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High-fat Diet-induced Hypertension is Associated with a Proinflammatory T Cell Profile in Male and Female Dahl Salt-sensitive Rats

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Abstract

Evidence supports a sex difference in the impact of a high-fat diet (HFD) on cardiovascular outcomes, with male experimental animals exhibiting greater increases in blood pressure (BP) than female experimental animals. The immune system has been implicated in HFD-induced increases in BP, and there is a sex difference in T-cell activation in hypertension. The goal of this study was to determine the impact of HFD on BP and aortic and renal T cell profiles in male and female Dahl salt-sensitive (DSS) rats. We hypothesized that male DSS rats would have greater increases in BP and T cell infiltration in response to a HFD compared with female DSS rats. BP was measured by tail-cuff plethysmography, and aortic and renal T cells were assessed by flow cytometric analysis in male and female DSS rats on a normal-fat diet (NFD) or HFD from 12 to 16 wk of age. Four weeks of HFD increased BP in male and female DSS rats to a similar degree. Increases in BP were accompanied by increased percentages of CD4 T cells and T helper (Th)17 cells in both sexes, although male rats had more proinflammatory T cells. Percentages of renal CD3 and CD4 T cells as well as Th17 cells were increased in both sexes by the HFD, although the increase in CD3 T cells was greater in male rats. HFD also decreased the percentage of aortic and renal regulatory T cells in both sexes, although female rats maintained more regulatory T cells than male rats regardless of diet. In conclusion, both male and female DSS rats exhibit BP sensitivity to a HFD; however, the mechanisms mediating HFD-induced increases in BP may be distinct as male rats exhibit greater increases in the percentage of proinflammatory T cells than female rats. NEW & NOTEWORTHY Our study demonstrates that male and female Dahl salt-sensitive rats exhibit similar increases in blood pressure to a high-fat diet and an increase in aortic and renal T cells. These results are in contrast to studies showing that female rats remain normotensive and/or upregulate regulatory T cells in response to hypertensive stimuli compared with male rats. Our data suggest that a 4-wk high-fat diet has sex-specific effects on the T cell profile in Dahl salt-sensitive rats.

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References
1.
Kasal D, Barhoumi T, Li M, Yamamoto N, Zdanovich E, Rehman A . T regulatory lymphocytes prevent aldosterone-induced vascular injury. Hypertension. 2011; 59(2):324-30. DOI: 10.1161/HYPERTENSIONAHA.111.181123. View

2.
Mattson D . Infiltrating immune cells in the kidney in salt-sensitive hypertension and renal injury. Am J Physiol Renal Physiol. 2014; 307(5):F499-508. PMC: 4154114. DOI: 10.1152/ajprenal.00258.2014. View

3.
Sandberg K, Ji H . Sex differences in primary hypertension. Biol Sex Differ. 2012; 3(1):7. PMC: 3331829. DOI: 10.1186/2042-6410-3-7. View

4.
Brinson K, Rafikova O, Sullivan J . Female sex hormones protect against salt-sensitive hypertension but not essential hypertension. Am J Physiol Regul Integr Comp Physiol. 2014; 307(2):R149-57. PMC: 4101615. DOI: 10.1152/ajpregu.00061.2014. View

5.
Sullivan J, Bhatia K, Yamamoto T, Elmarakby A . Angiotensin (1-7) receptor antagonism equalizes angiotensin II-induced hypertension in male and female spontaneously hypertensive rats. Hypertension. 2010; 56(4):658-66. PMC: 3132075. DOI: 10.1161/HYPERTENSIONAHA.110.153668. View