[Changes in intensity of hypoxic brain damage in rats induced by hypoxic postconditioning]. 2012

M G Vorob'ev, and E A Rybnikov, and M O Samoĭlov

The present study has been aimed to estimate a neuroprotective effect of postconditioning (PostC) by using mild hypobaric hypoxia (360 mm Hg, 2 h) in a model of severe hypoxic brain injury (180 mm Hg, 3 h) in rats. PostC was performed by three trials of mild hypoxia with 24 h intervals, according to two different protocols--PostC was started 3 h (early PostC) or 24 h (delayed PostC) following severe hypoxia. Using histological methods and computer image analysis, loss of neurons in hippocampus and neocortex was analyzed 7 days after severe hypoxia. Severe hypoxia caused loss of 24% of neurons in layer V of the neocortex, 26% of neurons in CA1 region of hippocampus and 22% of neurons in CA4 region. Early PostC prevented loss of neurons in CA1 region of hippocampus and significantly reduced loss of neurons in neocortex (to 13%) and in CA4 region (to 10%). Delayed PostC fully prevented neuronal damage in CA4 region of hippocampus and neocortex and was to a large extent but not completely protective in CA1 region (12% of neurons were lost). The results show that PostC performed by hypobaric hypoxia has a pronounced neuroprotective effect, reducing the loss of neurons in vulnerable structures of brain (hippocampus and neocortex). The efficacy of neuroprotection depends upon the time of presentation of the first PostC session.

UI MeSH Term Description Entries
D008297 Male Males
D009474 Neurons The basic cellular units of nervous tissue. Each neuron consists of a body, an axon, and dendrites. Their purpose is to receive, conduct, and transmit impulses in the NERVOUS SYSTEM. Nerve Cells,Cell, Nerve,Cells, Nerve,Nerve Cell,Neuron
D001921 Brain The part of CENTRAL NERVOUS SYSTEM that is contained within the skull (CRANIUM). Arising from the NEURAL TUBE, the embryonic brain is comprised of three major parts including PROSENCEPHALON (the forebrain); MESENCEPHALON (the midbrain); and RHOMBENCEPHALON (the hindbrain). The developed brain consists of CEREBRUM; CEREBELLUM; and other structures in the BRAIN STEM. Encephalon
D001931 Brain Mapping Imaging techniques used to colocalize sites of brain functions or physiological activity with brain structures. Brain Electrical Activity Mapping,Functional Cerebral Localization,Topographic Brain Mapping,Brain Mapping, Topographic,Functional Cerebral Localizations,Mapping, Brain,Mapping, Topographic Brain
D002534 Hypoxia, Brain A reduction in brain oxygen supply due to ANOXEMIA (a reduced amount of oxygen being carried in the blood by HEMOGLOBIN), or to a restriction of the blood supply to the brain, or both. Severe hypoxia is referred to as anoxia and is a relatively common cause of injury to the central nervous system. Prolonged brain anoxia may lead to BRAIN DEATH or a PERSISTENT VEGETATIVE STATE. Histologically, this condition is characterized by neuronal loss which is most prominent in the HIPPOCAMPUS; GLOBUS PALLIDUS; CEREBELLUM; and inferior olives. Anoxia, Brain,Anoxic Encephalopathy,Brain Hypoxia,Cerebral Anoxia,Encephalopathy, Hypoxic,Hypoxic Encephalopathy,Anoxia, Cerebral,Anoxic Brain Damage,Brain Anoxia,Cerebral Hypoxia,Hypoxia, Cerebral,Hypoxic Brain Damage,Anoxic Encephalopathies,Brain Damage, Anoxic,Brain Damage, Hypoxic,Damage, Anoxic Brain,Damage, Hypoxic Brain,Encephalopathies, Anoxic,Encephalopathies, Hypoxic,Encephalopathy, Anoxic,Hypoxic Encephalopathies
D006624 Hippocampus A curved elevation of GRAY MATTER extending the entire length of the floor of the TEMPORAL HORN of the LATERAL VENTRICLE (see also TEMPORAL LOBE). The hippocampus proper, subiculum, and DENTATE GYRUS constitute the hippocampal formation. Sometimes authors include the ENTORHINAL CORTEX in the hippocampal formation. Ammon Horn,Cornu Ammonis,Hippocampal Formation,Subiculum,Ammon's Horn,Hippocampus Proper,Ammons Horn,Formation, Hippocampal,Formations, Hippocampal,Hippocampal Formations,Hippocampus Propers,Horn, Ammon,Horn, Ammon's,Proper, Hippocampus,Propers, Hippocampus,Subiculums
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D000860 Hypoxia Sub-optimal OXYGEN levels in the ambient air of living organisms. Anoxia,Oxygen Deficiency,Anoxemia,Deficiency, Oxygen,Hypoxemia,Deficiencies, Oxygen,Oxygen Deficiencies
D017208 Rats, Wistar A strain of albino rat developed at the Wistar Institute that has spread widely at other institutions. This has markedly diluted the original strain. Wistar Rat,Rat, Wistar,Wistar Rats
D051381 Rats The common name for the genus Rattus. Rattus,Rats, Laboratory,Rats, Norway,Rattus norvegicus,Laboratory Rat,Laboratory Rats,Norway Rat,Norway Rats,Rat,Rat, Laboratory,Rat, Norway,norvegicus, Rattus

Related Publications

M G Vorob'ev, and E A Rybnikov, and M O Samoĭlov
May 2015, World journal of pediatrics : WJP,
M G Vorob'ev, and E A Rybnikov, and M O Samoĭlov
January 2013, Zhongguo dang dai er ke za zhi = Chinese journal of contemporary pediatrics,
M G Vorob'ev, and E A Rybnikov, and M O Samoĭlov
August 2017, Behavioural brain research,
M G Vorob'ev, and E A Rybnikov, and M O Samoĭlov
February 2009, Sheng li xue bao : [Acta physiologica Sinica],
M G Vorob'ev, and E A Rybnikov, and M O Samoĭlov
September 2014, Sichuan da xue xue bao. Yi xue ban = Journal of Sichuan University. Medical science edition,
M G Vorob'ev, and E A Rybnikov, and M O Samoĭlov
March 2023, Neuroreport,
M G Vorob'ev, and E A Rybnikov, and M O Samoĭlov
January 2016, Folia biologica,
M G Vorob'ev, and E A Rybnikov, and M O Samoĭlov
January 1994, Life sciences,
M G Vorob'ev, and E A Rybnikov, and M O Samoĭlov
February 1975, British journal of anaesthesia,
Copied contents to your clipboard!