,结果如下:除HR外,NativeSOD组与对照组各指标均无统计学差别,MPEG-SOD组的各项指标均明显高于对照组。表明MPEG-SOD对急性低氧导致的左心室力学指标的减弱有明显保护作用,提示超氧自由基(O2-)在急性低氧导致左心室功能损伤中起重要作用,即可能是由O2-及其衍生的其它自由基损害心肌细胞生物膜系统所致。  相似文献   

6.
DDPH[1-(2.6-二甲基苯乙氧基)-2-(3.4二甲氧基苯乙胺基)丙烷盐酸盐]是南京药科大学合成的降压新化合物,也具有降低肺动脉高压和抑制肺动脉平滑肌细胞增殖作用。本实验用细胞培养、免疫细胞化学、图像分析、3H-TdR、细胞周期测定等方法,进一步探讨DDPH对缺氧性肺动脉平滑肌细胞(PASMCS)增殖的抑制机制。结果:缺氧促进肺动脉内皮细胞(PAECs)的PDGF·BB和bFGF两种生长因子的表达(积分光密度OD值)增高。缺氧内皮细胞条件培养液(HECCM)能促进PASMCS的PDGF·BB的OD值增高,bFGF的OD值无明显改变。加药组(HEC-CM+DDPH)的PDGF·BB和bFGF的OD值均显著降低,尤以PDGF·BB的OD值减少最多.提示:DDPH能抑制HECCM引起PASMCS的PDGF·BB和bFGF表达增多和细胞增殖。结果与大鼠实验观察相符。  相似文献   

7.
全球红树林区系地理   总被引:2,自引:0,他引:2  
全球红树林区系地理缪绅裕陈桂珠(广州师范学院生物系,广州510400)(中山大学环科所,广州510275)FLORAANDDISTRIBUTIVEPATTERNSOFMANGROVEINTHEWORLDMiaoShen-yu(Departmentof...  相似文献   

8.
应用蛋白dotblot技术检测了低氧内皮细胞条件培养液(HECCM)和常氧内皮细胞条件培养液(NECCM)内PDGF相对含量,并利用[3H]-TdR掺入法和流式细胞术观察了HECCM和NECCM及加入特异PDGF抗体对肺动脉平滑肌细胞(PASMC)生长的影响。结果表明,HECCM中的PDGF含量明显高于NECCM;HECCM能明显增强PASMC内DNA合成,促进PASMC从Go/G1期进入S期;当预先加入PDGF-B链抗体时,则会明显地抑制HECCM对PASMC的DNA合成,阻止PASMC从Go/G1期进入S期。结果提示,低氧时PASMC增殖与肺动脉内皮细胞分泌释放PDGF增加有关  相似文献   

9.
根据小麦黄花叶病毒( W Y M V) 核苷酸序列测定结果,将 W Y M V R N A2 上的28 k Da 蛋白基因克隆到p E T11a 上,构建了原核表达载体p E2839 。 S D S P A G E 分析表明,经 I P T G 诱导,28 k Da蛋白基因在大肠杆菌 B L21( D E3)p Lys S 中得到高效表达。以含表达产物的凝胶为抗原,免疫家兔,首次制备了小麦黄花叶病毒 R N A2 蛋白特异性抗血清。  相似文献   

10.
莱氏衣原体膜上Mg~(2+)-ATPase用DOC溶解后,经Sepharose-6B和DEAE-CelluloseDE-52离子交换柱,得到了部分纯化的Mg~(2+)ATPase,并将此ATPase与不同极性头部的磷脂和膜糖脂重组,研究了不同的极性头部的磷脂和膜糖脂对ATPase活性的影响。此酶的活性不依赖酸性磷脂,PG、DPG、大豆磷脂等明显抑制酶活性,中性磷脂DMPC、PE、PC则能增加酶活性,其中尤以非双层脂PE的作用最为明显。从莱氏衣原体膜上提取的糖脂(MGDG,DGDG)单独和ATPase重组时,酶活性增加并不明显,当MGDG和DGDG以等比例混合时,能大大地增加酶活性。这表明Mg~(2+)-ATPase的活性很大程度上与磷脂的表面电荷及磷脂的组成相关。  相似文献   

