Father's Day Sale — 50% OFF iBottle+ | Free Shipping Australia-Wide | Gone After Father's Day

Discussion – 

0

Discussion – 

0

Hydrogen gas attenuates sevoflurane neurotoxicity through inhibiting nuclear factor κ-light-chain-enhancer of activated B cells signalling and inflammatory cytokine release in neonatal rats

Hydrogen Water Studies
NeuroprotectionAnesthetic Toxicity (Sevoflurane)

Hydrogen gas attenuates sevoflurane neurotoxicity through inhibiting nuclear factor κ-light-chain-enhancer of activated B cells signaling and pro-inflammatory cytokine release in neonatal rats

by Gang Wang, Jinyuan Li, Wenli Yu, Yiwei Shi

Abstract:

Anesthesia neurotoxicity in developing brain has gained increasing attention. However, knowledge regarding its mitigating strategies remains scant. Sevoflurane, a commonly used anesthetic, is responsible for learning and memory deficits in neonates. Molecular hydrogen is reported to be a potential neuroprotective agent because of its antioxidative and anti-inflammatory activities. This study aimed to investigate the effect of hydrogen gas on sevoflurane neurotoxicity. The newborn rats were treated with sevoflurane and/or hydrogen gas for 2 h. Spatial recognition memory and fear memory were determined by Y-maze and fear conditioning tests at 10 weeks of age. Nuclear factor κ-light-chain-enhancer of activated B cells (NF-κB) and pro-inflammatory cytokine levels were detected using western blot analysis. The data showed that the spatial recognition memory and fear memory of the rats treated with sevoflurane decreased compared with the control, and the cognitive function of the rats treated with sevoflurane and hydrogen gas significantly increased in comparison with treatment with sevoflurane alone. Moreover, hydrogen gas suppressed NF-κB phosphorylation and nuclear translocation and reduced the production of interleukin-1β, interleukin-6, and tumor necrosis factor-α following sevoflurane administration. Thus, the results proposed that hydrogen gas might protect against sevoflurane neurotoxicity by inhibiting NF-κB activation and pro-inflammatory cytokine release, providing a novel therapeutic strategy for anesthesia neurotoxicity.


Read more:

https://doi.org/10.1097/WNR.0000000000000899


Related Articles:

Hydrogen inhalation therapy regulates lactic acid metabolism following subarachnoid hemorrhage through the…

The neuroprotective effects of hydrogen have been demonstrated, but the mechanism is still poorly understood. In a clinical trial of inhaled hydrogen in patients with subarachnoid hemorrhage (SAH), we found that hydrogen reduced the accumulation of lactic acid in the…

Year Published: 2023BrainNeuroprotection
Social Communication of Maternal Immune Activation-Affected Offspring Is Improved by Si-Based Hydrogen-Producing…

Maternal immune activation (MIA) is triggered by infection or autoimmune predisposition during pregnancy, and cytokines produced by MIA are transmitted through the placenta to the fetal brain, implicating at the onset risks and vulnerability for developmental and psychiatric disorders, such…

Year Published: 2022PregnancyNeuroprotection
Protective effect of hydrogen-rich water on oxidative stress cell model and the…

Objective: To explore the protective effect of hydrogen-rich water on the oxidative stress injury of astrocytes in mice and its effect on phosphatidylinositol 3 kinase/protein kinase B (PI3K/Akt) signal pathway. Methods: In vitro, mice astrocytes were cultured and the logarithmic…

Year Published: 2019BrainNeuroprotection
Administration of molecular hydrogen during pregnancy improves behavioral abnormalities of offspring in…

The aim of the present study was to investigate long-term outcomes of the offspring in a lipopolysaccharide (LPS)-induced maternal immune activation (MIA) model and the effect of maternal molecular hydrogen (H2) administration. We have previously demonstrated in the MIA mouse…

Year Published: 2018PregnancyNeuroprotection
Structural and lipid peroxidation effects of lead on rat hippocampus and its…

Despite the well-known toxicity and the efforts to control its exposure, lead still has a serious health concern, particularly in young ages. Chelation therapy cannot correct the neurocognitive effects of chronic exposure. So, there is a requirement to test different…

Year Published: 2018Whole BodyNeuroprotection
Hydrogenized Water Effects on Protection of Brain Cells from Oxidative Stress and…

Hydrogenized water is known to have protective effects on cells and tissues, mainly through its antioxidant activities. Here we examined the protective effects of a commercial source of hydrogenized water on cultured human brain cells. Hydrogenized water was able to…

Year Published: 2018BrainNeuroprotection

Sam Solomon

Research Scientist at iBottle

0 Comments

Submit a Comment

0
    0
    Your Cart
    Empty CartYour cart is emptyReturn to Shop
    Secure Checkout
    Free Shipping
    30-Day Money-Back