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POTENTIAL ANTIMICROBIAL AGENTS BASED ON CHLORHEXIDINE COMPLEXES WITH ZINC AND COPPER(II)

Student Manuela Rossemary Apetroaei

First published: 2013-06-20https://doi.org/10.5593/sgem2013/be5.v1/s20.101View metrics

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Title
POTENTIAL ANTIMICROBIAL AGENTS BASED ON CHLORHEXIDINE COMPLEXES WITH ZINC AND COPPER(II)
Authors
Student Manuela Rossemary Apetroaei
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 13th SGEM GeoConference on ECOLOGY, ECONOMICS, EDUCATION AND LEGISLATION
Publisher
Stef92 Technology
Year
2013
Pages
765 - 772 pp
ISSN
1314-2704
ISBN
Not available yet
Language
en
Publication type
Conference Paper
References60
  1. Cury Jaime Aparecido & colab., Effect of Saccharin on Antibacterial Activity of Chlorhexidine Gel, Branz Dent J., 11 (1), pp. 29-34, 2000;

  2. Wernert G.T., Winkler D.A., Holan G., Nicoletti G., Synthesis, biological activity and QSAR studies of antimicrobial agents containing biguanide isosteres, Aust. J. Chem., 57, pp. 77-85, 2004;

  3. Rafique S., Idrees M., Nasim A., Akbar H., Athar A., Transition metal complexes as potential therapeutic agents, Biotechnol. Mol. Biol. Rev., vol. 5(2), pp. 38-45, 2010;

  4. Sekhon B.S., Inorganics/bioinorganics: Biological, medicinal and pharmaceutical uses, J. Pharm. Educ. Res., vol. 2, Issue 1, pp. 1-20, 2011

  5. Kudiyirickal M.C., Ivančaková R., Acta Med. 51, 3 2008

  6. Jeansonne M.J., White R.R., J. Endod., 20, 276, 1994

  7. D. Sweeney, M.L. Raymer, T.D. Lockwood, Biochem. Pharmacol. 66, 663 (2003)

  8. G. McDonnell, A.D. Russell, Clin. Microbiol. Rev. 12, 147 (1999)

  9. M.C. Kudiyirickal, R. Ivančaková, Acta Med. 51, 3 (2008)

  10. D.G. Bates, J.M. Navia, Arch. Oral Biol. 24, 799 (1979)

  11. K. Skjoerland, P. Gjermo, G. Rolla, Scand. J. Dent. Res. 86, 103 (1978)

  12. A. Waerhaug, P. Gjermo, G. Rolla, J. Johanssen, J. Clin. Periodont. 11, 176 (1984)

  13. J. E. Moermann, H.R. Muehlemann, J. Dent. Res. 2, 135 (1983)

  14. S.M. Waler, G. Rolla, Acta Odontol. Scand. 38, 213 (1980)

  15. Kuyyakanond T., and L.B. Quesnel, 1992, The mecanism of action of clorhexidine. FEMS Microbiol. Lett. 100:211-216;

  16. Cookson B. D. & colab. Chlohexidine resistance in Staphylococcus aureus or just an elevated MIC An in vitro and in vivo assessment. Antimicrob. Agents Chemother. 35: 1997 - 2002;

  17. www.rxmed.com/monographs, Clorhexidine Acetate Topical Antibacterial, Pharmaceutical Information-Bactigras;

  18. Negreanu-Pîrjol T., Negreanu-Pîrjol B., Călinescu M., Dumitru F., Sîrbu R., Stoicescu R., Rima G., Guran C., Cu(II) and Zn(II) complex compounds with biguanides aromatic derivatives. Synthesis, characterization, biological activity, Scientific Study & Research - Chemistry & Chemical Engineering, Biotechnology, Food industry, 12 (2), pp. 127 – 140, 2011;

  19. Călinescu M., Negreanu-Pîrjol T., Georgescu R., Cǎlinescu O., Synthesis and characterization of new copper(II) complex compounds with chlorhexidine. Part I, Cent. Eur. J. Chem., vol. 8, Issue 3, pp. 543-549, 2010;

  20. Călinescu M., Negreanu-Pîrjol T., Calinescu O., Georgescu R., Spectral and Biological Characterization of Some Copper(II) Complex Compounds with Chlorhexidine, Revista de Chimie, vol. 63, No. 7, pp. 682 – 687 , 2012

  21. C.Gh. Macarovici, Quantitative Inorganic Chemical Analysis (Ed. Acad. RSR, Bucharest,

  22. P. Ray, Chem. Rev. 61, pp. 313, 1961

  23. S. Singh, R. Malhotra, K.S. Dhindsa, Proc. Nat. Acad. Sci. India 68(A), pp. 217, 1998

  24. P.V. Babykutty et al., J. Inorg. Nucl. Chem. 36, pp. 3685, 1974

  25. R.H. Skabo, P.W. Smith, Aust. J. Chem. 22, pp. 659, 1969

  26. P.V. Bharatam, D.S. Patel, P. Iqbal, J. Med. Chem. 48, pp. 7615, 2005

  27. K. Nakamoto, Infrared Spectra of Inorganic and Coordination Compounds, Ed. J. Wiley and Sons, Inc. New York, 1986

  28. M. Zhu, L. Lu, P. Yang, X. Jin, Acta Cryst. E 58, pp. 217, 2002

  29. M. Zhu, L. Lu, P. Yang, X. Jin, Acta Cryst. E 58, pp. 272, 2002

  30. [P. Bindu, M.R.P. Kurup and T.R. Satyakeerthy, Polyhedron, 18, pp. 321, 1999

  31. Cury Jaime Aparecido & colab., Effect of Saccharin on Antibacterial Activity of Chlorhexidine Gel, Branz Dent J., 11 (1), pp. 29-34, 2000;

