Literature DB >> 23590201

Molecular dynamics simulations of the interactions of medicinal plant extracts and drugs with lipid bilayer membranes.

Wojciech Kopeć1, Jelena Telenius, Himanshu Khandelia.   

Abstract

Several small drugs and medicinal plant extracts, such as the Indian spice extract curcumin, have a wide range of useful pharmacological properties that cannot be ascribed to binding to a single protein target alone. The lipid bilayer membrane is thought to mediate the effects of many such molecules directly via perturbation of the plasma membrane structure and dynamics, or indirectly by modulating transmembrane protein conformational equilibria. Furthermore, for bioavailability, drugs must interact with and eventually permeate the lipid bilayer barrier on the surface of cells. Biophysical studies of the interactions of drugs and plant extracts are therefore of interest. Molecular dynamics simulations, which can access time and length scales that are not simultaneously accessible by other experimental methods, are often used to obtain quantitative molecular and thermodynamic descriptions of these interactions, often with complementary biophysical measurements. This review considers recent molecular dynamics simulations of small drug-like molecules with membranes, and provides a biophysical description of possible routes of membrane-mediated pharmacological effects of drugs. The review is not exhaustive, and we focus on molecules containing aromatic ring-like structures to develop our hypotheses. We also show that some drugs and anesthetics may have an effect on the lipid bilayer analogous to that of cholesterol.
© 2013 The Authors Journal compilation © 2013 FEBS.

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Year:  2013        PMID: 23590201     DOI: 10.1111/febs.12286

Source DB:  PubMed          Journal:  FEBS J        ISSN: 1742-464X            Impact factor:   5.542


  23 in total

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Journal:  Chem Rev       Date:  2019-03-12       Impact factor: 60.622

2.  Extension of the Highly Mobile Membrane Mimetic to Transmembrane Systems through Customized in Silico Solvents.

Authors:  Josh V Vermaas; Taras V Pogorelov; Emad Tajkhorshid
Journal:  J Phys Chem B       Date:  2017-03-13       Impact factor: 2.991

3.  A microscopic view of phospholipid insertion into biological membranes.

Authors:  Josh V Vermaas; Emad Tajkhorshid
Journal:  J Phys Chem B       Date:  2013-12-16       Impact factor: 2.991

4.  Reinforcing the membrane-mediated mechanism of action of the anti-tuberculosis candidate drug thioridazine with molecular simulations.

Authors:  Wojciech Kopec; Himanshu Khandelia
Journal:  J Comput Aided Mol Des       Date:  2014-03-01       Impact factor: 3.686

5.  Location, Orientation and Aggregation of Bardoxolone-ME, CDDO-ME, in a Complex Phospholipid Bilayer Membrane.

Authors:  Vicente Galiano; José A Encinar; José Villalaín
Journal:  J Membr Biol       Date:  2020-01-21       Impact factor: 1.843

Review 6.  Interaction of local anesthetics with biomembranes consisting of phospholipids and cholesterol: mechanistic and clinical implications for anesthetic and cardiotoxic effects.

Authors:  Hironori Tsuchiya; Maki Mizogami
Journal:  Anesthesiol Res Pract       Date:  2013-09-23

Review 7.  Curcumin and Resveratrol as Promising Natural Remedies with Nanomedicine Approach for the Effective Treatment of Triple Negative Breast Cancer.

Authors:  Amol Shindikar; Akshita Singh; Malcolm Nobre; Saurabh Kirolikar
Journal:  J Oncol       Date:  2016-05-08       Impact factor: 4.375

8.  Perillyl alcohol: Dynamic interactions with the lipid bilayer and implications for long-term inhalational chemotherapy for gliomas.

Authors:  Clovis Orlando da Fonseca; Himanshu Khandelia; Marcela D'Alincourt Salazar; Axel H Schönthal; Osório C Meireles; Thereza Quirico-Santos
Journal:  Surg Neurol Int       Date:  2016-01-05

9.  Selective effect of cell membrane on synaptic neurotransmission.

Authors:  Pekka A Postila; Ilpo Vattulainen; Tomasz Róg
Journal:  Sci Rep       Date:  2016-01-19       Impact factor: 4.379

10.  Curcumin induces crosstalk between autophagy and apoptosis mediated by calcium release from the endoplasmic reticulum, lysosomal destabilization and mitochondrial events.

Authors:  A Moustapha; P A Pérétout; N E Rainey; F Sureau; M Geze; J-M Petit; E Dewailly; C Slomianny; P X Petit
Journal:  Cell Death Discov       Date:  2015-10-26
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