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The Novel Peptide AEDPPE Alleviates Trophoblast Cell Dysfunction Associated With Preeclampsia by Regulating the NF-κB
Yixiao Wang1, Yan Cao1, Xiaohong Ji1
1Women's Hospital of Nanjing Medical University, Nanjing Maternity and Child Health Care Hospital, Nanjing, China.
Insights
A novel peptide, AEDPPE, promotes trophoblast function and reduces inflammation, offering a potential new treatment for preeclampsia (PE). This peptide may target the NF-κB pathway, improving outcomes in PE models.
Area of Science:
- Reproductive biology
- Molecular medicine
- Peptide therapeutics
Background:
- Preeclampsia (PE) poses significant risks to maternal and fetal health with no effective treatments.
- The therapeutic potential of peptides in diseases is recognized, but their role in PE is unclear.
Purpose of the Study:
- To investigate the function of a novel peptide, AEDPPE, in preeclampsia.
- To explore the therapeutic potential of AEDPPE in a preeclampsia model.
Main Methods:
- Synthesized AEDPPE and assessed its effects on trophoblast cell function (migration, invasion) in vitro.
- Analyzed cytokine expression and signaling pathways (NF-κB) involved.
- Evaluated AEDPPE efficacy in a lipopolysaccharide (LPS)-induced preeclampsia-like rat model.
Main Results:
- AEDPPE promoted trophoblast cell migration and invasion while decreasing inflammatory cytokines (IL-1β, IL-6, IL-8).
- AEDPPE reversed TNF-α-induced increases in sFlt-1/PlGF ratio and protected against cell injury.
- AEDPPE treatment improved symptoms and fetal outcomes in a rat model of PE.
Conclusions:
- AEDPPE enhances trophoblast function and reduces inflammation, potentially via the NF-κB pathway.
- AEDPPE demonstrates therapeutic potential for preeclampsia treatment.
Abstract:
Background: Preeclampsia (PE) is a serious risk to the health of pregnant women and fetuses during pregnancy, and there is no effective treatment for this condition. Although many reports have confirmed the therapeutic effects of peptides in diseases, the role of peptides in PE remains poorly understood. Methods: A differentially expressed peptide in PE (AEDPPE) is derived from heat-shock protein beta-1 (HSPB1), amino acids 100 to 109 (DVNHFAPDEL), which we identified in a previous study. We synthesized AEDPPE and investigated its effect on HTR-8/SVneo cell function using a Cell Counting Kit-8, flow cytometric assay, and Transwell and wound-healing assays. Quantitative reverse transcription-PCR and ELISA were used to determine cytokine expression. Pull-down assay, mass spectrometry, Western blot analysis, and immunofluorescence were used to explore the potential targets and signaling pathways regulated by AEDPPE. Finally, we assessed the effect of AEDPPE in the lipopolysaccharide (LPS)-induced PE-like rat model. Results: AEDPPE significantly promoted the migration and invasion of HTR-8/SVneo cells, and it decreased the expression of interleukins 1 beta (IL-1β), interleukin 6 (IL-6), and interleukin 8 (IL-8). These functions performed by AEDPPE remained evident after injury to HTR-8/SVneo cells with tumor necrosis factor-alpha (TNF-α), and AEDPPE reversed the elevated sFlt-1/PlGF ratio induced by TNF-α. AEDPPE may exert these biological effects by binding to heat-shock protein 90β (HSP 90β) and, thus, affect the NF-κB signaling pathway. In an LPS-induced PE-like rat model, AEDPPE significantly improved PE symptoms and fetal rat outcomes. Conclusion: Our study showed that AEDPPE enhanced trophoblast migration and invasion and reduced inflammatory cytokine expression, and we hypothesized that these actions involved the NF-κB signaling pathway. The use of AEDPPE may thus develop into a novel modality in the treatment of PE.
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