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21.
目的观察褪黑素受体激动剂(NEU-P11)对高糖高脂饲养大鼠脂联素敏感性的影响。方法将30只SD大鼠随机分为对照组(CD组),高糖高脂组(HFSD组),褪黑素组(Mel组),褪黑素受体激动剂组(NEU-P11组)。CD组饲以正常饲料;其余3组饲以高糖高脂饲料。6个月后,给药治疗2个月。治疗期间,Mel组每天注射Mel(4mg/kg);NEU—P11组每天注射NEU-P11(10mg/kg);CD组以及HFSD组注射生理盐水(5ml/kg)。测定糖脂代谢指标并做口服葡萄糖耐量实验(oral glucose tolerant test,OG-TY),Western印迹检测脂联素(adiponectin,APN)在脂肪组织及脂联素受体(AdipoR)在骨骼肌组织中的表达变化。结果高糖高脂饮食可诱导SD大鼠产生胰岛素抵抗,脂联素表达增加。Neu-P11治疗后,胰岛素敏感性增强.脂联素表达降低至正常水平。结论Neu-P11能提高胰岛素敏感性,改善脂联素抵抗。  相似文献   
22.
The extremely important use of mobile phones in the world, at all ages of life, including children and adolescents, leads to significant exposure of these populations to electromagnetic waves of radiofrequency. The question, therefore, arises as to whether exposure to these radiofrequencies (RFs) could lead to deleterious effects on the body's biological systems and health. In the current article, we review the effects, in laboratory animals and humans, of exposure to RF on two hormones considered as endocrine markers: melatonin, a neurohormone produced by the pineal gland and cortisol, a glucocorticosteroid synthesized by the adrenal glands. These two hormones are also considered as markers of the circadian system. The literature search was performed using PubMed, Medline, Web of Sciences (ISI Web of Knowledge), Google Scholar, and EMF Portal. From this review on RF effects on cortisol and melatonin, it appears that scientific papers in the literature are conflicting, showing effects, no effects, or inconclusive data. This implies the need for additional research on higher numbers of subjects and with protocols perfectly controlled with follow‐up studies to better determine whether the chronic effect of RF on the biological functioning and health of users exists (or not). Bioelectromagnetics. 2021;42:5–17. © 2020 Bioelectromagnetics Society  相似文献   
23.
紫花苜蓿为多年生豆科优良牧草,土壤盐碱化是其产量的重要限制因素。该研究以‘中苜1号’紫花苜蓿为材料,在盐胁迫浓度和褪黑素浓度筛选试验基础上,设置盐(150 mmol/L NaCl)和褪黑素(30、50、80μmol/L)单独及复合处理,采用水培根灌褪黑素的方法,探究外源褪黑素对盐胁迫下紫花苜蓿幼苗生长特性、膜透性、渗透调节、抗氧化物酶以及光合作用指标的影响。结果表明:(1)紫花苜蓿幼苗生长受到盐胁迫的显著抑制,而在单独褪黑素处理下无显著变化;各浓度褪黑素处理均可有效缓解盐胁迫对紫花苜蓿生长造成的伤害,并以150 mmol/L NaCl+80μmol/L褪黑素处理(NaCl+MT2)效果最佳,其幼苗根长、根鲜重和根干重分别比盐胁迫处理显著增加了34.52%、41.93%和19.61%。(2)盐胁迫显著增加了紫花苜蓿幼苗细胞膜系统的透性和膜脂过氧化程度,NaCl+MT2处理幼苗叶片的相对电导率和MDA含量分别比盐胁迫处理显著降低了27.18%和30.24%,同时使幼苗叶片的相对含水量显著提高,脯氨酸含量却显著降低,表明外源褪黑素有效缓解了盐胁迫下细胞失水危害和细胞膜损伤的程度。(3)NaCl+MT2处理幼苗叶片的POD和SOD活性分别比盐胁迫处理显著提高31.45%和41.41%,其CAT活性却无显著变化,表明外源褪黑素可显著增强紫花苜蓿幼苗叶片POD、SOD活性,提高其活性氧的清除能力,减轻盐胁迫诱导的过氧化伤害。(4)盐胁迫显著抑制了紫花苜蓿幼苗光合作用效率,而NaCl+MT2处理幼苗叶片的净光合速率、气孔导度和蒸腾速率较盐胁迫处理分别显著增加了30.27%、45.1%、42.15%。研究发现,盐胁迫致使紫花苜蓿幼苗叶片的活性氧积累显著增加,抗氧化物酶活性显著降低,显著降低了其光合作用效率,外源褪黑素通过提高紫花苜蓿的抗氧化能力和光合作用效率来促进幼苗生长,从而增强了紫花苜蓿的耐盐性。  相似文献   
24.
