Literature DB >> 11395392

Hibernation, a model of neuroprotection.

F Zhou1, X Zhu, R J Castellani, R Stimmelmayr, G Perry, M A Smith, K L Drew.   

Abstract

Hibernation, a natural model of tolerance to cerebral ischemia, represents a state of pronounced fluctuation in cerebral blood flow where no brain damage occurs. Numerous neuroprotective aspects may contribute in concert to such tolerance. The purpose of this study was to determine whether hibernating brain tissue is tolerant to penetrating brain injury modeled by insertion of microdialysis probes. Guide cannulae were surgically implanted in striatum of Arctic ground squirrels before any of the animals began to hibernate. Microdialysis probes were then inserted in some animals after they entered hibernation and in others while they remained euthermic. The brain tissue from hibernating and euthermic animals was examined 3 days after implantation of microdialysis probes. Tissue response, indicated by examination of hematoxylin and eosin-stained tissue sections and immunocytochemical identification of activated microglia, astrocytes, and hemeoxygenase-1 immunoreactivity, was dramatically attenuated around probe tracks in hibernating animals compared to euthermic controls. No difference in tissue response around guide cannulae was observed between groups. Further study of the mechanisms underlying neuroprotective aspects of hibernation may lead to novel therapeutic strategies for stroke and traumatic brain injury.

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Year:  2001        PMID: 11395392      PMCID: PMC1891987          DOI: 10.1016/S0002-9440(10)64686-X

Source DB:  PubMed          Journal:  Am J Pathol        ISSN: 0002-9440            Impact factor:   4.307


  42 in total

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Journal:  N Engl J Med       Date:  1995-12-14       Impact factor: 91.245

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  44 in total

Review 1.  A review of the effects of FSCV and microdialysis measurements on dopamine release in the surrounding tissue.

Authors:  Andrea Jaquins-Gerstl; Adrian C Michael
Journal:  Analyst       Date:  2015-06-07       Impact factor: 4.616

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Journal:  Biochem Soc Trans       Date:  2006-12       Impact factor: 5.407

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Journal:  J Neurosci Methods       Date:  2008-07-15       Impact factor: 2.390

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Authors:  Julie A Stenken; Martin K Church; Carolyn A Gill; Geraldine F Clough
Journal:  AAPS J       Date:  2009-12-01       Impact factor: 4.009

6.  Hibernation induces changes in the metacerebral neurons of Cornu aspersum: distribution and co-localization of cytoskeletal and calcium-binding proteins.

Authors:  Giacomo Gattoni; Violetta Insolia; Graziella Bernocchi
Journal:  Invert Neurosci       Date:  2018-10-17

Review 7.  Brain hypometabolism triggers PHF-like phosphorylation of tau, a major hallmark of Alzheimer's disease pathology.

Authors:  Thomas Arendt; Jens Stieler; Max Holzer
Journal:  J Neural Transm (Vienna)       Date:  2014-12-06       Impact factor: 3.575

Review 8.  Diabetic nephropathy: a disorder of oxygen metabolism?

Authors:  Toshio Miyata; Charles van Ypersele de Strihou
Journal:  Nat Rev Nephrol       Date:  2009-12-15       Impact factor: 28.314

9.  Seasonal protein changes support rapid energy production in hibernator brainstem.

Authors:  L Elaine Epperson; James C Rose; Rae L Russell; Mrinalini P Nikrad; Hannah V Carey; Sandra L Martin
Journal:  J Comp Physiol B       Date:  2009-12-05       Impact factor: 2.200

10.  Distinct α subunit variations of the hypothalamic GABAA receptor triplets (αβγ) are linked to hibernating state in hamsters.

Authors:  Raffaella Alò; Ennio Avolio; Anna Di Vito; Antonio Carelli; Rosa Maria Facciolo; Marcello Canonaco
Journal:  BMC Neurosci       Date:  2010-09-06       Impact factor: 3.288

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