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Published on: January 7, 2019
Antibacterial peptides inhibit MC3T3-E1 cells apoptosis induced by TNF-α through p38 MAPK pathway
Rong-Jian Lu1, He-Lin Xing2, Chao-Jun Liu3
1Department of Stomatology, Fifth Medical Center of Chinese PLA General Hospital, Beijing, China.
Background:
Antimicrobial peptides (AMP), as a small molecular polypeptide with a broad antibacterial spectrum and high efficiency, have attracted more and more attention. Few pieces of research on the effect of the antimicrobial peptide on osteoblast under inflammatory conditions have so far been reported. The main aim of this work was to investigate the antiapoptosis effect of the antimicrobial peptide on MC3T3-E1 cells induced by TNF-α and its related mechanism.
Methods:
Rat MC3T3-E1 cells were co-cultured with different concentrations of antibacterial peptide DP7 and TNF-α.MTS assay, cell scratch test, alkaline phosphatase activity, and alizarin red staining assay were used to determine osteoblast viability in this experiment. Annexin V-FITC/PI double staining cells and flow cytometry were used to analyze apoptosis and Western blot assay detection to show mitogen-activated protein kinase (MAPK) protein expression in rat MC3T3-E1 cells. Then, Realtime polymerase chain reaction (PCR) was used to examine the caspase-3 gene expression. Also, ELISA detection was used to clarify the anti-apoptotic effect of the p38 MAPK inhibitor, SB203580, on cells' apoptosis.
Results:
Antimicrobial peptide could promote the proliferation, migration, and osteogenic ability of MC3T3-E1 cells induced by TNF-α, but inhibit cell apoptosis rate (P<0.05), and the effect was concentration-dependent. Western blot results showed after TNF-αtreatment, the expression of p-p38 MAPK in the MC3T3-E1 cells increased after TNF-α and antimicrobial peptide cotreatment, TNF-α induced p-p38 MAPK phosphorylation was inhibited, and the difference was statistically significant (P<0.05). Realtime PCR results showed that the gene expression of caspase-3 mRNA was up-regulated after TNF-α treatment, while their expression was down-regulated after cultured with TNF-α and antimicrobial peptide. Elisa's analysis showed that cell apoptosis increased after TNF-α treatment alone, and cell apoptosis was reduced to the normal levels when combined with antimicrobial peptide, and cell apoptosis induced by TNF-α was partially abolished when combined with SB203580.
Conclusions:
Antimicrobial peptide DP7 could inhibit MC3T3-E1 cells apoptosis induced by TNF-α, and the effect was concentration-dependent. The antiapoptosis activation of the antimicrobial peptide on MC3TE-E1 cells may be related to the inhibition of the p38 MAPK pathway.
Insights
Antimicrobial peptide DP7 protects osteoblasts from TNF-α-induced apoptosis by inhibiting the p38 MAPK pathway. This peptide promotes cell proliferation and osteogenic activity, offering potential therapeutic benefits.
Area of Science:
- Biochemistry
- Cell Biology
- Pharmacology
Background:
- Antimicrobial peptides (AMPs) are potent antibacterial agents with broad-spectrum activity.
- Research on AMPs' effects on osteoblasts under inflammatory conditions is limited.
- Tumor Necrosis Factor-alpha (TNF-α) is a key inflammatory mediator impacting bone cells.
Purpose of the Study:
- To investigate the anti-apoptotic effects of antimicrobial peptide DP7 on MC3T3-E1 osteoblast cells.
- To elucidate the underlying molecular mechanisms, particularly the involvement of the p38 MAPK pathway.
- To assess DP7's impact on osteoblast viability, proliferation, migration, and osteogenic differentiation.
Main Methods:
- MC3T3-E1 cells were treated with DP7 and TNF-α.
- Cell viability was assessed using MTS assays.
- Apoptosis was analyzed via Annexin V-FITC/PI staining and flow cytometry.
- Osteogenic activity was evaluated through alkaline phosphatase and alizarin red staining.
- Western blotting and Real-time PCR were used to examine MAPK and caspase-3 expression.
- The effect of a p38 MAPK inhibitor (SB203580) was assessed using ELISA.
Main Results:
- DP7 demonstrated a concentration-dependent inhibition of TNF-α-induced MC3T3-E1 cell apoptosis.
- DP7 promoted cell proliferation, migration, and osteogenic ability.
- TNF-α treatment upregulated p38 MAPK phosphorylation and caspase-3 expression, which were reversed by DP7.
- Inhibition of p38 MAPK with SB203580 partially abolished TNF-α-induced apoptosis.
Conclusions:
- Antimicrobial peptide DP7 effectively inhibits TNF-α-induced apoptosis in MC3T3-E1 osteoblasts.
- The anti-apoptotic effect is concentration-dependent and linked to the modulation of the p38 MAPK signaling pathway.
- DP7 exhibits potential as a therapeutic agent for inflammatory bone conditions.
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