Literature DB >> 21812485

Molecular dynamics simulation studies of caffeine aggregation in aqueous solution.

Letizia Tavagnacco1, Udo Schnupf, Philip E Mason, Marie-Louise Saboungi, Attilio Cesàro, John W Brady.   

Abstract

Molecular dynamics simulations were carried out on a system of eight independent caffeine molecules in a periodic box of water at 300 K, representing a solution near the solubility limit for caffeine at room temperature, using a newly developed CHARMM-type force field for caffeine in water. Simulations were also conducted for single caffeine molecules in water using two different water models (TIP3P and TIP4P). Water was found to structure in a complex fashion around the planar caffeine molecules, which was not sensitive to the water model used. As expected, extensive aggregation of the caffeine molecules was observed, with the molecules stacking their flat faces against one another like coins, with their methylene groups staggered to avoid steric clashes. A dynamic equilibrum was observed between large n-mers, including stacks with all eight solute molecules, and smaller clusters, with the calculated osmotic coefficient being in acceptable agreement with the experimental value. The insensitivity of the results to water model and the congruence with experimental thermodynamic data suggest that the observed stacking interactions are a realistic representation of the actual association mechanism in aqueous caffeine solutions.

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Year:  2011        PMID: 21812485      PMCID: PMC3189405          DOI: 10.1021/jp2021352

Source DB:  PubMed          Journal:  J Phys Chem B        ISSN: 1520-5207            Impact factor:   2.991


  29 in total

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7.  The enthalpy of self-association of purine derivatives in water.

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  11 in total

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6.  An electrochemical sensor for nanomolar detection of caffeine based on nicotinic acid hydrazide anchored on graphene oxide (NAHGO).

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7.  Computational analysis of the solvation of coffee ingredients in aqueous ionic liquid mixtures.

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8.  An experimentally validated approach to calculate the blood-brain barrier permeability of small molecules.

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9.  Assessing developmental toxicity of caffeine and sweeteners in medaka (Oryzias latipes).

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10.  Anion-cation contrast of small molecule solvation in salt solutions.

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