Suppr超能文献

三氯蔗糖和纽甜对电子烟中金属沉淀安全性的影响。

The impact of sucralose and neotame on the safety of metal precipitation in electronic cigarettes.

作者信息

Yan Xinyang, Chen Zheng, Rong Xianfang, Chen Zhichao, Wu Guanlin, Dong Zeyi, Fu Yao, Hai Tao

机构信息

Research and Development Center, IMiracle (Shenzhen) Innovation Technology Co., Ltd., Shenzhen, China.

出版信息

Front Physiol. 2024 Aug 21;15:1437042. doi: 10.3389/fphys.2024.1437042. eCollection 2024.

Abstract

This study investigated the impact of sweeteners on the release of heavy metals during the heating and atomization processes in electronic cigarettes. Based on a PG/VG base e-liquid with the addition of 2% and 5% neotame or sucralose, we quantitatively analyzed the impact of sweetener content on the levels of heavy metals such as Ni, Cr, and Fe in the e-liquid and aerosol after heating and atomization. Additionally, the heated e-liquid samples were used to culture SH-SY-5Y and Beas-2B cells, and their cytotoxic effects were assessed using the CCK-8 assay. The results indicated that the e-liquid with 5% sucralose had the highest average levels of heavy metals after heating and atomization, particularly nickel (13.36 ± 2.50 mg/kg in the e-liquid and 12,109 ± 3,229 ng/200 puffs in the aerosol), whereas the e-liquid with neotame had significantly lower average heavy metal content in comparison. Additionally, it was measured that the chloride ion concentration in the e-liquid with 5% sucralose reached 191 mg/kg after heating at 200°C for 1 h, indicating that heating sucralose generated chloride ions, Which might corrode metal parts components leading to heavy metal release. Cytotoxicity tests revealed that the base e-liquid without sweeteners exhibited the highest average cell viability after heating, at 64.80% ± 2.84% in SH-SY-5Y cells and 63.24% ± 0.86% in Beas-2B cells. Conversely, the e-liquid variant with 5% sucralose showed a significant reduction in average cell viability, reducing it to 50.74% ± 0.88% in SH-SY-5Y cells and 53.03% ± 0.76% in Beas-2B cells, highlighting its more pronounced cytotoxic effects compared to other tested e-liquids. In conclusion, sucralose in e-liquids should be limited preferably less than 2%, or replaced with neotame, a safer alternative, to minimize health risks.

摘要

本研究调查了甜味剂对电子烟加热和雾化过程中重金属释放的影响。基于添加了2%和5%纽甜或三氯蔗糖的丙二醇/植物甘油基电子烟液,我们定量分析了甜味剂含量对加热和雾化后电子烟液和气溶胶中镍、铬和铁等重金属含量的影响。此外,将加热后的电子烟液样品用于培养SH-SY-5Y细胞和Beas-2B细胞,并使用CCK-8法评估其细胞毒性作用。结果表明,添加5%三氯蔗糖的电子烟液在加热和雾化后重金属平均含量最高,尤其是镍(电子烟液中为13.36±2.50毫克/千克,气溶胶中为12,109±3,229纳克/200口),而添加纽甜的电子烟液平均重金属含量则显著较低。此外,测量发现,添加5%三氯蔗糖的电子烟液在200°C加热1小时后氯离子浓度达到191毫克/千克,这表明加热三氯蔗糖会产生氯离子,可能会腐蚀金属部件导致重金属释放。细胞毒性测试显示,未添加甜味剂的基础电子烟液在加热后平均细胞活力最高,在SH-SY-5Y细胞中为64.80%±2.84%,在Beas-2B细胞中为63.24%±0.86%。相反,添加5%三氯蔗糖的电子烟液变体平均细胞活力显著降低,在SH-SY-5Y细胞中降至50.74%±0.88%,在Beas-2B细胞中降至53.03%±0.76%,突出了其与其他测试电子烟液相比更明显的细胞毒性作用。总之,电子烟液中的三氯蔗糖应限制在最好低于2%,或用更安全的替代品纽甜替代,以将健康风险降至最低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b11f/11371770/4b2b598cb949/fphys-15-1437042-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验