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The effect of lens aging and cataract surgery on circadian rhythm 被引量:1
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作者 Shen-Shen Yan Wei Wang 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2016年第7期1066-1074,共9页
Many organisms have evolved an approximately 24-hour circadian rhythm that allows them to achieve internal physiological homeostasis with external environment.Suprachiasmatic nucleus(SCN) is the central pacemaker of... Many organisms have evolved an approximately 24-hour circadian rhythm that allows them to achieve internal physiological homeostasis with external environment.Suprachiasmatic nucleus(SCN) is the central pacemaker of circadian rhythm,and its activity is entrained to the external light-dark cycle.The SCN controls circadian rhythm through regulating the synthesis of melatonin by pineal gland via a multisynaptic pathway.Light,especially shortwavelength blue light,is the most potent environmental time cue in circadian photoentrainment.Recently,the discovery of a novel type of retinal photoreceptors,intrinsically photosensitive retinal ganglion cells,sheds light on the mechanism of circadian photoentrainment and raises concerns about the effect of ocular diseases on circadian system.With age,light transmittance is significantly decreased due to the aging of crystalline lens,thus possibly resulting in progressive loss of circadian photoreception.In the current review,we summarize the circadian physiology,highlight the important role of light in circadian rhythm regulation,discuss about the correlation between age-related cataract and sleep disorders,and compare the effect of blue light-filtering intraocular lenses(lOLs) and ultraviolet only filtering lOLs on circadian rhythm. 展开更多
关键词 circadian rhythm blue light crystalline lens cataract surgery suprachiasmatic nucleus melatonin ganglion cells
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Effect of Electro-Acupuncture on Expression of Circadian Clock Gene Per2 and Bmal1 in Sleep Deprivation Rat 被引量:1
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作者 Jie Yu Jia Chen +5 位作者 Tianjun Hu Shanghan Guo Xiulian Wang Yinyi Guo Xiaoyin Chen Canghuan Zhao 《Chinese Medicine》 2016年第1期16-24,共9页
Objective: The objective is to observe the treatment effect of electro-acupuncture (EA) on core circadian clock gene Per2 and Bmal1 expression in hypothalamus of sleep-deprivation (SD) rats. Methods: Thirty-two Wistar... Objective: The objective is to observe the treatment effect of electro-acupuncture (EA) on core circadian clock gene Per2 and Bmal1 expression in hypothalamus of sleep-deprivation (SD) rats. Methods: Thirty-two Wistar male rats were randomly divided into 4 groups. Mice in the blank control group did not receive any treatment;the remaining groups were applied with para-chlorophenylalanine (PCPA) 300 mg/kg intraperitoneal injection for 2 days. Diazepam group received intraperitoneal injection of Diazepam (0.9 mg/kg, i.p.) one time a day for 5 days, while M group was treated with saline (0.9 mg/kg, i.p.) at the same time. Rats in EA group were given EA treatment, 20 minutes, once a day for 5 days, and rats in remaining groups were put into fixation-machine for the same time everyday, lasting for 5 days. Rats were sacrificed after anesthesia at the 8th day. Real-time PCR was adopted to detect the expression in clock gene Per2 and Bmal1 of each group. Results: Compared with blank control group, the expression of Per2 was significant decreased in PCPA model group (P 0.05). Conclusion: EA can significant up-regulate the expression of Per2 in SD rats, and down-regulate gene Bmal1 expression, and benefiting the weight of rats. Thus, EA is a potentially promising intervention to treat sleep-deprivation. 展开更多