11.
采用多导睡眠描记术研究了例脑室注射促甲状腺激素释放激素(TRH)对正常大鼠和去甲状腺大鼠睡眠-觉醒的影响。在正常大鼠,TRH引起觉醒增加,浅慢波睡眠(SWS_1)、深慢波睡眠(SWS_2)和总睡眠时间(TST)均减少,异相睡眠(PS)消失,SWS_1、SWS_2和PS的潜伏期均显著延长,给药后立即产生效应并在1h内达高峰。去甲状腺对大鼠的睡眠-觉醒无明显影响,注射TRH后引起的效应与正常大鼠相似。结果提示TRH有促进大鼠觉醒的作用,对各睡眠时相均有抑制作用,其作用部位可能在下丘脑以外的中枢结构。  相似文献   

12.
The aim of this study was to test the hypothesis that the cells in the brain stem pedunculopontine tegmentum (PPT) are critically involved in the normal regulation of wakefulness and rapid eye movement (REM) sleep. To test this hypothesis, one of four different doses of the excitatory amino acid L-glutamate (15, 30, 60, and 90 ng) or saline (control vehicle) was microinjected unilaterally into the PPT while the effects on wakefulness and sleep were quantified in freely moving chronically instrumented rats. All microinjections were made during wakefulness and were followed by 6 h of polygraphic recording. Microinjection of 15- ng (0.08 nmol) and 30-ng (0.16 nmol) doses of L-glutamate into the PPT increased the total amount of REM sleep. Both doses of L-glutamate increased REM sleep at the expense of slow-wave sleep (SWS) but not wakefulness. Interestingly, the 60-ng (0.32 nmol) dose of L-glutamate increased both REM sleep and wakefulness. The total increase in REM sleep after the 60-ng dose of L-glutamate was significantly less than the increase from the 30-ng dose. The 90-ng (0.48 nmol) dose of L-glutamate kept animals awake for 2-3 h by eliminating both SWS and REM sleep. These results show that the L-glutamate microinjection into the PPT can increase wakefulness and/or REM sleep depending on the dosage. These findings support the hypothesis that excitation of the PPT cells is causal to the generation of wakefulness and REM sleep in the rat. In addition, the results of this study led to the identification of the PPT dosage of L-glutamate that optimally induces wakefulness and REM sleep. The knowledge of this optimal dose will be useful in future studies investigating the second messenger systems involved in the regulation of wakefulness and REM sleep.  相似文献   

13.
We measured the pressure within an isolated segment of the upper airway in three dogs during wakefulness (W), slow-wave sleep (SWS) and rapid-eye-movement (REM) sleep. Measurements were taken from a segment of the upper airway between the nares and midtrachea while the dog breathed through a tracheostoma. These pressure changes represented the sum of respiratory-related forces generated by all muscles of the upper airway. The mean base-line level of upper airway pressure (Pua) was -0.5 +/- 0.03 cmH2O during W, increased by a mean of 2.1 +/- 0.2 cmH2O during SWS, and was variable during REM sleep. The mean inspiratory-related phasic change in Pua was -1.2 +/- 0.1 cmH2O during wakefulness. During SWS, this phasic change in Pua decreased significantly to a mean of -0.9 +/- 0.1 cmH2O (P less than 0.05). During REM sleep, the phasic activity was extremely variable with periods in which there were no fluctuations in Pua and others with high swings in Pua. These data indicate that in dogs the sum of forces which dilate the upper airway during W decreases during SWS and REM sleep. The consistent coupling between inspiratory drive and upper airway dilatation during wakefulness persists in SWS, but is frequently uncoupled during REM sleep.  相似文献   

