Literature DB >> 11807390

Mild hypothermia reduces apoptosis of mouse neurons in vitro early in the cascade.

Lijun Xu1, Midori A Yenari, Gary K Steinberg, Rona G Giffard.   

Abstract

Recent experimental work has shown that hypothermia with even small decreases in temperature is broadly neuroprotective, but the mechanism of this protection remains unclear. Although reduction of metabolism could explain protection by deep hypothermia, it does not explain the robust protection found with mild hypothermia. Several reports have suggested that ischemic apoptosis is reduced by hypothermia. The authors examined the effects of hypothermia on neuronal apoptosis using serum deprivation, a well-accepted model that induces neuronal apoptosis. Mild hypothermia (33 degrees C) significantly reduced the number of morphologically apoptotic neurons to less than half the number seen in normothermic culture temperatures (37 degrees C) after 48 hours. They examined the effect of hypothermia on several steps in the cascade. Caspase-3, -8, and -9 activity was significantly increased after 24 hours at 37 degrees C, and was significantly lower in cultures deprived of serum at 33 degrees C. Cytochrome c translocation was reduced by hypothermia. Western blot analysis failed to detect significant changes in Bax, bcl -2, or hsp -70 at early time points, whereas hypothermia significantly reduced cJun N-terminal kinase activation. The authors conclude that small decreases in temperature inhibit apoptosis very early, possibly at the level of the initiation of apoptosis, as suggested by reduced cJun N-terminal kinase activation and before the translocation of cytochrome c, with subsequent prevention of caspase activation.

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Year:  2002        PMID: 11807390     DOI: 10.1097/00004647-200201000-00003

Source DB:  PubMed          Journal:  J Cereb Blood Flow Metab        ISSN: 0271-678X            Impact factor:   6.200


  54 in total

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2.  Successful treatment of an adolescent with Naegleria fowleri primary amebic meningoencephalitis.

Authors:  W Matthew Linam; Mubbasheer Ahmed; Jennifer R Cope; Craig Chu; Govinda S Visvesvara; Alexandre J da Silva; Yvonne Qvarnstrom; Jerril Green
Journal:  Pediatrics       Date:  2015-02-09       Impact factor: 7.124

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Authors:  Mohi E Alkadri; Paul McMullan
Journal:  Ochsner J       Date:  2009

Review 6.  Therapeutic Hypothermia and Neuroprotection in Acute Neurological Disease.

Authors:  Kota Kurisu; Jong Youl Kim; Jesung You; Midori A Yenari
Journal:  Curr Med Chem       Date:  2019       Impact factor: 4.530

Review 7.  Brain vulnerability and viability after ischaemia.

Authors:  Stefano G Daniele; Georg Trummer; Konstantin A Hossmann; Zvonimir Vrselja; Christoph Benk; Kevin T Gobeske; Domagoj Damjanovic; David Andrijevic; Jan-Steffen Pooth; David Dellal; Friedhelm Beyersdorf; Nenad Sestan
Journal:  Nat Rev Neurosci       Date:  2021-07-21       Impact factor: 34.870

8.  Mild hypothermia alleviates excessive autophagy and mitophagy in a rat model of asphyxial cardiac arrest.

Authors:  Jian Lu; Hui-Yin Qian; Li-Jun Liu; Bao-Chun Zhou; Yan Xiao; Jin-Ning Mao; Guo-Yin An; Ming-Zhong Rui; Tao Wang; Chang-Lai Zhu
Journal:  Neurol Sci       Date:  2014-05-11       Impact factor: 3.307

Review 9.  Hypothermia for neuroprotection in children after cardiopulmonary arrest.

Authors:  Barnaby Scholefield; Heather Duncan; Paul Davies; Fang Gao Smith; Khalid Khan; Gavin D Perkins; Kevin Morris
Journal:  Cochrane Database Syst Rev       Date:  2013-02-28

10.  Hypothermia-induced neuroprotection is associated with reduced mitochondrial membrane permeability in a swine model of cardiac arrest.

Authors:  Ping Gong; Rong Hua; Yu Zhang; Hong Zhao; Ziren Tang; Xue Mei; Mingyue Zhang; Juan Cui; Chunsheng Li
Journal:  J Cereb Blood Flow Metab       Date:  2013-03-13       Impact factor: 6.200

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