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Published on: September 15, 2017
Dihydrokaempferol attenuates LPS-induced inflammation and apoptosis in WI-38 cells
Qiao Wang1, Liwen Zhang2, Ping Pang2
1Department of Pediatrics, the Second Affiliated Hospital of Guizhou University of Traditional Chinese Medicine, Guiyang, Guizhou Province, China; qwang7265@163.com.
Insights
Dihydrokaempferol (DHK) may help treat infantile pneumonia by reducing inflammation and cell death. This study shows DHK alleviates inflammation and apoptosis in lung cells, offering potential therapeutic benefits.
Area of Science:
- Biochemistry
- Cell Biology
- Pediatric Medicine
Background:
- Pneumonia is a leading cause of mortality in children under 5.
- Dihydrokaempferol (DHK) is linked to various diseases, but its role in infantile pneumonia is unknown.
Purpose of the Study:
- To investigate the role of DHK in the progression of infantile pneumonia.
Main Methods:
- WI-38 human fibroblast cells were treated with lipopolysaccharide (LPS).
- Cell viability, apoptosis, and inflammatory markers (IL-1β, IL-6, TNF-α) were measured.
- Protein levels of SIRT1, Bax, cleaved-caspase 3, p-p65, and p-IκBα were analyzed.
Main Results:
- DHK modulated cell viability and counteracted LPS-induced inflammation and ROS production.
- DHK reduced LPS-induced apoptosis and modulated apoptosis-associated indexes.
- DHK reversed LPS-induced downregulation of SIRT1 and activation of the NF-κB pathway (p-p65, p-IκBα).
Conclusions:
- DHK alleviates LPS-induced inflammation and injury in WI-38 cells via the SIRT1/NF-κB pathway.
- DHK shows potential implications for the prevention and treatment of infantile pneumonia.
Background:
Globally, pneumonia has been associated as a primary cause of mortality in children aged less than 5 years. Dihydrokaempferol (DHK) has been proposed for being correlated with the process of various diseases. Nevertheless, whether DHK has a role in the progression of infantile pneumonia remains unclear. This study aimed at exploring whether DHK was involved in the progression of infantile pneumonia.
Methods:
Human fibroblast cells WI-38 were treated with lipopolysaccharide (LPS). The viability of WI-38 cells was measured via Cell counting kit-8. Reverse transcription-quantitative polymerase chain reaction was used to evaluate the levels of interleukin (IL)-1β, IL-6, and tumor necrosis factor-α (TNF-α). Western blot analysis revealed the protein levels of IL-1β, IL-6, TNF-α, Bax, and cleaved-caspase 3. Flow cytometry was applied for exploring the apoptosis of WI-38 cells. The concentrations of IL-1β, IL-6, and TNF-α were assessed via enzyme-linked-immunosorbent serologic assay.
Results:
DHK modulated the viability of WI-38 cells in infantile pneumonia. Furthermore, we identified that DHK treatment inversely changed LPS induction-mediated elevation on the levels of inflammation biomarkers. Besides, DHK counteracted LPS-induced production of reactive oxygen species (ROS) in WI-38 cells. DHK also decreased LPS-induced elevation of WI-38 cells apoptosis and mediated the levels of apoptosis-associated indexes. Moreover, modulating sirtuin-1 (SIRT1) protein level was lowered by the induction of LPS, and was reversed by DHK treatment. In addition, DHK counteracted LPS induction-mediated elevation of p-p65 and phosphorylated inhibitor of nuclear factor kappa-B kinase subunit alpha (p-IκBα) protein levels.
Conclusion:
DHK alleviated LPS-induced WI-38 cells inflammation injury in infantile pneumonia through SIRT1/NF-κB pathway. The results shed light on the implications of DHK on the prevention and treatment of infantile pneumonia.
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