Literature DB >> 18692566

High altitude memory impairment is due to neuronal apoptosis in hippocampus, cortex and striatum.

Panchanan Maiti1, Shashi B Singh, Birendranath Mallick, Sangu Muthuraju, Govindasami Ilavazhagan.   

Abstract

Cognitive and neuropsychological functions have been impaired at high altitude and the effects depend on altitude and duration of stay. However, the neurobiological mechanism of this impairment is poorly understood especially exposure to different duration. Aim of the present study was to investigate the changes of behavior, biochemistry and morphology after exposure to different duration of hypobaric hypoxia. The rats were exposed continuously to a simulated high altitude of 6100m for 3, 7, 14 and 21 days in an animal decompression chamber. Spatial reference memory was tested by Morris water maze. The oxidative stress markers like free radicals, NO, lipid peroxidation, LDH activity and antioxidant systems like GSH, GSSG, GPx, GR, SOD were estimated from cortex, hippocampus and striatum. The morphological changes, neurodegeneration, DNA fragmentation and mode of cell death have also been studied. It was observed that the spatial reference memory was significantly affected after exposure to hypobaric hypoxia. Increased oxidative stress markers along with decreased effectiveness of antioxidant system were also observed in hypoxia-exposed animals. Further pyknotic, shrunken, tangle-like neurons were observed in all these regions after hypoxia and neurodegeneration, DNA fragmentation and apoptosis were also observed in all the three regions. But after 21 days of exposure, the spatial memory was improved along with improvement of antioxidant activities. Our result suggests that the apoptotic death may be involved in HA-induced memory impairment and after 7 days of exposure the effect was more pronounced but after 21 days of exposure recovery was observed.

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Year:  2008        PMID: 18692566     DOI: 10.1016/j.jchemneu.2008.07.003

Source DB:  PubMed          Journal:  J Chem Neuroanat        ISSN: 0891-0618            Impact factor:   3.052


  50 in total

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3.  Exogenous growth hormone attenuates cognitive deficits induced by intermittent hypoxia in rats.

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4.  Effect of hypobaric hypoxia on cognitive functions and potential therapeutic agents.

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5.  Epigenetic Regulation of SNAP25 Prevents Progressive Glutamate Excitotoxicty in Hypoxic CA3 Neurons.

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Review 8.  Role of mitochondrial-mediated signaling pathways in Alzheimer disease and hypoxia.

Authors:  Cristina Carvalho; Sónia C Correia; Renato X Santos; Susana Cardoso; Paula I Moreira; Timothy A Clark; Xiongwei Zhu; Mark A Smith; George Perry
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9.  Unexpected reductions in regional cerebral perfusion during prolonged hypoxia.

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10.  Preinduction of HSP70 promotes hypoxic tolerance and facilitates acclimatization to acute hypobaric hypoxia in mouse brain.

Authors:  Kuan Zhang; Tong Zhao; Xin Huang; Zhao-hui Liu; Lei Xiong; Ming-ming Li; Li-ying Wu; Yong-qi Zhao; Ling-ling Zhu; Ming Fan
Journal:  Cell Stress Chaperones       Date:  2008-12-23       Impact factor: 3.667

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