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Investigation of Antimicrobial Activity of Pyocyanin Produced by Pseudomonas aeruginosa Strains Isolated from Different Clinical Specimens ​

Year 2016, Volume: 44 Issue: 1, 1 - 6, 01.03.2016

Abstract

Pyocyanin is the characteristic blue-green phenazine pigment produced by Pseudomonas aeruginosa stra- ins. The aim of our study is to determine the highest amount of pyocyanin production in P. aeruginosa strains and to investigate the antimicrobial effect of pyocyanin pigment on Escherichia coli, Bacillus sp., Pseu- domonas aeruginosa, Candida sp. and Aspergillus niger. For this purpose, pyocyanin was extracted from P. ae- ruginosa culture supernatants and purified, and then it was measured by spectrophotometrically. P. aerugino- sa A10 strain isolated from urine specimen was determined as the highest amount of pyocyanin producer and P. aeruginosa A1 strain isolated from abdomen was the lowest. The ‘Agar Well Diffusion’ method was carried out to determine the antimicrobial effect of pyocyanin. Accordingly, pyocyanin was effective as an antimicrobial agent on Bacillus sp., Escherichia coli and Candida sp., but there was no antimicrobial effect on P. aeruginosa and A. niger. After that ‘Tube Dilution Method’ was used on strains, which were determined as sensitive to pyocyanin with agar well diffusion method. An increase in the intensity of Bacillus sp. and Candida sp. strains’ growth with decreasing the concentration of pyocyanin was observed.

References

  • S. Royan, C. Parulekar, S. Mavinkurve, Exopoly- saccharides of Pseudomonas mendocina P2d, Lett. Appl. Microbiol., 29 (1999) 342.
  • M.Z. El-Fouly, A. M. Sharaf, A.A.M. Shahin, H.A. El-Bialy, Biosynthesis of pyocyanin pigment by Pseudomonas aeruginosa, J. Radiat. Res. Appl. Sci., 8 (2015) 36-48.
  • K. Ohfujia, N. Satob, N. Hamada-Satoa, T. Kobayashia, C. Imadaa, H. Okuma, E. Watanabe, Construction of a glucose sensor based on a screen-printed electrode and a novel mediator pyocyanin from Pseudomonas aeruginosa, Biosens. Bioelectron., 19 (2004) 1237–1244.
  • H.H. Hassani, H.M. Hasan, A. Al-Saadi, A.M. Ali, M.H. Muhammad, A comparative study on cytotoxicity and apoptotic activity of pyocyanin produced by wild type and mutant strains of Pseudomonas aeruginosa, Eur. J. Exp. Biol., 2 (2012) 1389-1394.
  • D.W. Essar, L. Eberly, A. Hadero, I.P. Crawford, Identification and characterization of genes for second anthranilate synthase in Pseudomonas aeruginosa: interchangeability of the two antranilate synthase and evolutionary implications, J. Bacteriol., 172 (1990) 884- 900.
  • S. Saha, R. Thavas, S. Jayalakshmi, Phenazine pigments from Pseudomonas aeruginosa and their application as antibacterial agent and food colourants, Res. J. Microbiol., 3 (2008) 122-128.
  • S. Jayaseelan, D. Ramaswamy, S. Dharmaraj, Pyocyanin: production, applications, challenges and new insights, World J. Microbiol. Biotechnol., 30 (2014) 1159-1168.
  • F.Y. Al-Ani, A.S. Al-Shibib, K.M. Khammas, R. Taher, Pyocyanin preparation from Pseudomonas aeruginosa isolated from heterogeneous clinical materials, Folia Microbiol. (Praha), 31 (1986) 215-9.
  • L.V. Silva, A.C.M. Galdinoa, A.P.F. Nunes, K.R.N. Dos Santos, B. M. Moreira, L. C. Cacci, C. L. Sodré, M. Ziccardi, M.H. Branquinha, A.L.S. Santos, Virulence attributes in Brazilian clinical isolates of Pseudomonas aeruginosa, Int. J. Med. Microbiol., 304 (2014) 990–1000.
  • R. Fontoura, J.C. Spada, S.T. Silveira, S. M. Tsai, A. Brandelli, Purification and characterization of an antimicrobial peptide produced by Pseudomonas sp. strain 4B, World Microband Biot., 25 (2009) 205-213.
  • T. Das, M. Manefield, Pyocyanin Promotes Extracellular DNA Release in Pseudomonas aeruginosa, PLOS ONE, 7 (2012) 1-9.
  • S.S. Baron, J.J. Rowe, Antibiotic Action of Pyocyanin, Antimicrob. Agents Chemother., 20 (1981) 814-820.
  • D.J. Hassett, M.S. Cohen, Bacterial adaptation to oxidative stress: implications for pathogenesis and interaction with phagocytic cells, The FASEB J., 3 (1989) 2574-2582.
  • D. Hasset, L. Charniga, K. Bean, D.E. Ohman, M.S. Cohen, Response of Pseudomonas aeruginosa to pyocyanin: mechanism of resistance, antioxidant defenses, and demonstration of a manganese-cofactored superoxide dismutase, Infect. Immun., 60 (1992) 328-336.
  • R.S. Norman, P. Moeller, T.J. McDonald, P.J. Morris, Effect of pyocyanin on a crude-oil degrading microbial community, Appl. Anviron. Microbiol., 70 (2002) 4004- 4011.
  • W.A. El-Shouny, A.R.H. Al-Baidani, W.T. Hamza, Antimicrobial activity of pyocyanin produced by Pseudomonas aeruginosa isolated from surgical wound infections, Int. J. Pharm. Med. Sci., 1 (2011) 1-7.
  • E.G. Sweedan, Study the effect of antibiotics on pyocyanin production from Pseudomonas aeruginosa and pyocyanin as antibiotic against different pathogenic bacteria, J. University of anbar for pure science, 4 (2010).
  • T. Sudhakar, S. Karpagam, R. Jayavarthanan, Pyocyanin and its bacteriostatic effect toward common clinical pathogenes, Int. J. PharmTech. Res., 3 (2013) 1487-1492.
  • R. Wilson, T. Pitt, G. Taylor, D. Watson, J. MacDermot, D. Sykes, D. Roberts, P. Cole, Pyocyanin and 1-Hydrophenazine produced by Pseudomonas aeruginosa inhibit the beating of human respiratory cilia in vitro, J. Clin. Invest., 79 (1986) 221-229.
  • J.R. Kerr, G.W. Taylor, A. Rutman, N. Hoiby, P.J. Cole, R. Wilson, Pseudomonas aeruginosa pyocyanin and 1-hydroxphenazine inhibit fungal growth, J. Clin. Pathol., 52 (1999) 385-387.
  • S. Karpagam, T. Sudhakar, M. Lakshmipathy, Microbicidal response of pyocyanin produced by P. aeruginosa toward clinical isolates of fungi, Int. J. Pharm. and Pharm. Sci., 5 (2013) 870-873.
  • J.R. Kerr, Suppression of Fungal Growth Exhibited by Pseudomonas aeruginosa, J. Clin. Microbiol., 32 (1994) 525-527.
  • I. Kaleli, N. Cevahir, M. Demir, U. Yildirim, R. Sahin, Anticandidal activity of Pseudomonas aeruginosa strains isolated from clinical specimens, Mycoses, 50 (2006) 74-78.
  • S. Bhattacharyya, P. Gupta, G. Banerjee, A. Jain, M. Singh, Inhibition of Candida biofilms by pyocyanin: an in-vitro study, Int. J. Cur. Res. Rev., 5 (2013) 31-35.
  • C. Fuqua, M.R. Parsek, E.P. Greenberg, Regulation of gene expression by cell-to-cell communication: acyl- homoserine lactone quorum sensing, Annu. Rev. Genet., 35 (2001) 439-468.

