Literature DB >> 26901282

Direct Measurement of the Thermodynamics of Chiral Recognition in Bile Salt Micelles.

Shauna L Anderson1, David Rovnyak1, Timothy G Strein1.   

Abstract

Isothermal titration calorimetry (ITC) is shown to be a sensitive reporter of bile salt micellization and chiral recognition. Detailed ITC characterization of bile micelle formation as well as the chiral recognition capabilities of sodium cholate (NaC), deoxycholate (NaDC), and taurodeoxycholate (NaTDC) micelle systems are reported. The ΔH(demic) of these bile salt micelle systems is directly observable and is strongly temperature-dependent, allowing also for the determination of ΔCp(demic). Using the pseudo-phase separation model, ΔG(demic) and TΔS(demic) were also calculated. Chirally selective guest-host binding of model racemic compounds 1,1'-bi-2-napthol (BN) and 1,1'-binaphthyl-2,2'-diylhydrogenphosphate (BNDHP) to bile salt micelles was then investigated. The S-isomer was shown to bind more tightly to the bile salt micelles in all cases. A model was developed that allows for the quantitative determination of the enthalpic difference in binding affinity that corresponds to chiral selectivity, which is on the order of 1 kJ mol(-1).
© 2016 Wiley Periodicals, Inc.

Entities:  

Keywords:  amphiphiles; analytical; bile salt; chiral resolution; hydrophobic effect; isothermal titration calorimetry; micelle; thermodynamics

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Year:  2016        PMID: 26901282     DOI: 10.1002/chir.22580

Source DB:  PubMed          Journal:  Chirality        ISSN: 0899-0042            Impact factor:   2.437


  1 in total

1.  Oxidation of Sodium Deoxycholate Catalyzed by Gold Nanoparticles and Chiral Recognition Performances of Bile Salt Micelles.

Authors:  Jing Wang; Xu Xu; Hao Chen; Shuai-Shuai Zhang; Yin-Xian Peng
Journal:  Molecules       Date:  2019-12-09       Impact factor: 4.411

  1 in total

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