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When Functionalization Becomes Useful: Ionic Liquids with a 'Sweet' Appended Moiety Demonstrate Drastically Reduced Toxicological Effects

机译:当官能化变得有用:具有“甜”附加部分的离子液体表现出急剧降低的毒理学作用

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The growing number of applications of ionic liquids (ILs) in industry have brought attention to the green credentials of synthesis, as well as their cytotoxicities and ecotoxicities both for their use and accidental leakage into the environment. With the abovementioned properties in mind, we designed a class of ILs with either cations bearing a gluconamide motif and aliphatic side chains or the anion incorporating a gluconic acid (derived from food waste) moiety. An IL with an imidazolium cation with an appended gluconic amide (bearing five hydroxyl groups) moiety was also synthesized for a useful comparison. Different structural features were considered, placing emphasis on the nature and length of the alkyl chain and the nature of the anion. For comparison, two ILs, one with a hydroxyl group and another without any hydroxyl groups, were prepared. Apart from the typical characterization of ILs, such as differential scanning calorimetry, thermogravimetric analysis, conductivity, and viscosity measurements, the main focus was placed on the evaluation of their cytotoxicities and ecotoxicities, performing tests with three cancer cell lines (HeLa, HTC-116, and MCF-7) and fish embryos (zebrafish). Data obtained have shed light on the relationship working between the physicochemical properties and the structural features of the ILs. Interestingly, these ILs are able to inhibit cell growth only at very high concentrations (IC50 approximate to 10(-3) M) and they do not affect the vitality of fish embryos, allowing them to be classified as harmless solvents. To our surprise, the data collected show that derivatization with the "sweet" residue on the imidazolium cation completely removes the wellknown toxicity effects of imidazolium ILs.
机译:IONIC液体(ILS)在工业中越来越多的应用引起了对合成的绿色凭证,以及它们的细胞毒性和生态毒性,用于它们的使用和意外泄漏到环境中。考虑到上述性质,我们设计了一类ILS,其具有含有葡糖酰胺基序和脂族侧链的任一阳离子或包含葡萄糖酸(衍生自食物废物)部分的阴离子。对于有用的比较,还合成了具有所附葡萄糖酰胺(轴承五羟基)部分的咪唑鎓阳离子的IL。考虑了不同的结构特征,强调烷基链的性质和长度和阴离子的性质。为了比较,制备了两种ILS,其中一个具有羟基的羟基,另一个没有任何羟基。除了ILS的典型表征之外,例如差分扫描量热法,热重分析,电导率和粘度测量,主要重点是对其细胞毒性和生态毒性的评估,进行三种癌细胞系(HELA,HTC-116和MCF-7)和鱼胚(斑马鱼)。获得的数据对在物理化学性质和IL的结构特征之间工作的关系。有趣的是,这些ILS能够在非常高浓度下抑制细胞生长(IC50近似为10(-3)m),并且它们不会影响鱼胚的活力,使它们被归类为无害溶剂。令我们惊讶的是,收集的数据表明,衍生化与咪唑鎓阳离子上的“甜味”残留物完全除去咪唑鎓ILS的众所周知的毒性作用。

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