Farklı Klinik Malzemelerden İzole Edilen Pseudomonas aeruginosa Suşlarıyla Üretilen Piyosiyaninin Antimikrobiyal Etkisinin Araştırılması

Year 2016, Volume: 44 Issue: 1, 1 - 6, 01.03.2016

Abstract

P seudomonas aeruginosa suşları tarafından üretilen piyosiyanin karakteristik mavi-yeşil bir fenazin pigmentidir. Çalışmanın amacı, P. aeruginosa suşlarında en yüksek piyosiyanin üretiminin belirlenmesi ve piyosiyaninin Escherichia coli, Bacillus sp., Pseudomonas aeruginosa, Candida sp. and Aspergillus niger üzerindeki antimiktobiyal etkisinin araştırılmasıdır. Bu doğrultuda, piyosiyanin P. aeruginosa kültür süpernatanından özütlendi ve saflaştırıldı, ardından spektrofotometrik olarak ölçüldü. En yüksek piyosiyanin üretiminin idrar örneğinden izole edilen P. aeruginosa A10 suşunda ve en düşük piyosiyanin üretiminin batından izole edilen P. aeruginosa A1 suşunda olduğu belirlendi. Piyosiyaninin antimikrobiyal etkisinin belirlenmesinde ‘Agar Kuyu Difüzyon’ yöntemi uygulandı. Böylece, piyosiyanin Bacillus sp., Escherichia coli ve Candida sp., üzerinde etkili bir antimikrobiyal ajanken, P. aeruginosa ve A. niger üzerinde antimikrobiyal etkisi görülmedi. Ardından, agar kuyu yöntemi ile piyosiyanine duyarlı olduğu belirlenen suşlara ‘Tüp Seyreltme Yöntemi’ kullanıldı. Azalan piyosiyanin derişimleri ile Bacillus sp. and Candida sp. suşlarının üremesinde artış gözlendi

