In silico study of therapeutic deep eutectic solvent for tetracaine liquid delivery

被引:0
|
作者
Aguilar, Nuria [1 ]
Moral, Ana Maria [1 ]
Bol, Alfredo [2 ,3 ]
Atilhan, Mert [1 ,4 ]
Aparicio, Santiago [1 ,3 ]
机构
[1] Univ Burgos, Dept Chem, Burgos 09001, Spain
[2] Univ Burgos, Dept Phys, Burgos 09001, Spain
[3] Univ Burgos, Int Res Ctr Crit Raw Mat ICCRAM, Burgos 09001, Spain
[4] Western Michigan Univ, Dept Chem & Paper Engn, Kalamazoo, MI USA
关键词
Eutectic solvents; Therapeutic; Hydrogen bonding; Liquid structuring; Nanoscopic; FORCE-FIELD; DYNAMICS; WATER; PACKAGE; CELLS;
D O I
10.1016/j.molliq.2024.124652
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The development of a drug delivery liquid formulation of ester - based tetracaine local anaesthetic is synthesised in silico via the formation of a therapeutic deep eutectic solvent in combination with citral, a natural monoterpenoid. The properties of the obtained liquid system, studied at the nanoscopic level, are derived from a combination of quantum chemistry and classical molecular dynamics simulations. The intermolecular forces (hydrogen bonding) were analysed and their relationship with liquid phase properties were established. Water effect on the liquid phase properties were also considered in terms of competing for hydrogen bonding sites in the components of the developed fluid. The systems proposed in this work were studied using CIT (HBA) 1:1 TET (HBD) molar ratio at temperatures ranging from 288 K to 318 K and 1 bar. The hydrogen bond network developed between the oxygen atom in citral molecules and the -NH group in tetracaine molecules under those conditions, confirmed via minimal cluster analysis, is maintained during the addition of water up to 1.3 wt% as the water molecules do not disrupt the intermolecular hydrogen bond but develop new interactions (hydrogen bonds) with citral and tetracaine monomers presented in the fluid. The reported results probed the suitability of the considered system as an alternative drug delivery method as well as the possibility of developing deep eutectic-based formulation of anaesthetics using natural compounds due to the formation of effective and strong intermolecular hydrogen bonds.
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页数:13
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