Miranda Natasha, Tkach Volodymyr V, Barros Ana Novo, Martins-Bessa Ana, Gaivão Isabel
Animal and Veterinary Research Center (CECAV), Associate Laboratory for Animal and Veterinary Sciences (AL4AnimalS), University of Trás-os-Montes and Alto Douro (UTAD), 5000-801 Vila Real, Portugal.
Centre for the Research and Technology of Agro-Environmental and Biological Sciences (CITAB), University of Trás-os-Montes and Alto Douro (UTAD), 5000-801 Vila Real, Portugal.
Int J Mol Sci. 2025 Sep 14;26(18):8951. doi: 10.3390/ijms26188951.
Sugar and sucralose are frequently used together and separately in human food and beverages, which is the reason why studying their biological action on different organisms is really important. Nevertheless, the effect of highly concentrated sugar diet on male infertility is still under evaluation. The most important is that biological activity of sucralose, a chloroorganic synthetic sweetener, is highly persistent and difficultly altered in the environment, as its influence on the biological activity of other substances has not been completely elucidated yet. For this reason, in this work, sugar and sucralose-sugar mixtures, frequently used in beverages and other food products, influence behavior, longevity, reproductive performance, and genomic integrity is investigated. It has been demonstrated that an increase in sugar concentration promotes biological viability by enhancing prolificacy, lifespan, and locomotor performance. However, this only occurs up to a certain threshold concentration; beyond this, metabolic imbalance occurs. The presence of sucralose in solutions further augments the toxic effect, indicating high genotoxicity of the sweetener at doses over 0.5%, leading to significant DNA alterations and changing the behavior pattern. Therefore, either sugar or sucralose metabolic impact and toxicity is dose-related and their common presence in the solution might lead to the synergetic effect.
糖和三氯蔗糖经常在人类食品和饮料中一起或单独使用,这就是研究它们对不同生物体的生物学作用非常重要的原因。然而,高糖饮食对男性不育的影响仍在评估中。最重要的是,三氯蔗糖这种氯代有机合成甜味剂的生物活性在环境中具有高度持久性且难以改变,因为其对其他物质生物活性的影响尚未完全阐明。因此,在这项研究中,我们调查了饮料和其他食品中常用的糖和三氯蔗糖 - 糖混合物对行为、寿命、生殖性能和基因组完整性的影响。研究表明,糖浓度的增加通过提高繁殖力、寿命和运动性能来促进生物活力。然而,这只在一定阈值浓度内发生;超过这个浓度,就会出现代谢失衡。溶液中三氯蔗糖的存在进一步增强了毒性作用,表明该甜味剂在剂量超过0.5%时具有高遗传毒性,导致显著的DNA改变并改变行为模式。因此,无论是糖还是三氯蔗糖,其代谢影响和毒性都与剂量相关,并且它们在溶液中的共同存在可能会导致协同效应。