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Researcher Publications

Zoltan Szekely, PhD

Selected Publications

  1. Batta, G., Kövér, K. E., Szekely, Z., Sztaricskai, F. (1992) Glycopeptide Binding Site Spied through Transferred Heteronuclear NOE:[1-13C]Ac-D-Ala-D-Ala Bonded to Vancomycin and Ristocetin A. Journal of the American Chemical Society, 114: 2758-2759.
  2. Keay, S. K., Szekely, Z., Conrads, T., Veenstra, T., Barchi, J. J., Zhang, C.O., Koch, K., Michejda, C. (2004) An antiproliferative factor from interstitial cystitis patients is a novel frizzled 8 protein-related sialoglycopeptide. Proceedings of The National Academy of Sciences, 101: 11803-11808. (PMCID: PMC51105)
  3. J. Gao, P. Chen, Y. Singh, X. Zhang, Z. Szekely, S. Stein, Patrick J. Sinko (2012) Novel Monodisperse PEGtide Dendrons: Design, Fabrication and Evaluation of Mannose Receptor-Mediated Macrophage Targeting, Bioconjugate Chemistry, 24(8): 1332-44. (PMID: 23808323)
  4. Szekely Z., Perczel A., Penke B., Molnár J. (1993) A new method for the interpretation of dynamics trajectories in the conformational analysis of HIV receptor mutants, Journal of Molecular Structure (Theochem), 286: 165-182.
  5. Szekely Z., (1995) A new approach for an HIV docking-inhibitor drug designed on the basis of the dual recognition/binding hypothesis between the CD4 receptor and the envelope glycoprotein of the HIV, Journal of Molecular Structure (Theochem), 334: 93-100.
  6. Szekely Z., Kónya Z., Becskei A., Goldring W.P.D., Perczel A., Penke B., Molnár J., Michejda C.J., Aszalós A., Csizmadia I.G. (1996) Suggested binding mechanism of the HIV-gp120 glycoproteine to its CD4 receptor, Journal of Molecular Structure (Theochem), 367: 159-186.
  7. Szekely Z., Torday L., Michejda C. J., Aszalós A., (1998). Binding between the CD4 receptor and polysulfonated azo-dyes. An exploratory theoretical study on action-mechanism, Journal of Molecular Structure (Theochem), 423: 153-159.
  8. Fang D.C, Fábián P., Szekely, Z., Fu X. Y., Tang T.-H., Csizmadia I. G. (1998). Structure and stability of ammonium-sulphated and guanidinium-sulfate complex Journal of Molecular Structure (Theochem), 430: 161-170.
  9. Szekely Z., Zakhariev S., Guarnaccia C., Antcheva N., Pongor S., (1999). A highly effective method for synthesis of Nw-substituted arginines as building blocks for Boc/Fmoc peptide chemistry, Tetrahedron Letters, 40: 4439-4442.
  10. Berg, M.A., Chasse, G. A., Deretey, E., Fuzery, A. K., Fung, B.M., Fung, D.Y.K., Henry-Ryad, H., Lin, A.C., Mak, M.L., Mantas, A., Patel, M., Repyakh, I.V., Staikova, M., Salpietro, S. J., Tang, T-H., Vank, J.C., Perczel, A., Csonka, G. I., Farkas, O., Torday, L., Szekely, Z., Csizmadia, I. G. (2000). Prospects in computational molecular medicine, Journal of Molecular Structure (Theochem), 500: 5-58.
  11. Svarovsky, S. A., Szekely, Z., Barchi Jr, J. J.. (2005). Synthesis of gold nanoparticles bearing the Thomsen-Friedenreich disaccharide: a new multivalent presentation of an important tumor antigen. Tetrahedron: Asymmetry, 16: 587-598. 

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