间歇性饥饿对亚硝酸钠所致大鼠海马神经细丝过度磷酸化及空间学习记忆损伤的改善作用

胡志红 闫君宝 李三强 胡咏梅

解剖学报 ›› 2017, Vol. 48 ›› Issue (1) : 14-18.

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解剖学报 ›› 2017, Vol. 48 ›› Issue (1) : 14-18. DOI: 10.16098/j.issn.0529-1356.2017.01.003
神经生物学

间歇性饥饿对亚硝酸钠所致大鼠海马神经细丝过度磷酸化及空间学习记忆损伤的改善作用

  • 胡志红* 闫君宝 李三强* 胡咏梅
作者信息 +

Intermittent starvation attenuating neurofilament phosphorylation and spatial learning and memory disorder induced by sodium nitrite in rats

  • HU Zhi-hong* YAN Jun-bao LI San-qiang* HU Yong-mei
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文章历史 +

摘要

目的 探讨间歇性饥饿对亚硝酸钠诱导的大鼠海马神经细丝(NF)过度磷酸化及空间学习记忆的影响。 方法 36只大鼠随机分为对照组、亚硝酸钠组、饥饿+亚硝酸钠组,每组12只。亚硝酸钠组大鼠饮亚硝酸钠水[水中溶入亚硝酸钠粉剂100 mg/(kg·d)],正常喂食;饥饿+亚硝酸钠组大鼠饮亚硝酸钠水,采取饥饿2d,恢复喂食3d 的喂食方法,喂养60 d后通过Morris水迷宫实验检测各组大鼠的空间学习记忆能力,免疫印迹和免疫组织化学方法检测大鼠海马NF磷酸化水平与分布。结果 与对照组相比,亚硝酸钠组大鼠第2天至第7天的潜伏期[(53.34±5.28)s,(35.15±10.29)s,(23.52±9.50)s,(14.49±8.70)s,(16.87±8.77)s,(12.31±7.12)s]明显大于对照组[(31.24±8.53)s,(12.41±6.54)s,(10.49±6.43)s,(8.61±2.56)s,(7.25±2.12)s,(6.03±1.92)s](P<0.01或P<0.05),跨越平台的次数(1.18±0.82)明显小于对照组(3.96±0.54,P<0.05);饥饿+亚硝酸钠组只有大鼠第2天至第3天的潜伏期[(43.61±1.76)s,(25.25±7.49)s]大于对照组(P<0.05),第4天至第7天的潜伏期[(19.47±8.30)s,(10.77±6.28)s,(12.05±7.49)s,(10.29±7.52)s]与对照组相比差异无统计学意义(P>0.05)。免疫印迹和免疫组织化学结果显示,亚硝酸钠导致海马NF的磷酸化水平升高,而饥饿+亚硝酸钠组与对照组相比无明显变化。结论 饥饿处理可改善亚硝酸钠导致的大鼠海马神经细丝过度磷酸化及空间学习记忆损伤。

Abstract

Objective To explore the effect of intermittent starvation on neurofilament phosphorylation and spatial learning and memory in rats induced by sodium nitrite.Methods Thirty-six rats were randomly divided into control, NaNO2 and stavation+NaNO2 groups, 12 rats in each group. NaNO2 group and stavation+NaNO2 group rats were served as drinking water containing sodium nitrite [100mg/(kg·d)]. Starvation+NaNO2 group rats were deprived of food for 2 days, and then re-feeded for 3 days. Sixty days later, the ability of spatial learning and memory of the rats was measured by Morris water maze. Phosphorylation level of neurofilament in the hippocampus was detected by immunohistochemistry and Western blotting. Results In comparison with the control rats, the NaNO2 rats showed significantly longer latency to find the hidden platform from 2 days to 7 days in Morris water maze (control group latency: 31.24±8.53,12.41±6.54,10.49±6.43,8.61±2.56,7.25±2.12,6.03±1.92; NaNO2 group latency: 53.34±5.28,35.15±10.29,23.52±9.50,14.49±8.70,16.87±8.77,12.31±7.12) (P<0.05,P<0.01), and elevated phosphorylation level of neurofilament, while stavation+NaNO2 group rats only showed longer latency on 2 days and 3 days(43.61±1.76,25.25±7.49)in Morris water maze. There was no obvious difference in phosphorylation level of neurofilament between the control and stavation+NaNO2 group. Conclusion Intermittent starvation attenuates neurofilament phosphorylation and spatial learning and memory disorder induced by sodium nitrite in rats.

关键词

间歇性饥饿 / 亚硝酸钠 / 神经细丝 / 磷酸化 / 学习 / 记忆 / 免疫印迹法 / 大鼠

Key words

Intermittent starvation / Sodium nitrite / Neurofilament / Phosphorylation / Learning / Memory / Western blotting / Rat

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胡志红 闫君宝 李三强 胡咏梅. 间歇性饥饿对亚硝酸钠所致大鼠海马神经细丝过度磷酸化及空间学习记忆损伤的改善作用[J]. 解剖学报. 2017, 48(1): 14-18 https://doi.org/10.16098/j.issn.0529-1356.2017.01.003
HU Zhi-hong YAN Jun-bao LI San-qiang HU Yong-mei. Intermittent starvation attenuating neurofilament phosphorylation and spatial learning and memory disorder induced by sodium nitrite in rats[J]. Acta Anatomica Sinica. 2017, 48(1): 14-18 https://doi.org/10.16098/j.issn.0529-1356.2017.01.003

