Functional interaction between plasma phospholipid fatty acids and insulin resistance in leucocyte telomere length maintenance

Author:

Zhao Yi,Wang Binxia,Wang Guoqi,Huang Lixia,Yin Ting,Li Xiaoxia,Liu Xiuying,Wang Qingan,Jing Jinyun,Yang Jianjun,Zhang Yuhong

Abstract

AbstractBackgroundPrevious evidence suggests that plasma phospholipid fatty acids (PPFAs) and HOMA insulin resistance (HOMA-IR) are independently related to leukocyte telomere length (LTL). However, there is limited evidence of regarding the effect of their interaction on relative LTL (RLTL). Therefore, here, we aimed to determine the effect of the interaction between PPFAs and HOMA-IR on RLTL.MethodsWe conducted a cross-sectional study, involving a total of 1246 subjects aged 25–74 years. PPFAs and RLTL were measured, and HOMA-IR was calculated. The effect of the interaction between PPFAs and HOMA-IR on RLTL was assessed by univariate analysis, adjusting for potential confounders.ResultsIn age-adjusted analyses, multivariate linear regression revealed a significant association of the levels of elaidic acid, HOMA-IR, monounsaturated fatty acids (MUFA) and omega-6 (n-6) polyunsaturated fatty acid (PUFA) with RLTL. After adjustment of age and gender, race, smoking, drinking, tea, and exercise, elaidic acid, and omega-3 (n-3) PUFA were negatively associated with RLTL, and HOMA-IR and n-6 PUFA were positively associated with RLTL. These associations were not significantly altered upon further adjustment for anthropometric and biochemical indicators. Meanwhile, the effect of the interaction of elaidic acid and HOMA-IR on RLTL was significant, and remained unchanged even after adjusting for the aforementioned potential confounders. Interestingly, individuals who had the lowest HOMA-IR and the highest elaidic acid levels presented the shortest RLTL.ConclusionsOur findings indicated that shorter RLTL was associated with lower HOMA-IR and higher elaidic acid level. These findings might open a new avenue for exploring the potential role of the interaction between elaidic acid and HOMA-IR in maintaining RLTL.

Funder

National Natural Science Foundation of China

Ningxia medical university scientific research project

Top Discipline of Public Health and Prevent Medicine

Publisher

Springer Science and Business Media LLC

Subject

Biochemistry, medical,Clinical Biochemistry,Endocrinology,Endocrinology, Diabetes and Metabolism

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