Phosphorylation-mediated PI3K-Art signalling pathway as a therapeutic mechanism in the hydrogen-induced alleviation of brain injury in septic mice.
Bai Y, Li L, Dong B, Ma W, Chen H, Yu Y · Journal of cellular and molecular medicine · 2022
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Independent study record
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The publication “Phosphorylation-mediated PI3K-Art signalling pathway as a therapeutic mechanism in the hydrogen-induced alleviation of brain injury in septic mice.” is organized in H2HUBB under the research focus hydrogen neurological study 2022. The publication is cited as Bai Y, Li L, Dong B, Ma W, Chen H, Yu Y, Journal of cellular and molecular medicine, 2022. This animal study examined Phosphorylation-mediated PI3K-Art signalling pathway as a therapeutic mechanism in the hydrogen-induced alleviation of brain injury in septic mice. The abstract describes Mouse model. The abstract reports: In proteomics and phosphoproteomics analysis, 268 differentially phosphorylated proteins (DPPs) showed a change in the phosphorylated form in the CLP + H group (p . This is an automated editorial draft based on the abstract and requires source review before publication.
Hydrogen neurological study 2022 overview
To investigate the underlying role of protein phosphorylation in SAE and H treatment, a mouse model of sepsis was constructed by caecal ligation and… Animal research can identify biological effects and support future investigation, but it cannot by itself establish safety or effectiveness in humans.
Study design and hydrogen intervention
Publication type: Animal study. Evidence type: Preclinical animal evidence. Research model or population: Mouse model. Blinding: Unknown. Control status: Unknown.
Delivery method: Other or not reported.
Reported findings and scientific interpretation
For this hydrogen neurological study 2022, the study record reports the following: The abstract reports: In proteomics and phosphoproteomics analysis, 268 differentially phosphorylated proteins (DPPs) showed a change in the phosphorylated form in the CLP + H group (p
These findings should be interpreted as one piece of evidence rather than as a stand-alone medical conclusion. Results can be influenced by the research model, study design, treatment protocol, sample size, outcome selection, statistical methods, and whether the findings have been independently reproduced.
How this research record was prepared
H2HUBB organizes bibliographic details, study design information, intervention data, outcomes, limitations, and safety notes from the available scientific source. Automated classification supports database organization, but it does not replace critical reading of the complete paper. Source identifiers, evidence labels, and delivery-method fields are retained so readers can verify the record and compare it with related publications. A missing field means the information was unavailable or not reported in the structured source; it should not be treated as a negative finding.
Limitations, safety, and original source
Limitations: Preclinical animal findings may not translate directly to human outcomes.
Safety: The abstract did not provide detailed safety or adverse-event information.
This H2HUBB page is an educational research record, not medical advice. Review the original scientific source for the complete methods and results. Continue exploring the H2HUBB Molecular Hydrogen Research Library to compare evidence types, delivery methods, and related topics.