Nowacka Aleksandra, Olejniczak Adriana, Stachowiak Witold, Niemczak Michał
Faculty of Chemical Technology, Poznan University of Technology, 60-965 Poznan, Poland.
Plants (Basel). 2023 Feb 17;12(4):914. doi: 10.3390/plants12040914.
Lately, ionic forms (namely, quaternary ammonium salts, QASs) of nicotinamide, widely known as vitamin B, are gaining popularity in the sectors developing novel pharmaceuticals and agrochemicals. However, the direct influence of these unique QASs on the development of various terrestrial plants, as well as other organisms, remains unknown. Therefore, three compounds comprising short, medium, and long alkyl chains in -alkylnicotinamide were selected for phytotoxicity analyses, which were conducted on representative dicotyledonous (white mustard) and monocotyledonous (sorghum) plants. The study allowed the determination of the impact of compounds on the germination capacity as well as on the development of roots and stems of the tested plants. Interestingly, independently of the length of the alkyl chain or plant species, all QASs were established as non-phytotoxic. In addition, QSAR simulations, performed using the EPI Suite™ program pack, allowed the determination of the products' potential toxicity toward fish, green algae, and daphnids along with the susceptibility to biodegradation. The obtained nicotinamide derivative with the shortest chain (butyl) can be considered practically non-toxic according to GHS criteria, whereas salts with medium (decyl) and longest (hexadecyl) substituent were included in the 'acute II' toxicity class. These findings were supported by the results of the toxicity tests performed on the model aquatic plant . It should be stressed that all synthesized salts exhibit not only a lack of potential for bioaccumulation but also lower toxicity than their fully synthetic analogs.
最近,作为维生素B广为人知的烟酰胺的离子形式(即季铵盐,QASs)在新型药物和农用化学品开发领域越来越受欢迎。然而,这些独特的QASs对各种陆生植物以及其他生物体发育的直接影响仍然未知。因此,选择了三种在烷基烟酰胺中含有短、中、长烷基链的化合物进行植物毒性分析,该分析在代表性双子叶植物(白芥)和单子叶植物(高粱)上进行。该研究确定了这些化合物对受试植物发芽能力以及根和茎发育的影响。有趣的是,无论烷基链长度或植物种类如何,所有QASs均被确定为无植物毒性。此外,使用EPI Suite™程序包进行的QSAR模拟能够确定产品对鱼类、绿藻和水蚤的潜在毒性以及生物降解敏感性。根据全球化学品统一分类和标签制度(GHS)标准,所获得的链最短(丁基)的烟酰胺衍生物实际上可被视为无毒,而具有中等(癸基)和最长(十六烷基)取代基的盐被归入“急性II”毒性类别。对模式水生植物进行的毒性测试结果支持了这些发现。应该强调的是,所有合成盐不仅没有生物累积的可能性,而且毒性低于其全合成类似物。