Benedetto Antonio
School of Physics, University College Dublin, Dublin 4, Ireland.
Laboratory for Neutron Scattering, Paul Scherrer Institut, Villigen, Switzerland.
Biophys Rev. 2017 Aug;9(4):309-320. doi: 10.1007/s12551-017-0279-1. Epub 2017 Aug 4.
Room-temperature ionic liquids (RTIL) are a new class of organic salts whose melting temperature falls below the conventional limit of 100 °C. Their low vapor pressure, moreover, has made these ionic compounds the solvents of choice of the so-called green chemistry. For these and other peculiar characteristics, they are increasingly used in industrial applications. However, studies of their interaction with living organisms have highlighted mild to severe health hazards. Since their cytotoxicity shows a positive correlation with their lipophilicity, several chemical-physical studies of their interactions with biomembranes have been carried out in the last few years, aiming to identify the molecular mechanisms behind their toxicity. Cation chain length and anion nature of RTILs have seemed to affect lipophilicity and, in turn, their toxicity. However, the emerging picture raises new questions, points to the need to assess toxicity on a case-by-case basis, but also suggests a potential positive role of RTILs in pharmacology, bio-medicine and bio-nanotechnology. Here, we review this new subject of research, and comment on the future and the potential importance of this emerging field of study.
室温离子液体(RTIL)是一类新型有机盐,其熔点低于100°C的传统界限。此外,它们的低蒸气压使这些离子化合物成为所谓绿色化学的首选溶剂。由于这些以及其他特殊特性,它们在工业应用中越来越多地被使用。然而,对它们与生物体相互作用的研究突出了从轻度到严重的健康危害。由于它们的细胞毒性与其亲脂性呈正相关,在过去几年中已经对它们与生物膜相互作用进行了一些化学物理研究,旨在确定其毒性背后的分子机制。室温离子液体的阳离子链长度和阴离子性质似乎会影响亲脂性,进而影响其毒性。然而,新出现的情况提出了新问题,表明需要逐案评估毒性,但也暗示了室温离子液体在药理学、生物医学和生物纳米技术中的潜在积极作用。在这里,我们综述了这个新的研究课题,并对这个新兴研究领域的未来及其潜在重要性进行了评论。