  32. Wernert G.T., Winkler D.A., Holan G., Nicoletti G., Synthesis, biological activity and QSAR studies of antimicrobial agents containing biguanide isosteres, Aust. J. Chem., 57, pp. 77-85, 2004;

  33. Rafique S., Idrees M., Nasim A., Akbar H., Athar A., Transition metal complexes as potential therapeutic agents, Biotechnol. Mol. Biol. Rev., vol. 5(2), pp. 38-45, 2010;

  34. Sekhon B.S., Inorganics/bioinorganics: Biological, medicinal and pharmaceutical uses, J. Pharm. Educ. Res., vol. 2, Issue 1, pp. 1-20, 2011

  35. Kudiyirickal M.C., Ivančaková R., Acta Med. 51, 3 2008

  36. Jeansonne M.J., White R.R., J. Endod., 20, 276, 1994

  37. D. Sweeney, M.L. Raymer, T.D. Lockwood, Biochem. Pharmacol. 66, 663 (2003)

  38. G. McDonnell, A.D. Russell, Clin. Microbiol. Rev. 12, 147 (1999)

  39. M.C. Kudiyirickal, R. Ivančaková, Acta Med. 51, 3 (2008)

  40. D.G. Bates, J.M. Navia, Arch. Oral Biol. 24, 799 (1979)

  41. K. Skjoerland, P. Gjermo, G. Rolla, Scand. J. Dent. Res. 86, 103 (1978)

  42. A. Waerhaug, P. Gjermo, G. Rolla, J. Johanssen, J. Clin. Periodont. 11, 176 (1984)

  43. J. E. Moermann, H.R. Muehlemann, J. Dent. Res. 2, 135 (1983)

  44. S.M. Waler, G. Rolla, Acta Odontol. Scand. 38, 213 (1980)

  45. Kuyyakanond T., and L.B. Quesnel, 1992, The mecanism of action of clorhexidine. FEMS Microbiol. Lett. 100:211-216;

  46. Cookson B. D. & colab. Chlohexidine resistance in Staphylococcus aureus or just an elevated MIC An in vitro and in vivo assessment. Antimicrob. Agents Chemother. 35: 1997 - 2002;

  47. www.rxmed.com/monographs, Clorhexidine Acetate Topical Antibacterial, Pharmaceutical Information-Bactigras;

  48. Negreanu-Pîrjol T., Negreanu-Pîrjol B., Călinescu M., Dumitru F., Sîrbu R., Stoicescu R., Rima G., Guran C., Cu(II) and Zn(II) complex compounds with biguanides aromatic derivatives. Synthesis, characterization, biological activity, Scientific Study & Research - Chemistry & Chemical Engineering, Biotechnology, Food industry, 12 (2), pp. 127 – 140, 2011;

  49. Călinescu M., Negreanu-Pîrjol T., Georgescu R., Cǎlinescu O., Synthesis and characterization of new copper(II) complex compounds with chlorhexidine. Part I, Cent. Eur. J. Chem., vol. 8, Issue 3, pp. 543-549, 2010;

  50. Călinescu M., Negreanu-Pîrjol T., Calinescu O., Georgescu R., Spectral and Biological Characterization of Some Copper(II) Complex Compounds with Chlorhexidine, Revista de Chimie, vol. 63, No. 7, pp. 682 – 687 , 2012

  51. C.Gh. Macarovici, Quantitative Inorganic Chemical Analysis (Ed. Acad. RSR, Bucharest,

  52. P. Ray, Chem. Rev. 61, pp. 313, 1961

  53. S. Singh, R. Malhotra, K.S. Dhindsa, Proc. Nat. Acad. Sci. India 68(A), pp. 217, 1998

  54. P.V. Babykutty et al., J. Inorg. Nucl. Chem. 36, pp. 3685, 1974

  55. R.H. Skabo, P.W. Smith, Aust. J. Chem. 22, pp. 659, 1969

  56. P.V. Bharatam, D.S. Patel, P. Iqbal, J. Med. Chem. 48, pp. 7615, 2005

  57. K. Nakamoto, Infrared Spectra of Inorganic and Coordination Compounds, Ed. J. Wiley and Sons, Inc. New York, 1986

  58. M. Zhu, L. Lu, P. Yang, X. Jin, Acta Cryst. E 58, pp. 217, 2002

  59. M. Zhu, L. Lu, P. Yang, X. Jin, Acta Cryst. E 58, pp. 272, 2002

  60. [P. Bindu, M.R.P. Kurup and T.R. Satyakeerthy, Polyhedron, 18, pp. 321, 1999

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