Ectopic fat accumulation and distant organ-specific insulin resistance in Japanese people with nonalcoholic fatty liver disease.

Kato, Ken-ichiro; Takamura, Toshinari; Takeshita, Yumie; Ryu, Yasuji; Misu, Hirofumi; Ota, Tsuguhito; Tokuyama, Kumpei; Nagasaka, Shoichiro et al. · PLoS One · 2014

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Abstract

OBJECTIVE: The aim of this study was to examine the association between ectopic fat and organ-specific insulin resistance (IR) in insulin-target organs in patients with nonalcoholic fatty liver disease (NAFLD). METHODS: Organ-specific IR in the liver (hepatic glucose production (HGP) × fasting plasma insulin (FPI) and suppression of HGP by insulin [%HGP]), skeletal muscle (insulin-stimulated glucose disposal [Rd]), and adipose tissue (suppression of FFA by insulin [%FFA]) was measured in 69 patients with NAFLD using a euglycemic hyperinsulinemic clamp with tracer infusion ([6,6-2H2]glucose). Liver fat, intramyocellular lipid (IMCL), and body composition were measured by liver biopsy, proton magnetic resonance spectroscopy, and bioelectrical impedance analysis, respectively. RESULTS: HGP × FPI was significantly correlated with Rd (r =  -0.57, P<0.001), %HGP with %FFA (r = 0.38, P<0.01), and Rd with %FFA (r = 0.27, P<0.05). Liver steatosis score was negatively associated with Rd (r =  -0.47, P<0.001) as well as with HGP × FPI (r = 0.43, P<0.001). Similarly, intrahepatic lipid was negatively associated with Rd (r =  -0.32, P<0.05). IMCL was not associated with Rd (r =  -0.16, P = 0.26). Fat mass and its percentage were associated with HGP × FPI (r = 0.50, P<0.001; r = 0.48, P<0.001, respectively) and Rd (r =  -0.59, P<0.001; r =  -0.52, P<0.001, respectively), but not with %FFA (r =  -0.21, P = 0.10; r =  -0.001, P = 0.99, respectively). CONCLUSION: Unexpectedly, fat accumulation in the skeletal muscle and adipose tissue was not associated with organ-specific IR. Instead, liver fat was associated not only with hepatic IR but also with skeletal muscle IR, suggesting a central role of fatty liver in systemic IR and that a network exists between liver and skeletal muscle.

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