关键词 ELECTRO-ACUPUNCTURE Sleep-Deprivation circadian rhythm PER2 BMAL1 suprachiasmatic nucleus (SCN)
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大鼠交叉上核中SS和VIPmRNA昼夜节律的研究 被引量:1
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作者 杨靖 井上慎一 《动物学报》 SCIE CAS CSCD 1995年第3期322-326,共5页
用Northern blot杂交方法分析LD循环条件下大鼠SCN和CX的SSmRNA和VIPmRNA丰度的昼夜变化,结果表明这两种mRNA昼夜间的相对含量在CX中基本不变,而在SCN中则呈现规律性变化的模式。与双侧眼... 用Northern blot杂交方法分析LD循环条件下大鼠SCN和CX的SSmRNA和VIPmRNA丰度的昼夜变化,结果表明这两种mRNA昼夜间的相对含量在CX中基本不变,而在SCN中则呈现规律性变化的模式。与双侧眼球摘除后大鼠SCN mRNA丰度昼夜变化的实验结果相比较,SSmRNA丰度变化不受外界光的影响,具有内源性的昼夜节律。 展开更多
关键词 大鼠 昼夜节律 交叉上核 mrna
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糖皮质激素对人视交叉上核加压素mRNA表达的影响
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作者 刘荣玉 周江宁 《中国药理学通报》 CAS CSCD 北大核心 2000年第3期286-289,共4页
目的 观察长期接受糖皮质激素治疗 ,对于人视交叉上核 (SCN)加压素mRNA表达的影响。方法 采用的脑组织为福尔马林固定 ,石蜡包埋标本。切片厚度 :6 μm。SCN连续切片每隔 30 0 μm取片一张 ,用原位杂交的方法 ,显示该切片上加压素mRN... 目的 观察长期接受糖皮质激素治疗 ,对于人视交叉上核 (SCN)加压素mRNA表达的影响。方法 采用的脑组织为福尔马林固定 ,石蜡包埋标本。切片厚度 :6 μm。SCN连续切片每隔 30 0 μm取片一张 ,用原位杂交的方法 ,显示该切片上加压素mRNA的表达。采用IBAS KAT图像分析系统定量分析SCN加压素mRNA表达信号。结果 实验组SCN加压素mRNA的表达量与对照组相比明显降低 (分别为 44 33± 16 2 8,990 9± 70 4,P =0 0 2 )。实验组SCN表达加压素mRNA的细胞总数与对照组相比亦降低 47% (分别为 1330 6± 36 5 9、2 4939± 1393,P =0 0 3)。在对照组或实验组 ,加压素mRNA总量与脑重量和死后延搁时间均无显著性相关。结论 服用糖皮质激素抑制SCN加压素mRNA的表达 。 展开更多
关键词 糖皮质激素 视交叉上核 加压素mrna 睡眠紊乱
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Role of the cation-chloride-cotransporters in the circadian system 被引量:2
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作者 Shihan Salihu Nur Farah Meor Azlan +3 位作者 Sunday Solomon Josiah Zhijuan Wu Yun Wang Jinwei Zhang 《Asian Journal of Pharmaceutical Sciences》 SCIE CAS 2021年第5期589-597,共9页
The circadian system plays an immense role in controlling physiological processes in our body.The suprachiasmatic nucleus (SCN) supervises this system,regulating and harmonising the circadian rhythms in our body.Most ... The circadian system plays an immense role in controlling physiological processes in our body.The suprachiasmatic nucleus (SCN) supervises this system,regulating and harmonising the circadian rhythms in our body.Most neurons present in the SCN are GABAergic neurons.Although GABA is considered the main inhibitory neurotransmitter of the CNS,recent studies have shown that excitatory responses were recorded in this area.These responses are enabled by an increase in intracellular chloride ions[Cl;];levels.The chloride (Cl;) levels in GABAergic neurons are controlled by two solute carrier 12 (SLC12)cation-chloride-cotransporters (CCCs):Na^(+)/K^(+)/Cl^(-)co-transporter (NKCC1) and K^(+)/Cl^(-)cotransporter (KCC2),that respectively cause an influx and efflux of Cl^(-).Recent works have found altered expression and/or activity of either of these co-transporters in SCN neurons and have been associated with circadian rhythms.In this review,we summarize and discuss the role of CCCs in circadian rhythms,and highlight these recent advances which attest to CCC’s growing potential as strong research and therapeutic targets. 展开更多