14.
Circadian rhythmicity and sleep homeostasis interact to regulate sleep-wake cycles [1-4], but the genetic basis of individual differences in sleep-wake regulation remains largely unknown [5]. PERIOD genes are thought to contribute to individual differences in sleep timing by affecting circadian rhythmicity [6], but not sleep homeostasis [7, 8]. We quantified the contribution of a variable-number tandem-repeat polymorphism in the coding region of the circadian clock gene PERIOD3 (PER3) [9, 10] to sleep-wake regulation in a prospective study, in which 24 healthy participants were selected only on the basis of their PER3 genotype. Homozygosity for the longer allele (PER3(5/5)) had a considerable effect on sleep structure, including several markers of sleep homeostasis: slow-wave sleep (SWS) and electroencephalogram (EEG) slow-wave activity in non-rapid eye movement (non-REM) sleep and theta and alpha activity during wakefulness and REM sleep were all increased in PER3(5/5) compared to PER3(4/4) individuals. In addition, the decrement of cognitive performance in response to sleep loss was significantly greater in the PER3(5/5) individuals. By contrast, the circadian rhythms of melatonin, cortisol, and peripheral PER3 mRNA expression were not affected. The data show that this polymorphism in PER3 predicts individual differences in the sleep-loss-induced decrement in performance and that this differential susceptibility may be mediated by its effects on sleep homeostasis.  相似文献   

15.
Although pharyngeal muscles respond robustly to increasing PCO(2) during wakefulness, the effect of hypercapnia on upper airway muscle activation during sleep has not been carefully assessed. This may be important, because it has been hypothesized that CO(2)-driven muscle activation may importantly stabilize the upper airway during stages 3 and 4 sleep. To test this hypothesis, we measured ventilation, airway resistance, genioglossus (GG) and tensor palatini (TP) electromyogram (EMG), plus end-tidal PCO(2) (PET(CO(2))) in 18 subjects during wakefulness, stage 2, and slow-wave sleep (SWS). Responses of ventilation and muscle EMG to administered CO(2) (PET(CO(2)) = 6 Torr above the eupneic level) were also assessed during SWS (n = 9) or stage 2 sleep (n = 7). PET(CO(2)) increased spontaneously by 0.8 +/- 0.1 Torr from stage 2 to SWS (from 43.3 +/- 0.6 to 44.1 +/- 0.5 Torr, P < 0.05), with no significant change in GG or TP EMG. Despite a significant increase in minute ventilation with induced hypercapnia (from 8.3 +/- 0.1 to 11.9 +/- 0.3 l/min in stage 2 and 8.6 +/- 0.4 to 12.7 +/- 0.4 l/min in SWS, P < 0.05 for both), there was no significant change in the GG or TP EMG. These data indicate that supraphysiological levels of PET(CO(2)) (50.4 +/- 1.6 Torr in stage 2, and 50.4 +/- 0.9 Torr in SWS) are not a major independent stimulus to pharyngeal dilator muscle activation during either SWS or stage 2 sleep. Thus hypercapnia-induced pharyngeal dilator muscle activation alone is unlikely to explain the paucity of sleep-disordered breathing events during SWS.  相似文献   

16.
Seven male cats were adapted to different schedules of restricted sleep. The cat was permitted to go to sleep either 2, 4 or 8 hours per day with the balance to 24-h periode spent in wakefulness enforced by means of a treadmill. Two experiments were run and the same cats served in both runs. The experiments and schedules were separated by at least two weeks during which time cats were maintained under ordinary laboratory conditions. Our experiment used treadmill speed of 2.6 m/min which was easily tolerated and effective in eliminating sleep. Another experiment used treadmill speed of 4.6 m/min which produced more physical exercise. As available sleep time become progressively shorter, REM sleep increased while SWS decreased. If restriction in sleep time was associated with more physical exercise then the composition of the subsequent sleep was different : SWS increased while REM sleep decreased. The functional significance of these opposite effects are presumably different. The immediate SWS response to the prior muscular exercise is suggestive of its recovery function.  相似文献   