参考文献

[1]Sternberger NH, Sternberger LA, Ulrich J.Aberrant neurofilament phosphorylation in Alzheimer diease[J]. Proc Natl Acad Sci USA,1985,82(12):4274-4276.
[2]Hu S,Cui ZhJ,Guo JN,et al.Effects of prenatal nitrite exposure on hippocampus of mouse pups[J]. Acta Anatomic Sinica, 2015,46(3):289-296. (in Chinese)
胡桑,崔占军,郭俊楠,等.孕期亚硝酸盐暴露对仔鼠海马的影响[J].解剖学报,2015,46(3):289-296. 
[3]Li RL, Chen YF, Wang Y, et al. Synapse loss in visual cortex of mouse after prenatal nitrite exposure[J]. Acta Anatomic Sinica, 2015,46(6):729-736. (in Chinese)
李瑞玲,陈永芳,王颖,等.孕期亚硝酸盐暴露对子鼠视皮质突触改变的影响[J].解剖学报,2015,46(6):729-736.
[4]Hanaa AH,Hani SH,Fawzia EZ.Garlic oil as a modulating agent for oxidative stress and neurotoxicity induced by sodium nitrite in male albino rats[J]. Food Chem Toxicol,2010,48(7):1980-1985.
[5]Hu ZhH, Fan LL, Hu YM. Effect of sodium nitrite on phosphorylation of  cytoskeletal proteins and spatial learning and memory in rats[J]. Acta Physiologica Sinica, 2015,67(5):479-486. (in Chinese)
胡志红,范玲玲,胡咏梅. 亚硝酸钠对大鼠海马骨架蛋白磷酸化水平及空间学习记忆的影响[J].生理学报,2015,67(5):479-486.
[6]Halagappa VK, Guo Z, Pearson M, et al. Intermittent fasting and caloric restriction ameliorate age-related behavioral deficits in the triple-transgenic mouse model of Alzheimer’s disease[J]. Neurobiol Dis, 2007,26(1):212-220.
[7]Chen J, Feng YM, Zhou J, et al.The effect of cdk-5 overexpression on neurofilament phosphorylation[J]. Journal of Medical Molecular Biology, 2004,1(2):69-72. (in Chinese)
陈娟,冯友梅,周洁,等. cdk-5过度表达对神经细丝磷酸化的影响[J].医学分子生物学杂志,2004,1(2):69-72.
[8]Ackerley S, Grierson AJ, Brownless J, et al.Glutamate slows axonal transport of neurofilaments in transfected neurons[J].J Cell Biol,2000,150(1):165-176.
[9]Wang YP,Wei ZL,Wang XCh, et al. Comparative study of the expression and phosphorylation of neurofilament proteins of brain gray matter in Alzhaimer disease[J].Acta Academiae Medicinae Sinicae, 2001,23(5):445-449. (in Chinese)
汪义朋,魏泽兰,王小川,等. 阿尔茨海默病患者大脑灰质神经细丝蛋白的表达特性及磷酸化修饰的比较研究[J].中国医学科学院学报,2001,23(5):445-449.
[10]Li XCh, Zhang JX, Wang JZh. Effect of melatonin on calyculin a induced neurofilament hyperphosphorylation[J].Journal of Xi’an Jiaotong University(Medical Sciences), 2006,27(2):123-126. (in Chinese)
李夏春,张军霞,王建枝.褪黑素对花萼海绵诱癌素诱导的神经细丝过度磷酸化的影响及机制[J].西安交通大学学报医学版,2006,27(2):123-126.
[11]Chai GS, Jiang X, Ni ZF, et al. Betaine attenuates Alzheimer-like pathological changes and memory deficits induced by homocysteine[J]. J Neurochem,2013,124(3): 388-396.[12]Schweers O, Mandelkow EM, Biernat J, et al. Oxidation of cysteine-322 in the repeat domain of microtubule-associated protein tau controls in vitro assembly of paired belical filaments[J]. Proc Natl Acad Sci USA,1995, 92(18): 8463-8467.
[13]Wang X, Wang LP, Tang H, et al. Acetyl-L-carnitine rescues scopolamine-induced memory deficits by restoring insulin-like growth factor II via decreasing p53 oxidation[J]. Neuropharmacology,2014,76(1): 80-87.
[14]Watay AT, Nunomura A, Smith MA, et al. High molecular weig ht neurofilament pro teins are phy siological substrates of adduction by the lipid peroxidation product hydroxy nonenal[J]. J Biol Chem, 2002, 277(7):4644-4648.
[15]Duan W, Guo Z, Mattson MP. Brain-derived neurotrophic factor mediates an excitoprotective effect of dietary restriction in mice[J]. J Neurochem, 2001,76(2):619-626.
[16]Lee J, Duan W, Mattson MP. Evidence that brain-derived neurotrophic factor is required for basal neurogenesis and mediates, in part, the enhancement of neurogenesis by dietary restriction in the hippocampus of adult mice[J]. J Neurochem,2002, 82(6):1367-1375.
[17]Qiu G, Spangler EL, Wan R, et al.Neuroprotection provided by dietary restriction in rats is further enhanced by reducing glucocortocoids[J]. Neurobiol Aging, 2012, 33(10):2398-2410.
[18]Amigo I, Kowaltowski AJ. Dietary restriction in cerebral bioenergetics and redox state[J]. Redox Biol, 2014,11(2):296-304.

基金

河南省教育厅科学技术研究重点项目;河南科技大学创新团队资助


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