Literature DB >> 16569021

Molecular probe location in reverse micelles determined by NMR dipolar interactions.

Debbie C Crans1, Christopher D Rithner, Bharat Baruah, Bridget L Gourley, Nancy E Levinger.   

Abstract

The location and interactions of solutes in microheterogeneous environments, such as reverse micelles, critically influence understanding of many phenomena that utilize probe molecules to characterize properties in chemical, biological, and physical systems. The information gained in such studies depends substantially on the location of the probe used. Often, intuition leads to the assumption that ionic probe molecules reside in the polar water pool of a system. In this work, the location of a charged polar transition metal coordination complex in a reverse micellar system is determined using NMR spectroscopy. Despite the expected Coulomb repulsion between the surfactant headgroups and the negatively charged complex, the complex spends significant time penetrating into the hydrophobic portion of the reverse micellar interface. These results challenge the assumption that ionic probe molecules reside solvated by water in microheterogeneous environments and suggest that probe molecule location be carefully considered before interpreting data from similar systems.

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Year:  2006        PMID: 16569021     DOI: 10.1021/ja0583721

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  14 in total

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3.  Differences in Interactions of Benzoic Acid and Benzoate with Interfaces.

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4.  Antidiabetic vanadium compound and membrane interfaces: interface-facilitated metal complex hydrolysis.

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Journal:  J Biol Inorg Chem       Date:  2011-06-11       Impact factor: 3.358

5.  An ion's perspective on the molecular motions of nanoconfined water: a two-dimensional infrared spectroscopy study.

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6.  Interaction of liposome-encapsulated cisplatin with biomolecules.

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Journal:  J Biol Inorg Chem       Date:  2012-06-07       Impact factor: 3.358

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8.  Anti-diabetic effects of a series of vanadium dipicolinate complexes in rats with streptozotocin-induced diabetes.

Authors:  Gail R Willsky; Lai-Har Chi; Michael Godzala; Paul J Kostyniak; Jason J Smee; Alejandro M Trujillo; Josephine A Alfano; Wenjin Ding; Zihua Hu; Debbie C Crans
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9.  Coordination chemistry may explain pharmacokinetics and clinical response of vanadyl sulfate in type 2 diabetic patients.

Authors:  Gail R Willsky; Katherine Halvorsen; Michael E Godzala; Lai-Har Chi; Mathew J Most; Peter Kaszynski; Debbie C Crans; Allison B Goldfine; Paul J Kostyniak
Journal:  Metallomics       Date:  2013-11       Impact factor: 4.526

10.  Effects of vanadium-containing compounds on membrane lipids and on microdomains used in receptor-mediated signaling.

Authors:  Deborah A Roess; Steven M L Smith; Peter Winter; Jun Zhou; Ping Dou; Bharat Baruah; Alejandro M Trujillo; Nancy E Levinger; Xioda Yang; B George Barisas; Debbie C Crans
Journal:  Chem Biodivers       Date:  2008-08       Impact factor: 2.745

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