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- (271a) Predition of the Distribution of Neutral Compounds and Ions in Micelles and Biomembranes with Cosmomic
A much more computational efficient alternative (COSMOmic) for the prediction of micellar partition coefficients and the generation of such distribution profiles has been developed as an extension of the quantum chemically based COSMO-RS method, which meanwhile has become a kind of standard for fluid phase thermodynamics in homogeneous liquids. Recent third party comparisons have demonstrated that COSMOmic can produce information of at least the same quality as MD simulation at computational costs which are roughly three orders of magnitude lower, thus enabling such simulations to be included in routine workflows.
Very recently the applicability of COSMOmic to the distribution of ions has been analyzed. It turns out that by addition of a simple zeta-potential the partition coefficients of anions and cations in biomembranes can be nicely quantified. Unfortunately it turns out that the zeta potential cannot be predicted from first principles or MD simulations, and thus needs to be fitted for each system to experimental partition coefficients of a few test ions.