2022•Current Topics in Nutraceutical ResearchRequires access

Skullcapflavone II Alleviates Lipopolysaccharide-Induced Apoptosis and Inflammation in WI-38 Cells

Donglian Wang, Guoyong Hu, Lidong Zhao, Pengcheng Xing, Minjie Zhou, Chao Han

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Abstract

The role of skullcapflavone II in pneumonia was investigated using lipopolysaccharide treated human lung fibroblasts WI-38 cells as a model. Lipopolysaccharide treatment led to decreased cell viability, increased cell apoptosis and inflammation. Exposure of these lipopolysaccharide-treated cells to skullcapflavone II resulted in amelioration of cytotoxic effects of the lipopolysaccharide. The reduced IκBα expression and enhanced p-IκBα and p-p65 in WI-38 cells caused by the lipopolysaccharide treatment were reversed by skullcapflavone II. In conclusion, skullcapflavone II exerts antiapoptotic and anti-inflammatory effects on lipopolysaccharide-induced WI-38 through inhibition of NF-κB pathway.

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What this paper is about

The role of skullcapflavone II in pneumonia was investigated using lipopolysaccharide treated human lung fibroblasts WI-38 cells as a model. Lipopolysaccharide treatment led to decreased cell viability, increased cell apoptosis and inflammation. Exposure of these lipopolysaccharide-treated cells to skullcapflavone II resulted in amelioration of cytotoxic effects of the lipopolysaccharide. The reduced IκBα expression and enhanced p-IκBα and p-p65 in WI-38 cells caused by the lipopolysaccharide treatment were reversed by skullcapflavone II. In conclusion, skullcapflavone II exerts antiapoptotic and anti-inflammatory effects on lipopolysaccharide-induced WI-38 through inhibition of NF-κB pathway.

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Available abstract

The role of skullcapflavone II in pneumonia was investigated using lipopolysaccharide treated human lung fibroblasts WI-38 cells as a model. Lipopolysaccharide treatment led to decreased cell viability, increased cell apoptosis and inflammation. Exposure of these lipopolysaccharide-treated cells to skullcapflavone II resulted in amelioration of cytotoxic effects of the lipopolysaccharide. The reduced IκBα expression and enhanced p-IκBα and p-p65 in WI-38 cells caused by the lipopolysaccharide treatment were reversed by skullcapflavone II. In conclusion, skullcapflavone II exerts antiapoptotic and anti-inflammatory effects on lipopolysaccharide-induced WI-38 through inhibition of NF-κB pathway.

Key concepts: Lipopolysaccharide, Apoptosis, Inflammation, Cytotoxic T cell, Chemistry, Viability assay, Cell, Pharmacology

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Skullcapflavone II Alleviates Lipopolysaccharide-Induced Apoptosis and Inflammation in WI-38 Cells — Research Paper | ScholarLens