关键词 GABAERGIC Na^(+)-K^(+)-2Cl^(-)cotransporter 1(NKCC1) K^(+)-2Cl^(-)cotransporter 2(KCC2) WNK3-SPAK/OSR1 Chloride(Cl^(-)) homoostasis suprachiasmatic nucleus(SCN) circadian rhythms
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短期模拟失重可引起大鼠视交叉上核中枢时钟基因的表达异常
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作者 董栋 陈励 +3 位作者 张斌 余琳 马进 谢满江 《心脏杂志》 CAS 2019年第3期315-319,共5页
目的 探讨1周模拟失重对大鼠生物钟中枢时钟基因表达影响。方法 采用尾悬吊后肢去负荷模型模拟太空微重力环境,48只雄性SD大鼠随机均分为对照(control,CON)组和尾悬吊(tail-suspension,SUS)组。两组大鼠在相同的光照环境下(08:00~20:00... 目的 探讨1周模拟失重对大鼠生物钟中枢时钟基因表达影响。方法 采用尾悬吊后肢去负荷模型模拟太空微重力环境,48只雄性SD大鼠随机均分为对照(control,CON)组和尾悬吊(tail-suspension,SUS)组。两组大鼠在相同的光照环境下(08:00~20:00)饲养。蛋白印迹实验检测大鼠视交叉上核(suprachiasmatic nucleus,SCN)内时钟基因(Per2,Bmal1)以及钙通道Cav1.2蛋白在不同时间点的表达水平,同时采用实时定量PCR技术检测不同时间点SCN中Per2,Bmal1的转录水平。结果 与CON组相比,短期模拟失重引起大鼠SCN中时钟基因Per2和Bmal1 mRNA转录和蛋白表达下降(P<0.05),且波动幅度发生显著降低。此外,与对照组相比,模拟失重使得SUS组大鼠SCN中Cav1.2蛋白表达发生了明显上升(P<0.05)。结论 短期模拟失重可引起大鼠时钟基因表达异常,这可能是模拟失重引起机体发生病理性改变的机制之一,也为重力变化信号直接转化为时间节律信号提供了直接的证据。 展开更多
关键词 模拟失重 似昼夜节律 时钟基因 视交叉上核 大鼠
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Intrinsically photosensitive retinal ganglion cells 被引量:18
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作者 Gary E.PICKARD Patricia J.SOLLARS 《Science China(Life Sciences)》 SCIE CAS 2010年第1期58-67,共10页
A new mammalian photoreceptor was recently discovered to reside in the ganglion cell layer of the inner retina.These intrinsically photosensitive retinal ganglion cells(ipRGCs) express a photopigment,melanopsin,that c... A new mammalian photoreceptor was recently discovered to reside in the ganglion cell layer of the inner retina.These intrinsically photosensitive retinal ganglion cells(ipRGCs) express a photopigment,melanopsin,that confers upon them the ability to respond to light in the absence of all rod and cone photoreceptor input.Although relatively few in number,ipRGCs extend their dendrites across large expanses of the retina making them ideally suited to function as irradiance detectors to assess changes in ambient light levels.Phototransduction in ipRGCs appears to be mediated by transient receptor potential channels more closely resembling the phototransduction cascade of invertebrate rather than vertebrate photoreceptors.ipRGCs convey irradiance information centrally via the optic nerve to influence several functions.ipRGCs are the primary retinal input to the hypothalamic suprachiasmatic nucleus(SCN),a circadian oscillator and biological clock,and this input entrains the SCN to the day/night cycle.ipRGCs contribute irradiance signals that regulate pupil size and they also provide signals that interface with the autonomic nervous system to regulate rhythmic gene activity in major organs of the body.ipRGCs also provide excitatory drive to dopaminergic amacrine cells in the retina,providing a novel basis for the restructuring of retinal circuits by light.Here we review the ground-breaking discoveries,current progress and directions for future investigation. 展开更多
关键词 MELANOPSIN circadian rhythmS suprachiasmatic nucleus retina pupillary light REFLEX
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