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Neutrons in studies of phospholipid bilayers and bilayer–drug interaction. I. Basic principles and neutron diffraction Cover

Neutrons in studies of phospholipid bilayers and bilayer–drug interaction. I. Basic principles and neutron diffraction

Open Access
|Dec 2014

References

  1. [1] Bacon GE. Neutron Diffraction, 2nd ed. Oxford: Clarendon Press; 1962.
  2. [2] Balgavý P, Gordeliy VI, Syrykh AG. Influence of local anesthetic heptacaine hydrochloride and its derivatives on the structure of lipid membranes from dipalmitoyllecithin. JINR Commun. 1991;14-91-387:1–14.
  3. [3] Belushkin AV. Fundamentals of Studies of the Properties of Condensed Matter using Neutron Scattering (in Russian). Dubna, JINR; 2010.
  4. [4] Belushkin AV, Kozlenko DP, Rogachev AV. Synchrotron and neutron-scattering methods for studies of properties of condensed matter: Competition or complementarity? J Surface Invest. 2011;5: 828-855. 10.1134/S1027451011090047
  5. [5] Cibula J, Gallová J, Uhríková D, Balgavý P. Interaction of surfactants with model and biological membranes. IX. Theoretical model of the biological activity dependence on the hydrocarbon chain length (in Slovak). Čes Slov Farm. 1994;43:84-88
  6. [6] Balgavý P, Devínsky F. Cut-off effects in biological activities of surfactants. Adv Colloid Interface Sci. 1996;66:23-63 10.1016/0001-8686(96)00295-3
  7. [7] European Spallation Source. About ESS. Lund, Sweden: 2014. (http://europeanspallationsource.se/european-spallation-source ). Accessed September 29, 2014.
  8. [8] FaF VFU Brno. Prof. RNDr. Jozef Csöllei, CSc. Brno, Czech Republic: Faculty of Pharmacy, University of Veterinary and Pharmaceutical Sciences in Brno: 2014. (http://faf.vfu.cz/research-and-development/department-of-chemical-drugs/csollei.html). Accessed September 29, 2014.
  9. [9] Feigin LA, Svergun DI. Structure Analysis by Small-Angle X-Ray and Neutron Scattering. New York, NY: Plenum Press; 1987. 10.1007/978-1-4757-6624-0
  10. [10] Florek M. Experimental Nuclear and Subnuclear Physics - Neutron Physics (in Slovak). Bratislava: Comenius University; 1992.
  11. [11] Harroun TA, Katsaras J, Wassall SR. Cholesterol hydroxyl group is found to reside in the center of a polyunsaturated lipid membrane. Biochemistry. 2006;45:1227–1233. 10.1021/bi0520840
  12. [12] Harroun TA, Katsaras J, Wassall SR. Cholesterol is found to reside in the center of a polyunsaturated lipid membrane. Biochemistry. 2008;47:7090–7096. 10.1021/bi800123b
  13. [13] Kondela T, Gallová J, Hauss T, Balgavý P. The effect of 1-alkanols on the structure of DOPC model membrane. A small-angle neutron diffraction study. Poster presented at: 20th Conference of Slovak Physicists; September 2-5, 2013; Bratislava, Slovakia.
  14. [14] Kučerka N, Marquardt D, Harroun TA, et al. Cholesterol in bilayers with PUFA chains: Doping with DMPC or POPC results in sterol reorientation and membrane-domain formation. Biochemistry. 2010a;49:7485–7493. 10.1021/bi100891z
  15. [15] Kučerka N, Nieh MP, Marquardt D, Harroun TA, Wassail SR, Katsaras J. Cholesterol in unusual places. J Phys Conf Ser. 2010b;251:012038. 10.1088/1742-6596/251/1/012038
  16. [16] Meyer KH, Hemmi H. Beiträge zur Theorie der Narkose III. Biochem Z. 1935;277:39-72.
  17. [17] Nagle JF, Tristram-Nagle S. Structure of lipid bilayers. Biochim Biophys Acta. 2000;1469:159–195. 10.1016/S0304-4157(00)00016-2
  18. [18] National Institute of Standards and Technology. Neutron Scattering Lengths and Cross Sections. Gaithersburg, MD: NIST Center for Neutron Research, 2014. (http://www.ncnr.nist.gov/resources/n-lengths/). Accessed September 29, 2014.
  19. [19] Pešák M, Kopecký F, Čižmárik J, Borovanský A.: Study of local anesthetic. Part 70. Some physico-chemical properties of piperidinoethylesters of alkoxyphenylcarbamic acids. Pharmazie. 1980;35:150-152.
  20. [20] Petrenko VI, Klacsová M, A.I. Beskrovnyy, Uhríková D, Balgavý P. Interaction of long-chain n-alcohols with fluid DOPC bilayers: a neutron diffraction study. Gen Physiol Biophys. 2010;29:355-361. 10.4149/gpb_2010_04_35521156998
  21. [21] Pringle MJ, Brown KB, Miller KW. Can the lipid theories of anesthesia account for the cutoff in anesthetic potency in homologous series of alcohols? Mol Pharmacol. 1981;19:49-55.
  22. [22] Pynn R. Neutron Scattering – a Primer. Los Alamos, NM: Los Alamos Science, 1990. (http://fas.org/sgp/othergov/doe/lanl/pubs/00326651.pdf) Accessed September 29, 2014.
  23. [23] Tristram-Nagle S. Preparation of oriented, fully hydrated lipid samples for structure determination using X-ray scattering. Methods Mol Biol. 2007:400;63-75. 10.1007/978-1-59745-519-0_5269761417951727
  24. [24] Végh V, Čižmárik J, Hahnenkamp K. Is there a place for local anesthetics structurally different from classical amid or ester local anesthetics? Curr Opin Anaesthes. 2006;19:509–515. 10.1097/01.aco.0000245276.76916.5c16960483
Language: English
Page range: 1 - 11
Published on: Dec 30, 2014
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year
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© 2014 M. Belička, F. Devínsky, P. Balgavý, published by Comenius University in Bratislava, Faculty of Pharmacy
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