Research Article
BibTex RIS Cite

Anti-genotoxic Effects of Schiff bases and their Mn(III) Complexes Containing L-Aspartic acid and L-Phenylalanine

Year 2018, Volume: 31 Issue: 2, 408 - 414, 01.06.2018
https://izlik.org/JA55BM43CC

Abstract



The purpose of the research
was to evaluate the genotoxic and anti-genotoxic properties of Schiff bases and their Mn (III) complexes containing
L-
aspartic acid, and L-phenylalanine. The
anti-genotoxic properties of four compounds in human lymphocytes cells were
investigated by sister chromatid exchanges (SCEs) test system against aflatoxin
B1 (AFB1).
The results showed that compounds
have strong anti-genotoxic properties.



 

References

  • [1] Willison, E.O.C., Larissa, B. R., Antônio, P. N., Ricardo, A. M., Arthur, A. V.,“Extended validation of a senstive and robust method for simultaneous quantification of aflatoxins B1, B2, G1 and G2 in Brazil nuts by HPLC-FLD”, Journal of Food Composition and Analysis, 60: 90-96 (2017).
  • [2] Joo, M., Baek, S.H., Cheon, S.A., Chun, H.S., Choi, S.W., Park, T. J., “Development of aflatoxin B1 aptasensor based on wide-range fluorescence detection using graphene oxide quencher”, Colloids and Surfaces B: Biointerfaces, 154: 27–32 (2017).
  • [3] Yao, M., Wang, L., Fang, C., “The chemiluminescence immunoassay for aflatoxin B1 based on functionalized magnetic nanoparticles with two strategies of antigen probe immobilization”, Luminescence, 32: 661-665 (2017).
  • [4] Anar, M., Hasanoğlu Özkan, E., Öğütçü, H., Ağar, G., Şakıyan, I., Sarı, N., “Useful agents against aflatoxin B1–antibacterial azomethine and Mn(III) complexes involving L-Threonine, L-Serine, and L-Tyrosine”, Artificial Cells, Nanomedicine, and Biotechnology: An International Journal, 44: 853-858 (2016).
  • [5] Şakıyan, I., Anar, M., Öğütçü, H., Ağar, G., Sarı, N., “Schiff bases attached L-glutamine and L-asparagine: First investigation on antimutagenic and antimicrobial analyses”, Artificial Cells, Nanomedicine, and Biotechnology: An International Journal, 42: 199-204 (2014).
  • [6] Sakiyan, I., “Synthesis and characterization of four new manganese(III) complexes and amino acid (L-aspartic acid, L-asparagine, L-glutamic acid, L-glutamine) Schiff bases”, Transition Metal Chemistry, 32: 131–135 (2007).
  • [7] Sakiyan, I., Gunduz, N., Gunduz, T., “Synthesis and characterization of manganese (III) complexes of Schiff bases derived from amino acids and 2-hydroxy-1-naphthaldehyde”, Synth React Inorg Met-Org Chem, 31: 1175–1187 (2001).
  • [8] Ceker S., Agar G., Alpsoy L., Nardemir G., Kizil H. E. Antagonistic effects of Satureja hortensis essential oil against AFB1 on human lymphocytes in vitro. Methods, 48, 65-71, (2014).
  • [9] Sakıyan, I., Ozcan, Y., Ide, S.,”[N-(2-Hidroksi-1-Naftaliden)Histidin] Schiff bazının sentezi ve kristal yapı analizi”, C. B. U . J. Sci., 2, 99 (2006).
  • [10] Nakamoto, K., “Infrared and Raman Spectra of Inorganic and Coordination Compounds”, Illinois, Chicago, 99-105 (1962).
  • [11] Roy, M. K., Kuwabara, Y., Hara, K., Watanabe, Y., Tamai, Y., “Antimutagenic effect of amino acids on the mutagenicity of N-methyl-N ’-nitro-N-nitrosoguanidine (MNNG)”, Biosci Biotech Biochem, 66: 1400-1402 (2002).
  • [12] Tavares, D.C., Cecchi, A.O., Antunes, L. M., Takahash, C.S., “Protective effects of the amino acid glutamine and of ascorbic acid against chromosomal damage induced by doxorubicin in mammalian cells”, Teratog Carcinog Mutagen, 18: 153-161 (1998).
  • [13] Handique, A. K., Aprem, H., “Antimutagenic activity of tryptophan and alanine”, Curr Sci., 72: 578-580 (1997).