Oxidative stress and down-regulated trophic factors are involved in the pathogenesis of nigrostriatal dopamine(DA)rgic neurodegeneration in Parkinson's disease. Fibroblast growth factor 9 (FGF9) is a survival factor for various cell types; however, the effect of FGF9 on DA neurons has not been studied. The antioxidant melatonin protects DA neurons against neurotoxicity. We used MPP+ to induce neuron death in vivo and in vitro and investigated the involvement of FGF9 in MPP+ intoxication and melatonin protection. We found that MPP+ in a dose- and time-dependent manner inhibited FGF9 mRNA and protein expression, and caused death in primary cortical neurons. Treating neurons in the substantia nigra and mesencephalic cell cultures with FGF9 protein inhibited the MPP+-induced cell death of DA neurons. Melatonin co-treatment attenuated MPP+-induced FGF9 down-regulation and DA neuronal apoptosis in vivo and in vitro . Co-treating DA neurons with melatonin and FGF9-neutralizing antibody prevented the protective effect of melatonin. In the absence of MPP+, the treatment of FGF9-neutralizing antibody-induced DA neuronal apoptosis whereas FGF9 protein reduced it indicating that endogenous FGF9 is a survival factor for DA neurons. We conclude that MPP+ down-regulates FGF9 expression to cause DA neuron death and that the prevention of FGF9 down-regulation is involved in melatonin-provided neuroprotection.  相似文献   
25.
孙杰  贾玉红  姜妙娜  张彩华 《生物磁学》2009,(11):2194-2196
时间生物学是一门研究生命活动节律的科学。在西方医学中,研究时间生物学是利用分子生物学实验来阐释其机制,以西医的思维方法解释时间生物学的生理及病理过程;中医对时间生物学的记载有两千多年的历史,阴阳理论、子午流注学说以及五运六气学说一直以来都在指导中医的诊断和治疗。中西医观的不同对时间生物学的研究提供了新的研究思路,同时时间生物学也为研究中西医结合提供了广阔的前景。  相似文献   
26.
为探讨不同浓度外源褪黑素对小麦幼苗生理及光合荧光特性的影响,该研究以良星99为供试材料,测定不同浓度褪黑素处理下小麦幼苗生长形态、光合及荧光参数以及抗氧化酶活性等关键指标。结果表明:(1)0.1μmol·L-1的褪黑素处理显著提高了小麦植株的光合能力,叶绿素Chl a、Chl b和Chl (a+b)以及叶绿素荧光参数调节性能量耗散的量子产额Y(NPQ)、表观光合传递速率(ETR)和非光化学淬灭(NPQ)均在褪黑素浓度为0.1μmol·L-1时达到增加最大值;PSⅡ最大光合效率(Fv/Fm)、最大光能转化潜力(Fv/Fo)随褪黑素浓度升高逐渐降低;光化学淬灭(qL)随褪黑素浓度增加先下降后上升。(2)与CK(0μmol·L-1)相比,低浓度褪黑素显著降低小麦根和叶中过氧化物酶(POD)及小麦叶中过氧化氢酶(CAT)的活性,高浓度褪黑素处理显著增加小麦POD的活性;小麦根中丙二醛(MDA)含量随褪黑素浓度的增加先下降后上升。综上表明,适量褪黑素处理可促进小麦的生长,使小麦光合能力维持在较高水平,并通过POD和CAT调节不同褪...  相似文献   
27.
