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Isoflavones / Biological matter / Lipid bilayer / Computational chemistry / Molecular modelling / Genistein / Hydrophobic mismatch / Daidzein / Molecular dynamics / Chemistry / Membrane biology / Biology


Article pubs.acs.org/JPCB Structure and Elasticity of Lipid Membranes with Genistein and Daidzein Bioflavinoids Using X-ray Scattering and MD Simulations Mohit Raghunathan,†,§ Yuriy Zubovski,†,⊥ Richard M. Venable
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Document Date: 2012-04-17 14:13:28


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V1 / Hoover / Collingwood S. A. / Tristram-Nagle S. A. / Needham / Capital IQ / VBF / Venable / ASSOCIATED CONTENT / /

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France / United States / /

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Health/National Institute of General Medical Sciences / Howard Hughes Medical Institute / Blood Institute / Carnegie Mellon University / Laboratory of Computational Biology / Rice University / G1 station / /

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hydrophobic mismatch free energy / fluid lipid bilayer systems / chemical structures / energy / energy-minimizing / hydrophobic free energy penalty / /

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Physics / /

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National Institute of Health / National Science Foundation / Cornell / Physics Department / Department of Physics and Astronomy / Rice University / National Heart / Lung and Blood Institute / Laboratory of Computational Biology / National Heart / Lung and Blood / American Chemical Society / Health/National Institute of General Medical Sciences / Charles E. Kaufman Foundation / Carnegie Mellon University / Howard Hughes Medical Institute / /

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Mohit Raghunathan / Richard W. Pastor / Tobias / Yuriy Zubovski / Kim / Arthur Woll / Physiol / Jianjun Pan / J. M. Annu / Gilman Toombes / Richard M. Venable / ‡ Richard / Daid / Rickard / Charles Supper / Morris / Olaf Andersen / Blair / Stephanie Tristram-Nagle / John F. Nagle / /

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The Journal of Physical Chemistry B / /

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X-ray / crystallization / condensation / simulation / /

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