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Similar effects of substance P on learning and memory function between hippocampus and striatal marginal division 被引量:2

Similar effects of substance P on learning and memory function between hippocampus and striatal marginal division
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摘要 Substance P is an endogenous neurokinin that is present in the central and peripheral nervous systems. The neuropeptide substance P and its high-affinity receptor neurokinin 1 receptor are known to play an important role in the central nervous system in inflammation, blood pressure, motor behavior and anxiety. The effects of substance P in the hippocampus and the marginal di- vision of the striatum on memory remain poorly understood. Compared with the hippocampus as a control, immunofluorescence showed high expression of the substance P receptor, neuro- kinin 1, in the marginal division of the striatum of normal rats. Unilateral or bilateral injection of an antisense oligonucleotide against neurokinin 1 receptor mRNA in the rat hippocampus or marginal division of the striatum effectively reduced neurokinin 1 receptor expression. Indepen- dent of injection site, rats that received this antisense oligonucleotide showed obviously increased footshock times in a Y-maze test. These results indicate that the marginal division of the striatum plays a similar function in learning and memory to the hippocampus, which is a valuable addi- tion to our mechanistic understanding of the learning and memory functions of the marginal division of the striatum. Substance P is an endogenous neurokinin that is present in the central and peripheral nervous systems. The neuropeptide substance P and its high-affinity receptor neurokinin 1 receptor are known to play an important role in the central nervous system in inflammation, blood pressure, motor behavior and anxiety. The effects of substance P in the hippocampus and the marginal di- vision of the striatum on memory remain poorly understood. Compared with the hippocampus as a control, immunofluorescence showed high expression of the substance P receptor, neuro- kinin 1, in the marginal division of the striatum of normal rats. Unilateral or bilateral injection of an antisense oligonucleotide against neurokinin 1 receptor mRNA in the rat hippocampus or marginal division of the striatum effectively reduced neurokinin 1 receptor expression. Indepen- dent of injection site, rats that received this antisense oligonucleotide showed obviously increased footshock times in a Y-maze test. These results indicate that the marginal division of the striatum plays a similar function in learning and memory to the hippocampus, which is a valuable addi- tion to our mechanistic understanding of the learning and memory functions of the marginal division of the striatum.
出处 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第8期857-863,共7页 中国神经再生研究(英文版)
基金 supported by the National Natural Science Foundation of China,No.30600797,30873238
关键词 nerve regeneration cognition substance P neurokinin 1 receptor HIPPOCAMPUS margin-al division of the striatum learning and memory NEOSTRIATUM NSFC grant neural generation nerve regeneration cognition substance P neurokinin 1 receptor hippocampus margin-al division of the striatum learning and memory neostriatum NSFC grant neural generation
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  • 1李胜修,舒斯云,包新民,许藏蔚.海人藻酸损毁纹状体边缘区后对大鼠学习和记忆功能影响的研究[J].神经解剖学杂志,1996,12(1):37-41. 被引量:44
  • 2Shu SY, Penny GR, Peterson GM.The ' marginal division': a new subdivision in the neostriatum of the rat.J Chem Neuroanat 1988;1(3):147-63
  • 3Shu SY, Bao XM, Zhang C, et al.A new subdivision, marginal division, in the neostriatum of the monkey brain.Neurochem Res 2000;25(2):231-7
  • 4Shu SY, Wu YM, Bao XM, et al.A new area in the human brain associated with learning and memory: immunohistochemical and functional MRI analysis.Mol Psychiatry 2002;7(9): 1018-22
  • 5Bao X M,Shu SY.The stereotaxic atlas of the rat brain. Beijing:The People's Health Publishing House 1991:35-6
  • 6Shu SY, Bao XM, Wu YM, et al. Hippocampal long-term potentiation attenuated by lesions in the marginal division of neostriatum. Neurochem Res 2003;28(5):743
  • 7Krugel U, Bigl V, Eschrich K, et al. Deafferentation of the septo-hippocampal pathway in rats as a model of the metabolic events in Alzheimer's disease.Int J Dev Neurosci 2001;19(3):263-77
  • 8Alberini CM.Genes to remember. J Exp Biol 1999;202(Pt 21):2887-91
  • 9Devan BD, White NM.Parallel information processing in the dorsal striatum:relation to hippocampal function. J Neurosci 1999;19(7):2789-98
  • 10Baldi E, Ambrogi Lorenzini C. Effects of combined medial septal area, fimbria-fornix and entorhinal cortex tetrodotoxin inactivations on passive avoidance response consolidation in the rat. Brain Res 1999;821(2):503-10

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