AI Article Synopsis

  • Liver damage, significantly caused by alcohol (over 35% of acute cases), necessitates the search for effective treatment drugs.
  • The study focuses on isolating and purifying active peptides that can aid in liver protection, specifically identifying the most effective component, A1-2, with a purity of 93.45%.
  • Metabolomics analysis showed that the treatment with CMAPs altered specific metabolites, offering insights for future liver-related research.

Article Abstract

Liver damage seriously affects human health. Over 35% of cases of acute liver damage are caused by alcohol damage. Thus, finding drugs that can inhibit and effectively treat this disease is necessary. This article mainly focuses on the effect of the metabolome physical activity of active peptides in active peptide (CMAP) and improving liver protection. DEAE Sepharose FF ion-exchange column chromatography was used in separating and purifying crude peptides from Two components, A1 and A2, were obtained, and the most active A1 was selected. Sephadex G-100 gel column chromatography was used in A1 separation and purification. Three components, Al-1, Al-2, and Al-3, were obtained. Through antioxidant activity in vitro as an index of inspection, the relatively active component A1-2 was removed. Reverse-phase high-performance liquid chromatography showed that the purity of component A1-2 was 93.45%. The extracted CMAPs acted on alcoholic liver injury cells. Metabolomics studies revealed that the up-regulated metabolites were ribothymidine and xanthine; the down-regulated metabolites were hydroxyphenyllactic acid, creatinine, stearoylcarnitine, and inosine. This study provides an effective theoretical support for subsequent research.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8951368PMC
http://dx.doi.org/10.3390/molecules27061790DOI Listing

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