Publications

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Author [ Title(Desc)] Type Year
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B
T. A. Martinek, Mándity, I. M., Hetenyi, A., Fulop, L., Toth, G. K., and Fülöp, F., The beta-peptide domain: From controlled secondary structures to nanostructured assemblies, Journal of Peptide Science, vol. 12, p. 93, 2006.
T. Keszthelyi, Holló, G., Nyitrai, G., Kardos, J., and Héja, L., Bilayer Charge Reversal and Modification of Lipid Organization by Dendrimers as Observed by Sum-Frequency Vibrational Spectroscopy, Langmuir, vol. 31, pp. 7815–7825, 2015.
F. Zsila and Mády, G., Biliverdin is the endogenous ligand of human serum α1-acid glycoprotein, Biochemical and Biophysical Research Communications, vol. 372, no. 3, pp. 503 - 507, 2008.
F. Zsila, Kámán, J., Bogányi, B., and Józsvai, D., Binding of alkaloids into the S1 specificity pocket of α-chymotrypsin: evidence from induced circular dichroism spectra., Org Biomol Chem, vol. 9, no. 11, pp. 4127-37, 2011.
F. Zsila and Gedeon, G., Binding of anti-prion agents to glycosaminoglycans: evidence from electronic absorption and circular dichroism spectroscopy., Biochem Biophys Res Commun, vol. 346, no. 4, pp. 1267-74, 2006.
F. Zsila, Hazai, E., and Sawyer, L., Binding of the pepper alkaloid piperine to bovine β-lactoglobulin: Circular dichroism spectroscopy and molecular modeling study, Journal of Agricultural and Food Chemistry, vol. 53, pp. 10179-10185, 2005.
J. C. Almeida, Wacha, A., Gomes, P. S., Alves, L. C., M. Fernandes, H. Vaz, Salvado, I. M. Miranda, and M. Fernandes, H. R., A biocompatible hybrid material with simultaneous calcium and strontium release capability for bone tissue repair, Materials Science and Engineering: C, vol. 62, pp. 429-438, 2016.
E. E. Lattman, Grant, T. D., and Snell, E. H., Biological Small Angle Scattering, vol. 1. Oxford University Press, 2018.
A. Bóta, Varga, Z., and Goerigk, G., Biological systems as nanoreactors: anomalous small-angle scattering study of the CdS nanoparticle formation in multilamellar vesicles, The Journal of Physical Chemistry B, vol. 111, no. 8, pp. 1911-1915, 2007.
K. Krohn, Flörke, U., John, M., Root, N., Steingröver, K., Aust, H. - J., Draeger, S., Schulz, B., Antus, S., Simonyi, M., and Zsila, F., Biologically active metabolites from fungi. Part 16: New preussomerins J, K and L from an endophytic fungus: Structure elucidation, crystal structure analysis and determination of absolute configuration by CD calculations, Tetrahedron, vol. 57, no. 20, pp. 4343 - 4348, 2001.
I. Cs. Szigyártó, Simándi, L. I., Párkányi, L., Korecz, L., and Schlosser, G., Biomimetic oxidation of 3,5-di-tert-butylcatechol by dioxygen via Mn-enhanced base catalysis, Inorganic Chemistry, vol. 45, no. 18, pp. 7480 - 7487, 2006.
E. Komorowicz, Balázs, N., Tanka-Salamon, A., Varga, Z., Szabó, L., Bóta, A., Longstaff, C., and Kolev, K., Biorelevant polyanions stabilize fibrin against mechanical and proteolytic decomposition: Effects of polymer size and electric charge, Journal of the mechanical behavior of biomedical materials, vol. 102, p. 103459, 2020.
M. M. L. Grage, Keszthelyi, T., Offersgaard, J. F., and Wilbrandt, R., Bithiophene radical cation: resonance Raman spectroscopy and molecular orbital calculations, Chemical Physics Letters, vol. 282, pp. 171–175, 1998.
I. M. Mándity, Weber, E., Martinek, T. A., Toth, G. K., Vass, E., and Fülöp, F., Building beta-peptide foldamers via stereochernical LEGO approach, Journal of Peptide Science, vol. 14, p. 86, 2008.
I. M. Mándity, Fulop, L., Vass, E., Toth, G. K., Martinek, T. A., and Fülöp, F., Building beta-Peptide H10/12 Foldamer Helices with Six-Membered Cyclic Side-Chains: Fine-Tuning of Folding and Self-Assembly, Organic Letters, vol. 12, pp. 5584–5587.
C
Q. Tian, Yan, G., Bai, L., Chen, J., Liu, D., Chen, L., Sun, L., Huang, C., Chen, B., Nagy, G., Wacha, A., and Almásy, L., Calibration of the Suanni small-angle neutron scattering instrument at the China Mianyang Research Reactor, Journal of Applied Crystallography, vol. 51, 2018.
Á. Csiszár, Bóta, A., Novák, C., Klumpp, E., and Subklew, G., Calorimetric study of the effects of 2,4-dichlorophenol on the thermotropic phase behavior of DPPC liposomes, Journal of Thermal Analysis and Calorimetry, vol. 69, no. 1, pp. 53 - 63, 2002.
R. Ludmerczki, Mura, S., Carbonaro, C. Maria, Mándity, I. M., Carraro, M., Senes, N., Garroni, S., Granozzi, G., Calvillo, L., Marras, S., Malfatti, L., and Innocenzi, P., Carbon Dots from Citric Acid and its Intermediates Formed by Thermal Decomposition, Chemistry – A European Journal, vol. 25, pp. 11963–11974, 2019.
P. Varró, Szigyártó, I. Cs., Gergely, A., Kálmán, E., and Világi, I., Carbon nanotubes exert basic excitatory enhancement in rat brain slices, Acta Biologica Hungarica, vol. 64, no. 2, pp. 137 - 151, 2013.
M. Morawski, Nuytens, K., Juhász, T., Zeitschel, U., Seeger, G., Waelkens, E., Regal, L., Schulz, I., Arendt, T., Szeltner, Z., Creemers, J., and Roßner, S., Cellular and ultra structural evidence for cytoskeletal localization of prolyl endopeptidase-like protein in neurons, NeuroscienceNeuroscience, vol. 242, pp. 128-139, 2013.
A. Hetenyi, Mándity, I. M., A. T, M., K. G, T., and Fülöp, F., Chain-length-dependent helical motifs and self-association of beta-peptides with constrained side chains, Journal of the American Chemical Society, vol. 127, p. 547–RF, 2004, BIOCHEMISTRY-US, V43, P9527, DOI 10.1021/bi0494141.
Á. Csiszár, Bóta, A., Novák, C., Klumpp, E., and Subklew, G., Changes in the thermotropic and the structural behaviour of 1,2-dipalmitoyl-sn-glycero-3-phosphatidylcholine/water liposomes effected by 2,4-dichlorphenol, vol. 117. 2001, pp. 145 - 152.
F. Zsila, Chaperone-like activity of the acute-phase component human serum α1-acid glycoprotein: Inhibition of thermal- and chemical-induced aggregation of various proteins, Bioorganic & Medicinal Chemistry Letters, vol. 20, no. 3, pp. 1205 - 1209, 2010.
K. Hill, Pénzes, C. B., Schnöller, D., Horváti, K., Bősze, S., Hudecz, F., Keszthelyi, T., and Kiss, É., Characterisation of the membrane affinity of an isoniazide peptide conjugate by tensiometry, atomic force microscopy and sum-frequency vibrational spectroscopy, using a phospholipid Langmuir monolayer model, Physical Chemistry Chemical Physics, vol. 12, pp. 11498–11506, 2010.

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