
Neuroprotective effect of helium after neonatal hypoxic ischemia: a narrative review
Author(s) -
Ruming Deng,
Haiying Li,
Xiang Li,
Haitao Shen,
Degang Wu,
Zhong Wang
Publication year - 2021
Publication title -
medical gas research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.52
H-Index - 24
ISSN - 2045-9912
DOI - 10.4103/2045-9912.314332
Subject(s) - neuroprotection , medicine , heliox , ischemia , neuroscience , anesthesia , intensive care medicine , pharmacology , psychology
Neonatal hypoxic ischemia is one of the leading causes of permanent morbidity and mortality in newborns, which is caused by difficulty in supplying blood and oxygen to brain tissue and is often associated with epilepsy, cerebral palsy, death, short-term or long-term neurological and cognitive impairment. In recent years, the clinical therapeutic effects of noble gases have been gradually discovered and recognized. Numerous studies have shown that noble gases have unique neuroprotective effects to restore damaged nerve and relieve symptoms in patients. Although research on the neuroprotective mechanisms of xenon and argon has yielded a lot of results, studies on helium have stalled. Helium is a colorless, odorless, monoatomic inert gas. The helium has no hemodynamic or neurocognitive side effects and can be used as an ideal pre-adaptor for future clinical applications. In recent years, studies have shown that heliox (a mixture of helium and oxygen) pretreatment can protect the heart, brain, liver and intestine from damage in several animal models, where a variety of signaling pathways have been proved to be involved. There are numerous studies on it even though the mechanism of helium for protecting newborns has not been fully elucidated. It is urgent to find an effective treatment due to the high death rate and disability rate of neonatal hypoxic ischemia. It is believed that helium will be approved safely and effectively for clinical use in the near future.