Stress proteins such as HSP70 members (HSP72 and GRP75) and metallothionein (MT) protect the kidney against oxidative damage and harmful metals, whereas inducible nitric oxide synthase (iNOS) regulates tubular functions. A single dose of mercuric chloride (HgCl(2)) can cause acute renal failure in rats, its main target being the proximal tubule. Oxidative damage has been proposed as one of its pathogenic mechanisms. In this study we tested whether melatonin (MEL), a powerful antioxidant compound, is effective against HgCl(2) nephrotoxicity. Rats were treated with saline, HgCl(2) (3.5 mg/kg), MEL (5 mg/kg), and MEL + HgCl(2) and examined after 24 hr for HSP72, GRP75, MT, and iNOS by immunohistochemistry and immunoblotting. Tubular effects of the treatment were then characterized by ultrastructure. In the HgCl(2) group, all markers were overexpressed in convoluted proximal tubules and sometimes in distal tubules. In the MEL + HgCl(2) group, GRP75 and iNOS decreased in convoluted and straight proximal tubules, whereas HSP72 and MT persisted more than the saline and MEL-only groups. Tubular damage and mitochondrial morphometry were improved by MEL pretreatment. In conclusion, the beneficial effect of MEL against HgCl(2) nephrotoxicity was outlined morphologically and by the reduction of the tubular expression of stress proteins and iNOS. These markers could represent sensitive recovery index against mercury damage.  相似文献   
28.
Djungarian hamsters (Phodopus sungorus) bred at the Institute of Halle reveal three different circadian phenotypes. The wild type (WT) shows normal locomotor activity patterns, whereas in hamsters of the DAO (delayed activity onset) type, the activity onset is continuously delayed. Since the activity offset in those hamsters remains coupled to “light-on,” the activity time becomes compressed. Hamsters of the AR (arrhythmic) type are episodically active throughout the 24?h. Previous studies showed that a disturbed interaction of the circadian system with the light-dark (LD) cycle contributes to the phenomenon observed in DAO hamsters. To gain better insight into the underlying mechanisms, the authors investigated the daily melatonin rhythm, as it is a reliable marker of the circadian clock. Hamsters were kept individually under standardized laboratory conditions (LD 14:10, T?=?22°C?±?2°C, food and water ad libitum). WT, DAO (with exactly 5?h delay of activity onset), and AR hamsters were used for pineal melatonin and urinary 6-sulfatoxymelatonin (aMT6s) measurement. Pineal melatonin content was determined at 3 time points: 4?h after “light-off” [D?+?4], 1?h before “light-on” [L???1], and 1?h after “light-on” [L?+?1]). The 24-h profile of melatonin secretion was investigated by transferring the animals to metabolic cages for 27?h to collect urine at 3-h intervals for aMT6s analysis. WT hamsters showed high pineal melatonin content during the dark time (D?+?4, L???1), which significantly decreased at the beginning of the light period (L?+?1). In contrast, DAO hamsters displayed low melatonin levels during the part of the dark period when animals were still resting (D?+?4). At the end of the dark period (L???1), melatonin content increased significantly and declined again when light was switched on (L?+?1). AR hamsters showed low melatonin levels, comparable to daytime values, at all 3 time points. The results were confirmed by aMT6s data. WT hamsters showed a marked circadian pattern of aMT6s excretion. The concentration started to increase 3?h after “light-off” and reached daytime values 5?h after “light-on.” In DAO hamsters, in contrast, aMT6s excretion started about 6?h later and reached significantly lower levels compared to WT hamsters. In AR animals, aMT6s excretion was low at all times. The results clearly indicate the rhythm of melatonin secretion in DAO hamsters is delayed in accord with their delayed activity onset, whereas AR hamsters display no melatonin rhythm at all. Since the regulatory pathways for the rhythms of locomotor activity and melatonin synthesis (which are downstream from the suprachiasmatic nucleus [SCN]) are different but obviously convey the same signal, we conclude that the origin of the phenomenon observed in DAO hamsters must be located upstream of the SCN, or in the SCN itself. (Author correspondence: )  相似文献   
29.
