NPFF2 receptor is involved in the modulatory effects of neuropeptide FF for macrophage cell line
Yu-long Sun, Tao Sun, Xiao-yuan Zhang
1School of Basic Medicine, Lanzhou University, 222 Tian Shui South Road, Lanzhou, 730000, PR China. wangrui@lzu.edu.cn.
Abstract:
Neuropeptide FF (NPFF) interacts with specific receptors to regulate diverse biological processes. Its modulatory effect in the immune field, however, has not been fully explored yet. Here, we report that NPFF2 receptors may be functionally expressed in two immune cell models, the primary peritoneal macrophage and RAW 264.7 macrophage. Firstly, the mRNA levels of NPFF2 receptor were up-regulated in macrophages when treated with LPS for 24 to 72 h. Subsequently, our data hinted that NPFF regulates the viability of both kinds of macrophages. After treatment with RF9, a reported antagonist for both NPFF receptors, delayed or inhibited the NPFF-induced macrophages viability augmentation, suggesting the involvement of NPFF2 receptor. Furthermore, down-regulation of nitric oxide (NO) synthases (NOSs) partially significantly inhibited the viability augmentation of macrophages induced by NPFF, implying a nitric oxide synthases- dependent pathway is involved. However, the NOSs are not the only route by which NPFF affects the viability of macrophages. Pharmacological inhibitors of NF-κB signal pathway also blocked the NPFF-induced macrophages growth, suggesting the involvement of the NF-κB signal pathway. The regulation activity of NPFF for macrophages suggests that NPFF could act as a potential hormone in the control of immune system. Collectively, our data provide new evidence about the immune modulatory effect of NPFF, which will be helpful in extending the scope of NPFF functions.
Insights
Neuropeptide FF (NPFF) influences macrophage viability through NPFF2 receptors, involving nitric oxide synthases and NF-κB pathways. This suggests NPFF
Area of Science:
- Immunology
- Neuroendocrinology
Background:
- Neuropeptide FF (NPFF) is known to regulate various biological processes.
- Its role in immune system modulation remains largely unexplored.
Purpose of the Study:
- To investigate the functional expression of NPFF receptors in macrophages.
- To elucidate the mechanisms by which NPFF affects macrophage viability and function.
Main Methods:
- Utilized primary peritoneal macrophages and RAW 264.7 cell lines.
- Assessed NPFF2 receptor mRNA levels after LPS stimulation.
- Investigated NPFF effects on macrophage viability using RF9 antagonist and inhibitors of nitric oxide synthases (NOSs) and NF-κB signaling.
Main Results:
- NPFF2 receptor mRNA was upregulated in LPS-treated macrophages.
- NPFF significantly modulated macrophage viability.
- RF9 treatment inhibited NPFF-induced viability augmentation, confirming NPFF2 receptor involvement.
- Down-regulation of NOSs and inhibition of NF-κB signaling partially blocked NPFF's effect on macrophage viability.
Conclusions:
- NPFF, acting via NPFF2 receptors, modulates macrophage viability through pathways involving nitric oxide synthases and NF-κB.
- These findings suggest NPFF functions as a potential immune-modulating hormone, expanding its known biological roles.
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