Related Experiment Video
Updated: Jun 2, 2026

Glucose Uptake Measurement and Response to Insulin Stimulation in In Vitro Cultured Human Primary Myotubes
Published on: June 25, 2017
Anti-inflammatory and antifibrotic effects of methyl palmitate
1Department of Pharmacology & Toxicology, Faculty of Pharmacy, Ain Shams University, Cairo, Egypt. ebtehal_dm@yahoo.com
Abstract:
Methyl palmitate (MP) has been shown earlier to inhibit Kupffer cells and rat peritoneal macrophages. To evaluate the potential of MP to inhibit the activation of other macrophages, RAW cells (macrophages of alveolar origin) were treated with varying concentrations of MP (0.25, 0.5, 1mM). Assessment of cytotoxicity using MTT assay revealed that 0.25 and 0.5mM are not toxic to RAW cells. MP was able to inhibit the phagocytic function of RAW cells. Treatment of cells with MP 24hours prior to LPS stimulation significantly decreased nitric oxide release and altered the pattern of cytokines release; there was a significant decrease in TNF-α and a significant increase in IL-10 compared to the controls. However, there is a non-significant change in IL-6 level. Furthermore, phosphorylation of inhibitory kappa B (IκBα) protein was significantly decreased in RAW cells treated with 0.5mM MP after LPS stimulation. Based upon the in-vitro results, it was examined whether MP treatment will be effective in preventing bleomycin-induced lung inflammation and fibrosis in-vivo. Bleomycin given by itself caused destruction of the lung architecture characterized by pulmonary fibrosis with collapse of air alveoli and emphysematous. Bleomycin induced a significant increase in hydroxyproline level and activated NF-κB, p65 expression in the lung. MP co-treatment significantly ameliorated bleomycin effects. These results suggest that MP has a potential of inhibiting macrophages in general. The present study demonstrated for the first time that MP has anti-inflammatory and antifibrotic effect that could be through NF-kB inhibition. Thus MP like molecule could be a promising anti-inflammatory and antifibrotic drug.
Insights
Methyl palmitate (MP) inhibits macrophage activation, reducing inflammatory responses and lung fibrosis in preclinical models. This suggests MP
Area of Science:
- Immunology
- Pharmacology
- Cell Biology
Background:
- Macrophages play a key role in inflammatory and fibrotic diseases.
- Methyl palmitate (MP) has shown inhibitory effects on certain macrophage populations.
- Investigating MP's broader anti-inflammatory potential is warranted.
Purpose of the Study:
- To evaluate the inhibitory effects of Methyl palmitate (MP) on macrophage activation in vitro.
- To assess the therapeutic potential of MP in preventing bleomycin-induced lung inflammation and fibrosis in vivo.
Main Methods:
- RAW macrophages were treated with MP and stimulated with lipopolysaccharide (LPS).
- Cytotoxicity, phagocytic function, nitric oxide, and cytokine release were assessed.
- NF-κB pathway activation (IκBα phosphorylation) was analyzed.
- Bleomycin-induced lung injury model in vivo was used to evaluate MP's protective effects.
Main Results:
- MP (0.25-0.5mM) was not toxic to RAW cells and inhibited their phagocytic activity.
- MP significantly reduced nitric oxide and TNF-α release, while increasing IL-10.
- MP treatment decreased IκBα phosphorylation, indicating NF-κB pathway inhibition.
- In vivo, MP co-treatment ameliorated bleomycin-induced lung architecture destruction, fibrosis, and hydroxyproline levels.
Conclusions:
- Methyl palmitate (MP) demonstrates broad macrophage inhibitory potential.
- MP exhibits significant anti-inflammatory and anti-fibrotic effects, potentially via NF-κB inhibition.
- MP represents a promising therapeutic candidate for inflammatory and fibrotic lung diseases.