Jet lag degrades performance and operational readiness of recently deployed military personnel and other travelers. The objective of the studies reported here was to determine, using a narrow bandwidth light tower (500 nm), the optimum timing of light treatment to hasten adaptive circadian phase advance and delay. Three counterbalanced treatment order, repeated measures studies were conducted to compare melatonin suppression and phase shift across multiple light treatment timings. In Experiment 1, 14 normal healthy volunteers (8 men/6 women) aged 34.9±8.2 yrs (mean±SD) underwent light treatment at the following times: A) 06:00 to 07:00 h, B) 05:30 to 07:30 h, and C) 09:00 to 10:00 h (active control). In Experiment 2, 13 normal healthy subjects (7 men/6 women) aged 35.6±6.9 yrs, underwent light treatment at each of the following times: A) 06:00 to 07:00 h, B) 07:00 to 08:00 h, C) 08:00 to 09:00 h, and a no-light control session (D) from 07:00 to 08:00 h. In Experiment 3, 10 normal healthy subjects (6 men/4 women) aged 37.0±7.7 yrs underwent light treatment at the following times: A) 02:00 to 03:00 h, B) 02:30 to 03:30 h, and C) 03:00 to 04:00 h, with a no-light control (D) from 02:30 to 03:30 h. Dim light melatonin onset (DLMO) was established by two methods: when salivary melatonin levels exceeded a 1.0 pg/ml threshold, and when salivary melatonin levels exceeded three times the 0.9 pg/ml sensitivity of the radioimmunoasssy. Using the 1.0 pg/ml DLMO, significant phase advances were found in Experiment 1 for conditions A (p?<?.028) and B (p?<?0.004). Experiment 2 showed significant phase advances in conditions A (p?<?0.018) and B (p?<?0.003) but not C (p?<?0.23), relative to condition D. In Experiment 3, only condition B (p?<?0.035) provided a significant phase delay relative to condition D. Similar but generally smaller phase shifts were found with the 2.7 pg/ml DLMO method. This threshold was used to analyze phase shifts against circadian time of the start of light treatment for all three experiments. The best fit curve applied to these data (R2?=?0.94) provided a partial phase-response curve with maximum advance at approximately 9–11 h and maximum delay at approximately 5–6 h following DLMO. These data suggest largest phase advances will result when light treatment is started between 06:00 and 08:00 h, and greatest phase delays will result from light treatment started between 02:00 to 03:00 h in entrained subjects with a regular sleep wake cycle (23:00 to 07:00 h).  相似文献   
30.
ABSTRACT

Bipolar disorders (BDs) are severe and common psychiatric disorders. BD pathogenesis, clinical manifestations and relapses are associated with numerous circadian rhythm abnormalities. In addition, infradian fluctuations of mood, social activity, weight and sleep patterns are very frequent in BD. Disease course with a seasonal pattern (SP) occurs in approximately 25% of depressive and 15% of manic episodes, which is coupled to a more severe disease symptomatology. The pathophysiological mechanisms of seasonal effects in BD await clarification, with likely important clinical consequences. This review aims at synthesizing available data regarding the underlying pathophysiological mechanisms of seasonality in BD patients, with implications for future research directions in the study of seasonality in BD. Three factors are suggested to play significant roles in BD with SP, namely the suprachiasmatic nuclei, as well as the melatonergic and photoperiodism systems. It is proposed that BD with SP may be considered as a complex disorder resulting from the interaction of clock gene vulnerabilities and biological clock neuroplasticity, with environmental factors, such as the response to light. Light seems to play a key role in BD with SP, mainly due to two seasonal signaling pathways: a light to cortex serotonin transporter pathway, as well as a pathway connecting light to melatonin synthesis. This provides a theoretical framework for BD with SP, including for future research and clinical management. The review proposes that future research should explore markers of seasonality in BD, such as plasma melatonin, sleep–wake rhythms (with actigraphy) and genetic or epigenetic variants within the melatonin synthesis pathway. The role of light in driving BD with SP is an active area of research. Seasonality may also be intimately linked to wider aspects of BD, including via interactions with the gut microbiome, the gut–liver axis, cholesterol regulation, aspects of metabolic syndrome, vitamin D, decreased longevity, suicide risk and medication treatment targets. Further research on the role of seasonality in BD is likely to clarify the etiology, course and treatment of BD more widely.  相似文献   
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