Literature DB >> 22108720

Mild hypoxemia during initial reperfusion alleviates the severity of secondary energy failure and protects brain in neonatal mice with hypoxic-ischemic injury.

Zoya V Niatsetskaya1, Pradeep Charlagorla, Dzmitry A Matsukevich, Sergey A Sosunov, Korapat Mayurasakorn, Veniamin I Ratner, Richard A Polin, Anatoly A Starkov, Vadim S Ten.   

Abstract

Reperfusion triggers an oxidative stress. We hypothesized that mild hypoxemia in reperfusion attenuates oxidative brain injury following hypoxia-ischemia (HI). In neonatal HI-mice, the reperfusion was initiated by reoxygenation with room air (RA) followed by the exposure to 100%, 21%, 18%, 15% oxygen for 60 minutes. Systemic oxygen saturation (SaO(2)), cerebral blood flow (CBF), brain mitochondrial respiration and permeability transition pore (mPTP) opening, markers of oxidative injury, and cerebral infarcts were assessed. Compared with RA-littermates, HI-mice exposed to 18% oxygen exhibited significantly decreased infarct volume, oxidative injury in the brain mitochondria and tissue. This was coupled with improved mitochondrial tolerance to mPTP opening. Oxygen saturation maintained during reperfusion at 85% to 95% was associated (r=0.57) with the best neurologic outcome. Exposure to 100% or 15% oxygen significantly exacerbated brain injury and oxidative stress. Compared with RA-mice, hyperoxia dramatically increased reperfusion CBF, but exposure to 15% oxygen significantly reduced CBF to values observed during the HI-insult. Mild hypoxemia during initial reperfusion alleviates the severity of HI-brain injury by limiting the reperfusion-driven oxidative stress to the mitochondria and mPTP opening. This suggests that at the initial stage of reperfusion, a slightly decreased systemic oxygenation (SaO(2) 85% to 95%) may be beneficial for infants with birth asphyxia.

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Year:  2011        PMID: 22108720      PMCID: PMC3272612          DOI: 10.1038/jcbfm.2011.164

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


  40 in total

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2.  Impairment of mitochondrial respiration after cerebral hypoxia-ischemia in immature rats: relationship to activation of caspase-3 and neuronal injury.

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4.  Late measures of brain injury after neonatal hypoxia-ischemia in mice.

Authors:  Vadim S Ten; Ed X Wu; Haiying Tang; Maria Bradley-Moore; Maksim V Fedarau; Veniamin I Ratner; Raymond I Stark; Jay A Gingrich; David J Pinsky
Journal:  Stroke       Date:  2004-07-22       Impact factor: 7.914

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6.  Delayed ("secondary") cerebral energy failure after acute hypoxia-ischemia in the newborn piglet: continuous 48-hour studies by phosphorus magnetic resonance spectroscopy.

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Review 7.  Metabolic stages, mitochondria and calcium in hypoxic/ischemic brain damage.

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Authors:  Hesham A Sadek; Kenneth M Humphries; Pamela A Szweda; Luke I Szweda
Journal:  Arch Biochem Biophys       Date:  2002-10-15       Impact factor: 4.013

9.  Resuscitation with 100% O2 increases cerebral injury in hypoxemic piglets.

Authors:  Berit H Munkeby; Wenche B Børke; Kristin Bjørnland; Liv I B Sikkeland; Grethe I A Borge; Bente Halvorsen; Ola D Saugstad
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10.  Brain injury and neurofunctional deficit in neonatal mice with hypoxic-ischemic encephalopathy.

Authors:  Vadim S Ten; Maria Bradley-Moore; Jay A Gingrich; Raymond I Stark; David J Pinsky
Journal:  Behav Brain Res       Date:  2003-10-17       Impact factor: 3.332

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  8 in total

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2.  Preferential cephalic redistribution of left ventricular cardiac output during therapeutic hypothermia for perinatal hypoxic-ischemic encephalopathy.

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3.  Isoflurane anesthesia initiated at the onset of reperfusion attenuates oxidative and hypoxic-ischemic brain injury.

Authors:  Sergey A Sosunov; Xavier Ameer; Zoya V Niatsetskaya; Irina Utkina-Sosunova; Veniamin I Ratner; Vadim S Ten
Journal:  PLoS One       Date:  2015-03-23       Impact factor: 3.240

4.  Effects of Acute Systemic Hypoxia and Hypercapnia on Brain Damage in a Rat Model of Hypoxia-Ischemia.

Authors:  Wanchao Yang; Xuezhong Zhang; Nan Wang; Jing Tan; Xianhai Fang; Qi Wang; Tao Tao; Wenzhi Li
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5.  Neuroprotective effects of ammonium tetrathiomolybdate, a slow-release sulfide donor, in a rodent model of regional stroke.

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6.  Mitochondrial calcium buffering depends upon temperature and is associated with hypothermic neuroprotection against hypoxia-ischemia injury.

Authors:  Sergey Sosunov; Arnav Bhutada; Zoya Niatsetskaya; Anatoly Starkov; Vadim Ten
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7.  Nelfinavir inhibits intra-mitochondrial calcium influx and protects brain against hypoxic-ischemic injury in neonatal mice.

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8.  Critical Role of Flavin and Glutathione in Complex I-Mediated Bioenergetic Failure in Brain Ischemia/Reperfusion Injury.

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  8 in total

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