Year 2018, Volume: 31 Issue: 2, 408 - 414, 01.06.2018
https://izlik.org/JA55BM43CC

Abstract

References

  • [1] Willison, E.O.C., Larissa, B. R., Antônio, P. N., Ricardo, A. M., Arthur, A. V.,“Extended validation of a senstive and robust method for simultaneous quantification of aflatoxins B1, B2, G1 and G2 in Brazil nuts by HPLC-FLD”, Journal of Food Composition and Analysis, 60: 90-96 (2017).
  • [2] Joo, M., Baek, S.H., Cheon, S.A., Chun, H.S., Choi, S.W., Park, T. J., “Development of aflatoxin B1 aptasensor based on wide-range fluorescence detection using graphene oxide quencher”, Colloids and Surfaces B: Biointerfaces, 154: 27–32 (2017).
  • [3] Yao, M., Wang, L., Fang, C., “The chemiluminescence immunoassay for aflatoxin B1 based on functionalized magnetic nanoparticles with two strategies of antigen probe immobilization”, Luminescence, 32: 661-665 (2017).
  • [4] Anar, M., Hasanoğlu Özkan, E., Öğütçü, H., Ağar, G., Şakıyan, I., Sarı, N., “Useful agents against aflatoxin B1–antibacterial azomethine and Mn(III) complexes involving L-Threonine, L-Serine, and L-Tyrosine”, Artificial Cells, Nanomedicine, and Biotechnology: An International Journal, 44: 853-858 (2016).
  • [5] Şakıyan, I., Anar, M., Öğütçü, H., Ağar, G., Sarı, N., “Schiff bases attached L-glutamine and L-asparagine: First investigation on antimutagenic and antimicrobial analyses”, Artificial Cells, Nanomedicine, and Biotechnology: An International Journal, 42: 199-204 (2014).
  • [6] Sakiyan, I., “Synthesis and characterization of four new manganese(III) complexes and amino acid (L-aspartic acid, L-asparagine, L-glutamic acid, L-glutamine) Schiff bases”, Transition Metal Chemistry, 32: 131–135 (2007).
  • [7] Sakiyan, I., Gunduz, N., Gunduz, T., “Synthesis and characterization of manganese (III) complexes of Schiff bases derived from amino acids and 2-hydroxy-1-naphthaldehyde”, Synth React Inorg Met-Org Chem, 31: 1175–1187 (2001).
  • [8] Ceker S., Agar G., Alpsoy L., Nardemir G., Kizil H. E. Antagonistic effects of Satureja hortensis essential oil against AFB1 on human lymphocytes in vitro. Methods, 48, 65-71, (2014).
  • [9] Sakıyan, I., Ozcan, Y., Ide, S.,”[N-(2-Hidroksi-1-Naftaliden)Histidin] Schiff bazının sentezi ve kristal yapı analizi”, C. B. U . J. Sci., 2, 99 (2006).
  • [10] Nakamoto, K., “Infrared and Raman Spectra of Inorganic and Coordination Compounds”, Illinois, Chicago, 99-105 (1962).
  • [11] Roy, M. K., Kuwabara, Y., Hara, K., Watanabe, Y., Tamai, Y., “Antimutagenic effect of amino acids on the mutagenicity of N-methyl-N ’-nitro-N-nitrosoguanidine (MNNG)”, Biosci Biotech Biochem, 66: 1400-1402 (2002).
  • [12] Tavares, D.C., Cecchi, A.O., Antunes, L. M., Takahash, C.S., “Protective effects of the amino acid glutamine and of ascorbic acid against chromosomal damage induced by doxorubicin in mammalian cells”, Teratog Carcinog Mutagen, 18: 153-161 (1998).
  • [13] Handique, A. K., Aprem, H., “Antimutagenic activity of tryptophan and alanine”, Curr Sci., 72: 578-580 (1997).
There are 13 citations in total.

