AI Article Synopsis

  • The study investigates the combined effects of ursodeoxycholic acid (UA) and jasminoidin (JA) on reducing brain damage in mice with cerebral ischemia, confirming that their combination (JU) is more effective than either drug alone.
  • Researchers analyzed the resulting changes in the brain's gene expression and identified several biological pathways that are activated by the treatment, focusing on inflammation, immune response, apoptosis, and nervous system development.
  • The findings highlight that the collaboration between UA and JA reveals new understanding of treatment mechanisms for cerebral ischemia, paving the way for potential therapeutic advancements.

Article Abstract

Aim: Our previous studies have showed that ursodeoxycholic acid (UA) and jasminoidin (JA) effectively reduce cerebral infarct volume in mice. In this study we explored the pure synergistic mechanism of these compounds in treatment of mouse cerebral ischemia, which was defined as synergistic actions specific for phenotype variations after excluding interference from ineffective compounds.

Methods: Mice with focal cerebral ischemia were treated with UA, JA or a combination JA and UA (JU). Concha margaritifera (CM) was taken as ineffective compound. Cerebral infarct volume of the mice was determined, and the hippocampi were taken for microarray analysis. Particular signaling pathways and biological functions were enriched based on differentially expressed genes, and corresponding networks were constructed through Ingenuity Pathway Analysis.

Results: In phenotype analysis, UA, JA, and JU significantly reduced the ischemic infarct volume with JU being superior to UA or JA alone, while CM was ineffective. As a result, 4 pathways enriched in CM were excluded. Core pathways in the phenotype-positive groups (UA or JA) were involved in neuronal homeostasis and neuropathology. JU-contributing pathways included all UA-contributing and the majority (71.7%) of JA-contributing pathways, and 10 new core pathways whose effects included inflammatory immunity, apoptosis and nervous system development. The functions of JU group included all functions of JA group, the majority (93.1%) of UA-contributing functions, and 3 new core functions, which focused on physiological system development and function.

Conclusion: The pure synergism between UA and JA underlies 10 new core pathways and 3 new core functions, which are involved in inflammation, immune responses, apoptosis and nervous system development.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4594188PMC
http://dx.doi.org/10.1038/aps.2014.168DOI Listing

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