Copper oxide nanoparticles recruit macrophages and modulate nitric oxide, proinflammatory cytokines and PGE2 production through arginase activation

氧化铜纳米粒子募集巨噬细胞并通过精氨酸酶活化调节一氧化氮、促炎细胞因子和 PGE2 的产生

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作者:Sergio Arancibia, Andrea Barrientos, Javiera Torrejón, Alejandro Escobar, Caroll J Beltrán

Aim

In the present study, we examine the effects of copper oxide nanoparticles (CuNP) on macrophage immune response and the signaling pathways involved. Materials &

Conclusion

Our results demonstrate that CuNP activate arginase and suppress macrophage innate immune response.

Methods

A peritonitis model was used to determine in vivo immune cells recruitment, while primary macrophages were used as an in vitro model for the cellular and molecular analysis.

Results

In vivo, CuNP induce significant macrophages recruitment to the site of injection. In vitro, in LPS-stimulated primary macrophages, the co-treatment with CuNP inhibited the production of NO in a dose-dependent manner. The mechanism underlying NO and proinflammatory cytokines inhibition was associated with an increased arginase activity. Macrophage stimulation with CuNP did not provoke any cytokine secretion; however, arginase inhibition promoted TNFα and MIP-1β production. In addition, CuNP induced the expression of COX-2 and the production of PGE2 through arginase activation.

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