Details

Journal Section Research Article
Authors

Elvan Hasanoğlu Özkan

Hamit Emre Kızıl This is me

İffet Şakıyan This is me

Dilek Nartop

Nurşen Sarı

Güleray Ağar

Publication Date June 1, 2018
IZ https://izlik.org/JA55BM43CC
Published in Issue Year 2018 Volume: 31 Issue: 2

Cite

APA Hasanoğlu Özkan, E., Kızıl, H. E., Şakıyan, İ., Nartop, D., Sarı, N., & Ağar, G. (2018). Anti-genotoxic Effects of Schiff bases and their Mn(III) Complexes Containing L-Aspartic acid and L-Phenylalanine. Gazi University Journal of Science, 31(2), 408-414. https://izlik.org/JA55BM43CC
AMA 1.Hasanoğlu Özkan E, Kızıl HE, Şakıyan İ, Nartop D, Sarı N, Ağar G. Anti-genotoxic Effects of Schiff bases and their Mn(III) Complexes Containing L-Aspartic acid and L-Phenylalanine. Gazi University Journal of Science. 2018;31(2):408-414. https://izlik.org/JA55BM43CC
Chicago Hasanoğlu Özkan, Elvan, Hamit Emre Kızıl, İffet Şakıyan, Dilek Nartop, Nurşen Sarı, and Güleray Ağar. 2018. “Anti-Genotoxic Effects of Schiff Bases and Their Mn(III) Complexes Containing L-Aspartic Acid and L-Phenylalanine”. Gazi University Journal of Science 31 (2): 408-14. https://izlik.org/JA55BM43CC.
EndNote Hasanoğlu Özkan E, Kızıl HE, Şakıyan İ, Nartop D, Sarı N, Ağar G (June 1, 2018) Anti-genotoxic Effects of Schiff bases and their Mn(III) Complexes Containing L-Aspartic acid and L-Phenylalanine. Gazi University Journal of Science 31 2 408–414.
IEEE [1]E. Hasanoğlu Özkan, H. E. Kızıl, İ. Şakıyan, D. Nartop, N. Sarı, and G. Ağar, “Anti-genotoxic Effects of Schiff bases and their Mn(III) Complexes Containing L-Aspartic acid and L-Phenylalanine”, Gazi University Journal of Science, vol. 31, no. 2, pp. 408–414, June 2018, [Online]. Available: https://izlik.org/JA55BM43CC
ISNAD Hasanoğlu Özkan, Elvan - Kızıl, Hamit Emre - Şakıyan, İffet - Nartop, Dilek - Sarı, Nurşen - Ağar, Güleray. “Anti-Genotoxic Effects of Schiff Bases and Their Mn(III) Complexes Containing L-Aspartic Acid and L-Phenylalanine”. Gazi University Journal of Science 31/2 (June 1, 2018): 408-414. https://izlik.org/JA55BM43CC.
JAMA 1.Hasanoğlu Özkan E, Kızıl HE, Şakıyan İ, Nartop D, Sarı N, Ağar G. Anti-genotoxic Effects of Schiff bases and their Mn(III) Complexes Containing L-Aspartic acid and L-Phenylalanine. Gazi University Journal of Science. 2018;31:408–414.
MLA Hasanoğlu Özkan, Elvan, et al. “Anti-Genotoxic Effects of Schiff Bases and Their Mn(III) Complexes Containing L-Aspartic Acid and L-Phenylalanine”. Gazi University Journal of Science, vol. 31, no. 2, June 2018, pp. 408-14, https://izlik.org/JA55BM43CC.
Vancouver 1.Elvan Hasanoğlu Özkan, Hamit Emre Kızıl, İffet Şakıyan, Dilek Nartop, Nurşen Sarı, Güleray Ağar. Anti-genotoxic Effects of Schiff bases and their Mn(III) Complexes Containing L-Aspartic acid and L-Phenylalanine. Gazi University Journal of Science [Internet]. 2018 Jun. 1;31(2):408-14. Available from: https://izlik.org/JA55BM43CC