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苏糖醇,一种通过工程合成的新型功能性糖醇,有潜力成为低热量的减糖甜味剂。

Threitol, a Novel Functional Sugar Alcohol Biosynthesized by Engineered , Has the Potential as a Low-Calorie Sugar-Reducing Sweetener.

作者信息

Li Qing, Xu Shuo, Li Tong, Ji Liyun, Cheng Hairong

机构信息

State Key Laboratory of Microbial Metabolism, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Foods. 2025 Jul 20;14(14):2539. doi: 10.3390/foods14142539.

Abstract

The global obesity and metabolic syndrome epidemic have accelerated demand for reduced-sugar food, prompting the food industry to adopt functional sugar alcohols as sucrose substitutes. Threitol is a four-carbon sugar alcohol and an isomer of erythritol. However, there is a scarcity of studies reporting on the edible safety of threitol. This study assessed threitol's toxicological and metabolic properties. Acute oral administration (10 g/kg) caused no mortality or abnormalities in mice. Repeated 28-day exposure revealed no behavioral or histopathological alterations, with negative outcomes in three genotoxicity tests. Metabolic studies in rats demonstrated that the majority of ingested threitol is excreted in the urine within 24 h. Sensory evaluation indicated threitol's sweetness equivalence to sucrose, exceeding erythritol and allulose. Notably, 16S rRNA sequencing revealed gut microbiota modulation in threitol-fed mice, indicating potential intestinal health benefits. These integrated findings establish threitol's preclinical safety and support its development as a novel low-calorie sweetener.

摘要

全球肥胖和代谢综合征的流行加速了对低糖食品的需求,促使食品行业采用功能性糖醇作为蔗糖替代品。苏糖醇是一种四碳糖醇,是赤藓糖醇的异构体。然而,关于苏糖醇食用安全性的研究很少。本研究评估了苏糖醇的毒理学和代谢特性。急性口服给药(10 g/kg)对小鼠未造成死亡或异常。重复28天暴露未发现行为或组织病理学改变,三项遗传毒性试验结果均为阴性。大鼠的代谢研究表明,摄入的大部分苏糖醇在24小时内通过尿液排出。感官评价表明,苏糖醇的甜度与蔗糖相当,超过了赤藓糖醇和阿洛酮糖。值得注意的是,16S rRNA测序显示,喂食苏糖醇的小鼠肠道微生物群发生了变化,表明对肠道健康可能有益。这些综合研究结果证实了苏糖醇的临床前安全性,并支持将其开发为一种新型低热量甜味剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4550/12294709/80e957eec61f/foods-14-02539-g001.jpg

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