Dipartimento di Chimica Giacomo Ciamician, Università di Bologna, Via Selmi 2, 40126 Bologna, Italy.
School of Chemistry, University of Glasgow, Glasgow G12 8QQ, UK.
Int J Mol Sci. 2022 Mar 13;23(6):3105. doi: 10.3390/ijms23063105.
Imines or Schiff bases (SB) are formed by the condensation of an aldehyde or a ketone with a primary amine, with the removal of a water molecule. Schiff bases are central molecules in several biological processes for their ability to form and cleave by small variation of the medium. We report here the controlled hydrolysis of four SBs that may be applied in the fragrance industry, as they are profragrances all containing odorant molecules: methyl anthranilate as primary amine, and four aldehydes (cyclamal, helional, hydroxycitronellal and triplal) that are very volatile odorants. The SB stability was assessed over time by HPLC-MS in neutral or acidic conditions, both in solution and when trapped in low molecular weight gels. Our results demonstrate that it is possible to control the hydrolysis of the Schiff bases in the gel environment, thus tuning the quantity of aldehyde released and the persistency of the fragrance.
亚胺或席夫碱(Schiff base,SB)是由醛或酮与伯胺缩合,脱去一个水分子形成的。由于席夫碱能够通过介质的微小变化形成和断裂,因此它们是许多生物过程中的核心分子。我们在这里报告了四种 SB 的可控水解,它们可能应用于香料行业,因为它们都是含有气味分子的拟香料:作为伯胺的邻氨基苯甲酸甲酯,以及四种非常挥发性的醛(环己基甲醛、海洛因、羟基香茅醛和三戊醛)。通过 HPLC-MS 在中性或酸性条件下、在溶液中和在低分子量凝胶中,评估了 SB 在一段时间内的稳定性。我们的结果表明,在凝胶环境中控制席夫碱的水解是可能的,从而可以调节释放的醛的量和香料的持久性。