Effect of Holoptelea integrifolia (Roxb.) Planch. n -Hexane Extract and Its Bioactive Compounds on Wound Healing and Anti-Inflammatory Activity.
Kanokwan SomwongPattawika LertpatipanpongWutigri NimlamoolAussara PanyaYingmanee TragoolpuaRujipas YongsawasWandee GritsanapanHataichanok PandithSeung-Joon BaekPublished in: Molecules (Basel, Switzerland) (2022)
The stem bark of Holoptelea integrifolia (Roxb.) Planch. has been applied for the treatment of human cutaneous diseases as well as canine demodicosis in several countries. However, no detailed mechanistic studies have been reported to support their use. In this study, thin-layer chromatography and gas chromatography were used to screen phytochemicals from the fresh stem bark extract of H. integrifolia . We found the two major bioactive compounds, friedelin and lupeol, and their activity on wound healing was further investigated in keratinocytes. Both bioactive compounds significantly reduced wound area and increased keratinocyte migration by increasing matrix metalloproteinases-9 production. Subsequently, we found that the mRNA gene expressions of cadherin 1 and desmoglobin 1 significantly decreased, whereas the gene expression involved in keratinocyte proliferation and homeostasis (keratin-17) increased in compound-treated human immortalized keratinocytes cells. The expression of inflammatory genes (cyclooxygenase-2 and inducible nitric oxide synthase) and pro-inflammatory cytokine genes (tumor necrosis factor-alpha and interleukin-6) was reduced by treatment with n -hexane extract of H. integrifolia and its bioactive compounds. Our results revealed that H. integrifolia extract and its bioactive compounds, friedelin and lupeol, exhibit wound-healing activity with anti-inflammatory properties, mediated by regulating the gene expression involved in skin re-epithelialization.
Keyphrases
- wound healing
- gene expression
- anti inflammatory
- nitric oxide synthase
- oxidative stress
- endothelial cells
- mass spectrometry
- genome wide
- gas chromatography
- dna methylation
- nitric oxide
- induced apoptosis
- genome wide identification
- rheumatoid arthritis
- high speed
- bioinformatics analysis
- high resolution mass spectrometry
- cell cycle arrest
- transcription factor
- binding protein
- gas chromatography mass spectrometry
- copy number
- endoplasmic reticulum stress
- soft tissue
- simultaneous determination