Single-walled carbon nanotubes inhibit TRPC4-mediated muscarinic cation current in mouse ileal myocytes

ORCID
0000-0002-8338-7655
Zugehörigkeit
1 College of Natural and Health Sciences, Zayed University, Abu Dhabi 144534, United Arab Emirates; Lina.Alkury@zu.ac.ae (L.T.A.K.); Dimitrios.Papandreou@zu.ac.ae (D.P.)
Al Kury, Lina T.;
ORCID
0000-0002-4923-484X
Zugehörigkeit
1 College of Natural and Health Sciences, Zayed University, Abu Dhabi 144534, United Arab Emirates; Lina.Alkury@zu.ac.ae (L.T.A.K.); Dimitrios.Papandreou@zu.ac.ae (D.P.)
Papandreou, Dimitrios;
Zugehörigkeit
2 ESC “Institute of Biology and Medicine”, Taras Shevchenko National University of Kyiv, 64 Volodymyrska Str., 01601 Kyiv, Ukraine; gyrmach@gmail.com (V.V.H.); darinka.dr@gmail.com (D.O.D.); gribovamari@gmail.com (M.I.M.); prylut@ukr.net (Y.I.P.)
Hurmach, Vasyl V.;
Zugehörigkeit
2 ESC “Institute of Biology and Medicine”, Taras Shevchenko National University of Kyiv, 64 Volodymyrska Str., 01601 Kyiv, Ukraine; gyrmach@gmail.com (V.V.H.); darinka.dr@gmail.com (D.O.D.); gribovamari@gmail.com (M.I.M.); prylut@ukr.net (Y.I.P.)
Dryn, Dariia O.;
Zugehörigkeit
2 ESC “Institute of Biology and Medicine”, Taras Shevchenko National University of Kyiv, 64 Volodymyrska Str., 01601 Kyiv, Ukraine; gyrmach@gmail.com (V.V.H.); darinka.dr@gmail.com (D.O.D.); gribovamari@gmail.com (M.I.M.); prylut@ukr.net (Y.I.P.)
Melnyk, Mariia I.;
Zugehörigkeit
5 Institute of Molecular Biology and Genetics, National Academy of Sciences of Ukraine, 150 Zabolotnogo Str., 03143 Kyiv, Ukraine; platon1971@gmail.com
Platonov, Maxim O.;
Zugehörigkeit
2 ESC “Institute of Biology and Medicine”, Taras Shevchenko National University of Kyiv, 64 Volodymyrska Str., 01601 Kyiv, Ukraine; gyrmach@gmail.com (V.V.H.); darinka.dr@gmail.com (D.O.D.); gribovamari@gmail.com (M.I.M.); prylut@ukr.net (Y.I.P.)
Prylutskyy, Yuriy I.;
ORCID
0000-0002-9315-4863
Zugehörigkeit
6 Institute of Chemistry and Biotechnology, Technical University of Ilmenau, 25 Weimarer Str., 98693 Ilmenau, Germany; uwe.ritter@tu-ilmenau.de (U.R.); peter.scharff@tu-ilmenau.de (P.S.)
Ritter, Uwe;
Zugehörigkeit
6 Institute of Chemistry and Biotechnology, Technical University of Ilmenau, 25 Weimarer Str., 98693 Ilmenau, Germany; uwe.ritter@tu-ilmenau.de (U.R.); peter.scharff@tu-ilmenau.de (P.S.)
Scharff, Peter;
ORCID
0000-0002-4320-149X
Zugehörigkeit
2 ESC “Institute of Biology and Medicine”, Taras Shevchenko National University of Kyiv, 64 Volodymyrska Str., 01601 Kyiv, Ukraine; gyrmach@gmail.com (V.V.H.); darinka.dr@gmail.com (D.O.D.); gribovamari@gmail.com (M.I.M.); prylut@ukr.net (Y.I.P.)
Zholos, Alexander V.

Single-walled carbon nanotubes (SWCNTs) are characterized by a combination of rather unique physical and chemical properties, which makes them interesting biocompatible nanostructured materials for various applications, including in the biomedical field. SWCNTs are not inert carriers of drug molecules, as they may interact with various biological macromolecules, including ion channels. To investigate the mechanisms of the inhibitory effects of SWCNTs on the muscarinic receptor cation current (mI CAT) , induced by intracellular GTPγs (200 μM), in isolated mouse ileal myocytes, we have used the patch-clamp method in the whole-cell configuration. Here, we use molecular docking/molecular dynamics simulations and direct patch-clamp recordings of whole-cell currents to show that SWCNTs, purified and functionalized by carboxylation in water suspension containing single SWCNTs with a diameter of 0.5–1.5 nm, can inhibit mI CAT , which is mainly carried by TRPC4 cation channels in ileal smooth muscle cells, and is the main regulator of cholinergic excitation–contraction coupling in the small intestinal tract. This inhibition was voltage-independent and associated with a shortening of the mean open time of the channel. These results suggest that SWCNTs cause a direct blockage of the TRPC4 channel and may represent a novel class of TRPC4 modulators.

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