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Comparative study of the AT1 receptor prodrug antagonist candesartan cilexetil with other sartans on the interactions with membrane bilayers
Authors:Charalambos Fotakis  Grigorios Megariotis  Dionysios Christodouleas  Eftichia Kritsi  Panagiotis Zoumpoulakis  Dimitrios Ntountaniotis  Maria Zervou  Constantinos Potamitis  Aden Hodzic  Georg Pabst  Michael Rappolt  Gregor Mali  Johanna Baldus  Clemens Glaubitz  Manthos G. Papadopoulos  Antreas Afantitis  Georgia Melagraki  Thomas Mavromoustakos
Affiliation:1. Chemistry Department, National and Kapodistrian University of Athens, Panepistimioupolis Zographou 15771, Greece;2. Institute of Biology, Medicinal Chemistry and Biotechnology, National Hellenic Research Foundation, Vas. Constantinou 48, Athens 11635, Greece;3. Austrian Academy of Sciences, Institute of Biophysics and Nanosystems Research (IBN), Schmiedlstr. 6, 8042 Graz, Austria;4. Research Center Pharmaceutical Engineering GmbH, 8010 Graz, Austria;5. Laboratory for Inorganic Chemistry and Technology, National Institute of Chemistry, Hajdrihova 19, SI-1001 Ljubljana, Slovenia;6. EN-FIST Centre of Excellence, Dunajska 156, SI-1000 Ljubljana, Slovenia;7. Institute of Biophysical Chemistry Goethe University Frankfurt, Max von Laue Str. 9, 60438 Frankfurt, Germany;8. Department of ChemoInformatics, NovaMechanics Ltd, John Kennedy Ave 62-64, Nicosia 1046, Cyprus
Abstract:Drug–membrane interactions of the candesartan cilexetil (TCV-116) have been studied on molecular basis by applying various complementary biophysical techniques namely differential scanning calorimetry (DSC), Raman spectroscopy, small and wide angle X-ray scattering (SAXS and WAXS), solution 1H and 13C nuclear magnetic resonance (NMR) and solid state 13C and 31P (NMR) spectroscopies. In addition, 31P cross polarization (CP) NMR broadline fitting methodology in combination with ab initio computations has been applied. Finally molecular dynamics (MD) was applied to find the low energy conformation and position of candesartan cilexetil in the bilayers. Thus, the experimental results complemented with in silico MD results provided information on the localization, orientation, and dynamic properties of TCV-116 in the lipidic environment. The effects of this prodrug have been compared with other AT1 receptor antagonists hitherto studied. The prodrug TCV-116 as other sartans has been found to be accommodated in the polar/apolar interface of the bilayer. In particular, it anchors in the mesophase region of the lipid bilayers with the tetrazole group oriented toward the polar headgroup spanning from water interface toward the mesophase and upper segment of the hydrophobic region. In spite of their localization identity, their thermal and dynamic effects are distinct pointing out that each sartan has its own fingerprint of action in the membrane bilayer, which is determined by the parameters derived from the above mentioned biophysical techniques.
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