Dual activation of the bile acid nuclear receptor FXR and G-Protein-Coupled receptor TGR5 protects mice against atherosclerosis

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Abstract

Bile acid signaling is a critical regulator of glucose and energy metabolism, mainly through the nuclear receptor FXR and the G protein-coupled receptor TGR. The purpose of the present study was to investigate whether dual activation of FXR and TGR5 plays a significant role in the prevention of atherosclerosis progression. To evaluate the effects of bile acid signaling in atherogenesis, ApoE-/-mice and LDLR-/-mice were treated with an FXR/TGR5 dual agonist (INT-767). INT-767 treatment drastically reduced serum cholesterol levels. INT-767 treatment significantly reduced atherosclerotic plaque formation in both ApoE-/-and LDLR-/-mice. INT-767 decreased the expression of pro-inflammatory cytokines and chemokines in the aortas of ApoE-/-mice through the inactivation of NF-κB. In addition, J774 macrophages treated with INT-767 had significantly lower levels of active NF-κB, resulting in cytokine production in response to LPS through a PKA dependent mechanism. This study demonstrates that concurrent activation of FXR and TGR5 attenuates atherosclerosis by reducing both circulating lipids and inflammation.

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Miyazaki-Anzai, S., Masuda, M., Levi, M., Keenan, A. L., & Miyazaki, M. (2014). Dual activation of the bile acid nuclear receptor FXR and G-Protein-Coupled receptor TGR5 protects mice against atherosclerosis. PLoS ONE, 9(9). https://doi.org/10.1371/journal.pone.0108270

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