References

  • S. Royan, C. Parulekar, S. Mavinkurve, Exopoly- saccharides of Pseudomonas mendocina P2d, Lett. Appl. Microbiol., 29 (1999) 342.
  • M.Z. El-Fouly, A. M. Sharaf, A.A.M. Shahin, H.A. El-Bialy, Biosynthesis of pyocyanin pigment by Pseudomonas aeruginosa, J. Radiat. Res. Appl. Sci., 8 (2015) 36-48.
  • K. Ohfujia, N. Satob, N. Hamada-Satoa, T. Kobayashia, C. Imadaa, H. Okuma, E. Watanabe, Construction of a glucose sensor based on a screen-printed electrode and a novel mediator pyocyanin from Pseudomonas aeruginosa, Biosens. Bioelectron., 19 (2004) 1237–1244.
  • H.H. Hassani, H.M. Hasan, A. Al-Saadi, A.M. Ali, M.H. Muhammad, A comparative study on cytotoxicity and apoptotic activity of pyocyanin produced by wild type and mutant strains of Pseudomonas aeruginosa, Eur. J. Exp. Biol., 2 (2012) 1389-1394.
  • D.W. Essar, L. Eberly, A. Hadero, I.P. Crawford, Identification and characterization of genes for second anthranilate synthase in Pseudomonas aeruginosa: interchangeability of the two antranilate synthase and evolutionary implications, J. Bacteriol., 172 (1990) 884- 900.
  • S. Saha, R. Thavas, S. Jayalakshmi, Phenazine pigments from Pseudomonas aeruginosa and their application as antibacterial agent and food colourants, Res. J. Microbiol., 3 (2008) 122-128.
  • S. Jayaseelan, D. Ramaswamy, S. Dharmaraj, Pyocyanin: production, applications, challenges and new insights, World J. Microbiol. Biotechnol., 30 (2014) 1159-1168.
  • F.Y. Al-Ani, A.S. Al-Shibib, K.M. Khammas, R. Taher, Pyocyanin preparation from Pseudomonas aeruginosa isolated from heterogeneous clinical materials, Folia Microbiol. (Praha), 31 (1986) 215-9.
  • L.V. Silva, A.C.M. Galdinoa, A.P.F. Nunes, K.R.N. Dos Santos, B. M. Moreira, L. C. Cacci, C. L. Sodré, M. Ziccardi, M.H. Branquinha, A.L.S. Santos, Virulence attributes in Brazilian clinical isolates of Pseudomonas aeruginosa, Int. J. Med. Microbiol., 304 (2014) 990–1000.
  • R. Fontoura, J.C. Spada, S.T. Silveira, S. M. Tsai, A. Brandelli, Purification and characterization of an antimicrobial peptide produced by Pseudomonas sp. strain 4B, World Microband Biot., 25 (2009) 205-213.
  • T. Das, M. Manefield, Pyocyanin Promotes Extracellular DNA Release in Pseudomonas aeruginosa, PLOS ONE, 7 (2012) 1-9.
  • S.S. Baron, J.J. Rowe, Antibiotic Action of Pyocyanin, Antimicrob. Agents Chemother., 20 (1981) 814-820.
  • D.J. Hassett, M.S. Cohen, Bacterial adaptation to oxidative stress: implications for pathogenesis and interaction with phagocytic cells, The FASEB J., 3 (1989) 2574-2582.
  • D. Hasset, L. Charniga, K. Bean, D.E. Ohman, M.S. Cohen, Response of Pseudomonas aeruginosa to pyocyanin: mechanism of resistance, antioxidant defenses, and demonstration of a manganese-cofactored superoxide dismutase, Infect. Immun., 60 (1992) 328-336.
  • R.S. Norman, P. Moeller, T.J. McDonald, P.J. Morris, Effect of pyocyanin on a crude-oil degrading microbial community, Appl. Anviron. Microbiol., 70 (2002) 4004- 4011.
  • W.A. El-Shouny, A.R.H. Al-Baidani, W.T. Hamza, Antimicrobial activity of pyocyanin produced by Pseudomonas aeruginosa isolated from surgical wound infections, Int. J. Pharm. Med. Sci., 1 (2011) 1-7.
  • E.G. Sweedan, Study the effect of antibiotics on pyocyanin production from Pseudomonas aeruginosa and pyocyanin as antibiotic against different pathogenic bacteria, J. University of anbar for pure science, 4 (2010).
  • T. Sudhakar, S. Karpagam, R. Jayavarthanan, Pyocyanin and its bacteriostatic effect toward common clinical pathogenes, Int. J. PharmTech. Res., 3 (2013) 1487-1492.
  • R. Wilson, T. Pitt, G. Taylor, D. Watson, J. MacDermot, D. Sykes, D. Roberts, P. Cole, Pyocyanin and 1-Hydrophenazine produced by Pseudomonas aeruginosa inhibit the beating of human respiratory cilia in vitro, J. Clin. Invest., 79 (1986) 221-229.
  • J.R. Kerr, G.W. Taylor, A. Rutman, N. Hoiby, P.J. Cole, R. Wilson, Pseudomonas aeruginosa pyocyanin and 1-hydroxphenazine inhibit fungal growth, J. Clin. Pathol., 52 (1999) 385-387.
  • S. Karpagam, T. Sudhakar, M. Lakshmipathy, Microbicidal response of pyocyanin produced by P. aeruginosa toward clinical isolates of fungi, Int. J. Pharm. and Pharm. Sci., 5 (2013) 870-873.
  • J.R. Kerr, Suppression of Fungal Growth Exhibited by Pseudomonas aeruginosa, J. Clin. Microbiol., 32 (1994) 525-527.
  • I. Kaleli, N. Cevahir, M. Demir, U. Yildirim, R. Sahin, Anticandidal activity of Pseudomonas aeruginosa strains isolated from clinical specimens, Mycoses, 50 (2006) 74-78.
  • S. Bhattacharyya, P. Gupta, G. Banerjee, A. Jain, M. Singh, Inhibition of Candida biofilms by pyocyanin: an in-vitro study, Int. J. Cur. Res. Rev., 5 (2013) 31-35.
  • C. Fuqua, M.R. Parsek, E.P. Greenberg, Regulation of gene expression by cell-to-cell communication: acyl- homoserine lactone quorum sensing, Annu. Rev. Genet., 35 (2001) 439-468.
There are 25 citations in total.

