K. Balci
Istanbul University
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Featured researches published by K. Balci.
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 2011
Sevim Akyuz; Aysen E. Ozel; K. Balci; Tanil Akyuz; A. Coker; E.D. Arisan; N. Palavan-Unsal; A. Ozalpan
Raman micro-spectroscopic analysis of cultured HCT116 colon cancer cells in the presence of roscovitine, [seliciclib, 2-(1-ethyl-2-hydroxy-ethylamino)-6-benzylamino-9-isopropylpurine], a promising drug candidate in cancer therapy, has been performed for the first time. The aim of this study was to investigate modulations in colon cancer cells induced by roscovitine. Raman spectra of the cultured HCT116 colon cancer cells treated with roscovitine at different concentrations (0, 5, 10, 25 and 50 μM) were recorded in the range 400-1850 cm(-1). It was shown that the second derivative profile of the experimental spectrum gives valuable information about the wavenumbers and band widths of the vibrational modes of cell components, and it eliminates the appearance of false peaks arising from incorrect baseline corrections. In samples containing roscovitine, significant spectral changes were observed in the intensities of characteristic protein and DNA bands, which indicate roscovitine-induced apoptosis. Roscovitine-induced apoptosis was also assessed by flow cytometry analysis, and analysis of propidium iodide staining. We observed some modifications in amide I and III bands, which arise from alterations in the secondary structure of cell proteins caused by the presence of roscovitine.
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 2015
Y. Akkaya; K. Balci; Y. Goren; Sevim Akyuz; M.C. Stricker; D.D. Stover; G. Ritzhaupt; W.B. Collier
In this study based on vibrational spectroscopic measurements and Density Functional Theory (DFT), we aimed for a reliable interpretation of the IR and Raman spectra recorded for anserine in the solid phase and water (H2O) and heavy water (D2O) solutions. Initial DFT calculations at the B3LYP/6-31G(d) searched possible conformers of the anserine zwitterion using a systematic conformational search. The corresponding equilibrium geometrical parameters and vibrational spectral data were determined for each of the stable conformers (in water) by the geometry optimization and hessian calculations performed at the same level of theory using the polarized continuum model (PCM). The same calculations were repeated to determine the most energetically preferred dimer structure for the molecule and the associated geometry, force field and vibrational spectral data. The harmonic force constants obtained from these calculations were scaled by the Scaled Quantum Mechanical Force Field (SQM) method and then used in the calculation of the refined wavenumbers, potential energy distributions, IR and Raman intensities. These refined theoretical data, which confirm the zwitterion structure for anserine in the solid phase or aqueous solvents, revealed the remarkable effects of intermolecular hydrogen bonding on the structural properties and observed IR and Raman spectra of this molecule.
Vibrational Spectroscopy | 2008
K. Balci; Sevim Akyuz
Journal of Molecular Structure | 2005
K. Balci; Sevim Akyuz
Vibrational Spectroscopy | 2010
K. Balci; Y. Akkaya; Sevim Akyuz
Vibrational Spectroscopy | 2012
K. Balci; G. Yapar; Y. Akkaya; Sevim Akyuz; Andreas Koch; Erich Kleinpeter
Journal of Raman Spectroscopy | 2011
K. Balci; Y. Akkaya; Sevim Akyuz; N. Palavan-Unsal
Vibrational Spectroscopy | 2014
K. Balci
Journal of Molecular Structure | 2011
Sevim Akyuz; Aysen E. Ozel; K. Balci; Tanil Akyuz; A. Coker; E.D. Arisan; N. Palavan-Unsal; A. Ozalpan
Journal of Cultural Heritage | 2017
Tanil Akyuz; Sevim Akyuz; K. Balci; Ahmet Gulec