4.5 Article

Interaction of statins with phospholipid bilayers studied by solid-state NMR spectroscopy

Journal

BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES
Volume 1861, Issue 3, Pages 584-593

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.bbamem.2018.12.013

Keywords

Nuclear Overhauser enhancement spectroscopy; Intermolecular cross-relaxation; Statins; H-1 NMR; Phospholipid membranes

Funding

  1. Deutsche Forschungsgemeinschaft (DFG, German research foundation) [SCHE 1755/4-1]
  2. Russian Science Foundation [17-75-10124]
  3. Russian Science Foundation [17-75-10124] Funding Source: Russian Science Foundation

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Statins are drugs that specifically inhibit the enzyme HMG-CoA reductase and thereby reduce the concentration of low-density lipoprotein cholesterol, which represents a well-established risk factor for the development of atherosclerosis. The results of several clinical trials have shown that there are important intermolecular differences responsible for the broader pharmacologic actions of statins, even beyond HMG-CoA reductase inhibition. According to one hypothesis, the biological effects exerted by these compounds depend on their localization in the cellular membrane. The aim of the current work was to study the interactions of different statins with phospholipid membranes and to investigate their influence on the membrane structure and dynamics using various solid-state NMR techniques. Using H-1 NOESY MAS NMR, it was shown that atorvastatin, cerivastatin, fluvastatin, rosuvastatin, and some percentage of pravastatin intercalate the lipid-water interface of POPC membranes to different degrees. Based on cross-relaxation rates, the different average distribution of the individual statins in the bilayer was determined quantitatively. Investigation of the influence of the investigated statins on membrane structure revealed that lovastatin had the least effect on lipid packing and chain order, pravastatin significantly lowered lipid chain order, while the other statins slightly decreased lipid chain order parameters mostly in the middle segments of the phospholipid chains.

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