Details

Primary Language English
Journal Section Research Article
Authors

Sezen Bilen Özyürek This is me

Sinem Diken Gür This is me

Işıl Seyis Bilkay This is me

Publication Date March 1, 2016
Published in Issue Year 2016 Volume: 44 Issue: 1

Cite

APA Bilen Özyürek, S., Diken Gür, S., & Bilkay, I. S. (2016). Investigation of Antimicrobial Activity of Pyocyanin Produced by Pseudomonas aeruginosa Strains Isolated from Different Clinical Specimens ​. Hacettepe Journal of Biology and Chemistry, 44(1), 1-6.
AMA Bilen Özyürek S, Diken Gür S, Bilkay IS. Investigation of Antimicrobial Activity of Pyocyanin Produced by Pseudomonas aeruginosa Strains Isolated from Different Clinical Specimens ​. HJBC. March 2016;44(1):1-6.
Chicago Bilen Özyürek, Sezen, Sinem Diken Gür, and Işıl Seyis Bilkay. “Investigation of Antimicrobial Activity of Pyocyanin Produced by Pseudomonas Aeruginosa Strains Isolated from Different Clinical Specimens ​”. Hacettepe Journal of Biology and Chemistry 44, no. 1 (March 2016): 1-6.
EndNote Bilen Özyürek S, Diken Gür S, Bilkay IS (March 1, 2016) Investigation of Antimicrobial Activity of Pyocyanin Produced by Pseudomonas aeruginosa Strains Isolated from Different Clinical Specimens ​. Hacettepe Journal of Biology and Chemistry 44 1 1–6.
IEEE S. Bilen Özyürek, S. Diken Gür, and I. S. Bilkay, “Investigation of Antimicrobial Activity of Pyocyanin Produced by Pseudomonas aeruginosa Strains Isolated from Different Clinical Specimens ​”, HJBC, vol. 44, no. 1, pp. 1–6, 2016.
ISNAD Bilen Özyürek, Sezen et al. “Investigation of Antimicrobial Activity of Pyocyanin Produced by Pseudomonas Aeruginosa Strains Isolated from Different Clinical Specimens ​”. Hacettepe Journal of Biology and Chemistry 44/1 (March 2016), 1-6.
JAMA Bilen Özyürek S, Diken Gür S, Bilkay IS. Investigation of Antimicrobial Activity of Pyocyanin Produced by Pseudomonas aeruginosa Strains Isolated from Different Clinical Specimens ​. HJBC. 2016;44:1–6.
MLA Bilen Özyürek, Sezen et al. “Investigation of Antimicrobial Activity of Pyocyanin Produced by Pseudomonas Aeruginosa Strains Isolated from Different Clinical Specimens ​”. Hacettepe Journal of Biology and Chemistry, vol. 44, no. 1, 2016, pp. 1-6.
Vancouver Bilen Özyürek S, Diken Gür S, Bilkay IS. Investigation of Antimicrobial Activity of Pyocyanin Produced by Pseudomonas aeruginosa Strains Isolated from Different Clinical Specimens ​. HJBC. 2016;44(1):1-6.

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