Potential Antioxidant and Anti-Inflammatory Properties of Polyphenolic Compounds from Cirsium japonicum Extract.
Hun-Hwan KimSe Hyo JeongMin Yeong ParkPritam Bhangwan BhosaleAbuyaseer AbusaliyaHyun Wook KimJe-Kyung SeongDong Il KimSang Joon LeeKwang Il ParkGon Sup KimPublished in: International journal of molecular sciences (2024)
Cirsium japonicum is a medicinal plant that has been used due to its beneficial properties. However, extensive information regarding its therapeutic potential is scarce in the scientific literature. The antioxidant and anti-inflammatory potential of polyphenols derived from the Cirsium japonicum extracts (CJE) was systematically analyzed. High-performance liquid chromatography (HPLC) with mass spectrometry (MS) was used to examine the compounds in CJE. A total of six peaks of polyphenol compounds were identified in the extract, and their MS data were also confirmed. These bioactive compounds were subjected to ultrafiltration with LC analysis to assess their potential for targeting cyclooxygenase-2 (COX2) and DPPH. The outcomes showed which primary compounds had the highest affinity for binding both COX2 and DPPH. This suggests that components that showed excellent binding ability to DPPH and COX2 can be considered significant active substances. Additionally, in vitro analysis of CJE was carried out in macrophage cells after inducing inflammation with lipopolysaccharide (LPS). As a result, it downregulated the expression of two critical pro-inflammatory cytokines, COX2 and inducible nitric oxide synthase (iNOS). In addition, we found a solid binding ability through the molecular docking analysis of the selected compounds with inflammatory mediators. In conclusion, we identified polyphenolic compounds in CJE extract and confirmed their potential antioxidant and anti-inflammatory effects. These results may provide primary data for the application of CJE in the food and pharmaceutical industries with further analysis.
Keyphrases
- anti inflammatory
- mass spectrometry
- high performance liquid chromatography
- oxidative stress
- nitric oxide synthase
- molecular docking
- simultaneous determination
- liquid chromatography
- human health
- ms ms
- tandem mass spectrometry
- solid phase extraction
- nitric oxide
- multiple sclerosis
- gas chromatography
- high resolution
- molecular dynamics simulations
- induced apoptosis
- adipose tissue
- healthcare
- binding protein
- electronic health record
- risk assessment
- inflammatory response
- poor prognosis
- dna binding
- cell cycle arrest
- skeletal muscle
- big data
- drinking water
- deep learning
- machine learning