Effects of sodium benzoate, a widely used food preservative, on glucose homeostasis and metabolic profiles in humans

苯甲酸钠 葡萄糖稳态 代谢物 平衡 化学 内科学 防腐剂 内分泌学 胰岛素 生物化学 胰岛素抵抗 生物 医学 食品科学
作者
Belinda Lennerz,Scott B. Vafai,Nigel F. Delaney,Clary B. Clish,Amy Deik,Kerry A. Pierce,David S. Ludwig,Vamsi K. Mootha
出处
期刊:Molecular Genetics and Metabolism [Elsevier BV]
卷期号:114 (1): 73-79 被引量:145
标识
DOI:10.1016/j.ymgme.2014.11.010
摘要

Sodium benzoate is a widely used preservative found in many foods and soft drinks. It is metabolized within mitochondria to produce hippurate, which is then cleared by the kidneys. We previously reported that ingestion of sodium benzoate at the generally regarded as safe (GRAS) dose leads to a robust excursion in the plasma hippurate level [1]. Since previous reports demonstrated adverse effects of benzoate and hippurate on glucose homeostasis in cells and in animal models, we hypothesized that benzoate might represent a widespread and underappreciated diabetogenic dietary exposure in humans. Here, we evaluated whether acute exposure to GRAS levels of sodium benzoate alters insulin and glucose homeostasis through a randomized, controlled, cross-over study of 14 overweight subjects. Serial blood samples were collected following an oral glucose challenge, in the presence or absence of sodium benzoate. Outcome measurements included glucose, insulin, glucagon, as well as temporal mass spectrometry-based metabolic profiles. We did not find a statistically significant effect of an acute oral exposure to sodium benzoate on glucose homeostasis. Of the 146 metabolites targeted, four changed significantly in response to benzoate, including the expected rise in benzoate and hippurate. In addition, anthranilic acid, a tryptophan metabolite, exhibited a robust rise, while acetylglycine dropped. Although our study shows that GRAS doses of benzoate do not have an acute, adverse effect on glucose homeostasis, future studies will be necessary to explore the metabolic impact of chronic benzoate exposure.
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