17.
基底外侧杏仁核对大鼠睡眠和行为的调节作用及机制研究   总被引:4,自引:1,他引:3  
目的和方法 :本研究运用多导睡眠描记 (PSG)方法、大白鼠开阔实验法及强迫游泳实验观察杏仁核的基底外侧核 (BLN)内微量注射谷氨酸、吗啡和纳络酮对大鼠睡眠、觉醒和行为的影响。结果 :用谷氨酸选择性兴奋BLN内神经元胞体可增加觉醒 ,减少慢波睡眠 (SWS)和总睡眠时间 (TST) ,增加大鼠自主活动和缩短强迫游泳“不动”时间。吗啡作用与谷氨酸相似 ,而阿片受体阻断剂纳络酮引起的作用则与之相反 ,并可完全阻断吗啡的作用。结论 :BLN神经元兴奋可引起觉醒增加、SWS减少和自主活动增加效应 ,阿片受体激动剂是BLN调节睡眠、觉醒和行为的重要递质。  相似文献   

18.
This study examined the effects of clozapine on sleep-wakefulness profile in cats prepared for chronic recording of sleep. Clozapine in single dose (i.p.) of 5 mg/kg drastically reduced slow-wave sleep (SWS) and paradoxical sleep (PS), while wakefulness and drowsy pattern were increased. These changes lasted approximately 24 h and were followed by sleep recovery. PS had a priority of recovery. Some similarities between clozapine effects on sleep in cat and human were mentioned.  相似文献   

19.
Insight into the function of sleep may be gained by studying animals in the ecological context in which sleep evolved. Until recently, technological constraints prevented electroencephalogram (EEG) studies of animals sleeping in the wild. However, the recent development of a small recorder (Neurologger 2) that animals can carry on their head permitted the first recordings of sleep in nature. To facilitate sleep studies in the field and to improve the welfare of experimental animals, herein, we test the feasibility of using minimally invasive surface and subcutaneous electrodes to record the EEG in barn owls. The EEG and behaviour of four adult owls in captivity and of four chicks in a nest box in the field were recorded. We scored a 24-h period for each adult bird for wakefulness, slow-wave sleep (SWS), and rapid-eye movement (REM) sleep using 4 s epochs. Although the quality and stability of the EEG signals recorded via subcutaneous electrodes were higher when compared to surface electrodes, the owls’ state was readily identifiable using either electrode type. On average, the four adult owls spent 13.28 h awake, 9.64 h in SWS, and 1.05 h in REM sleep. We demonstrate that minimally invasive methods can be used to measure EEG-defined wakefulness, SWS, and REM sleep in owls and probably other animals.  相似文献   

20.
Understanding the interaction between the nervous system and cerebral vasculature is fundamental to forming a complete picture of the neurophysiology of sleep and its role in maintaining physiological homeostasis. However, the intrinsic hemodynamics of slow-wave sleep (SWS) are still poorly known. We carried out 30 all-night sleep measurements with combined near-infrared spectroscopy (NIRS) and polysomnography to investigate spontaneous hemodynamic behavior in SWS compared to light (LS) and rapid-eye-movement sleep (REM). In particular, we concentrated on slow oscillations (3-150 mHz) in oxy- and deoxyhemoglobin concentrations, heart rate, arterial oxygen saturation, and the pulsation amplitude of the photoplethysmographic signal. We also analyzed the behavior of these variables during sleep stage transitions. The results indicate that slow spontaneous cortical and systemic hemodynamic activity is reduced in SWS compared to LS, REM, and wakefulness. This behavior may be explained by neuronal synchronization observed in electrophysiological studies of SWS and a reduction in autonomic nervous system activity. Also, sleep stage transitions are asymmetric, so that the SWS-to-LS and LS-to-REM transitions, which are associated with an increase in the complexity of cortical electrophysiological activity, are characterized by more dramatic hemodynamic changes than the opposite transitions. Thus, it appears that while the onset of SWS and termination of REM occur only as gradual processes over time, the termination of SWS and onset of REM may be triggered more abruptly by a particular physiological event or condition. The results suggest that scalp hemodynamic changes should be considered alongside cortical hemodynamic changes in NIRS sleep studies to assess the interaction between the autonomic and central nervous systems.  相似文献   

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