Research Article
BibTex RIS Cite

ALTIN NANOPARTİKÜL İŞARETLİ BİYOSENSÖR ile E.COLİ’NİN HIZLI ve DUYARLI TESPİTİ

Year 2018, Volume: 2 Issue: 2, 101 - 107, 29.09.2018

Abstract

E.coli su ve gıda
mikrobiyolojisinde en sık karşılaşılan bakterilerden birisidir. Bu sebeple gıda
ve suya bağlı olarak halk sağlığını korumak adına bakterilerin özelliklede E. coli’nin hızlı tespiti için yeni
yöntemlerin geliştirilmesi oldukça önemlidir. Bu çalışmada (gerçek örnekten) sudan
izole edilen E.coli örneğinin hızlı
tespiti için nanoparçacık etiketli bir sensör prosedürü, TÜBİTAK-BİLGEM,
Biyoelektronik grubu tarafından geliştirilen elektrokimyasal sensör cihazı (Misens
V2) ile tekrar revize edilmiş ve belirleyici limit 50 cfu/mlt’den 38 cfu/mlt’ye
düşürülmüştür. Biyosensör teknolojisi,  yüksek
hassasiyet ve özgüllük ile bakterileri tespit edebilmektedir. Altın
nanopartikül etiketli sensöre göre optimize edilen ve uygulanan proses, tamamen
yerli üretim olan elektrokimyasal sensör cihazı ile denenmiştir.  Konvensiyonel yöntemler ile iki ila dört gün
arası süren tespit süresinin bir saatden az bir zamana indirilebilmesi umut vaat
edicidir.

References

  • 1. Anderson JM, Baird-Parker AC. A rapid and direct plate method for enumerating Escherichia coli biotype i in food. J Appl Bact 1975; 39: 111-117. (English)
  • 2. Ekici K, Korkoca H, Sancak YC, Atalan E. Van Yöresi İçme Sularında Koliform ve E. Coli Araştırması. Uludag Univ J Fac Vet Med 2010; 29: 2: 21-25. (Türkçe)
  • 3. Wang Y, Alocilja EC. Gold nanoparticle-labeled biosensor for rapid and sensitive detection of bacterial pathogens. J Biol Eng 2015; 2:9-16.(English)
  • 4. Altintas Z, Akgun M, Kokturk G, Uludag Y. A fully automated microfluidic-based electrochemical sensor for real-time bacteria detection. Biosensor and Bioelectronics 2018; 100:541-548.(English)
  • 5. Tüylek, Z. Biyosensör and Nanoteknolojik Etkileşim.BEU Journal of Science 2017; 6(2); 71-80. (Turkçe)
  • 6. Hay A, Macdonald E, Evans R, Davidson M. Use of VITEK for surveillance of antibiotic resistance in Escherichia coli in the Scottish Highlands: results over 15 years. J Infection 2007; 55,e87–e88.doi:10.1016/j.jinf.2007.04.132.
  • 7. Derong D, Liu W, Li H, Wang Y, Li X, Zou D, Yang Z, Huang S, Zhou D, Huang L, Yuan J. Survey and rapid detection of Klebsiella pneumoniae in clinical samples targeting the rcsA gene in Beijing, China. Front. Microbiol 2015; 6:519.
  • 8. deFranchis R, Cross NC, Foulkes NS, Cox TM. Apotent inhibitör of Taq polymerase copurifies with human genomic DNA. Nucleic Acids Res 1988: 16. 10355.doi:10.1093/nar/16.21.10355.
  • 9. Chen L, Mediavilla JR, Endimiani A, Rosenthal ME, Zhao Y, Bonomo RA. Multiplex real-time PCR assay for detection and classification of Klebsiella pneumoniae carbapenemase gene (bla KPC) variants J Clin Microbiol 2011: 49; 479-585.
  • 10. Malhotra R, Patel V, Chikkaveeraiah BV, Munge BS, Cheong SC, Zain RB, Abraham MT, Dey DK, Gutkind JS, Rusling JF. Ultrasensitive Detection of Cancer Biomarkers in the Clinic by Use of a Nanostructured Microfluidic Array, Analytical Chemistry 2012; 84: 6249-6255.
  • 11. Afonso AS, Uliana CV, Martucci DH, Faria RC. Simple and rapid fabrication of disposable carbon-based electrochemical cells using an electronic craft cutter for sensor and biosensor applications. Talanta 2016; 146: 381-387.
  • 12. Varshney M, Li YB. Srinivasan B, Tung S. Sens. Actuators B Chem 2007; 128 (1): 99–107.
  • 13. Ma K, Deng Y, Bai Y, Xu D, Chen E, Wu H, Li B, Gao L. Food Control 2014; 42: 87–93. 14.Zhao YW, Wang HX, ST Bie, Shao Q, Wang CH, Li Z. Application of DNA based electrochemical biosensor in rapid detection of Escherichia coli exist in licorice decoction. Zhongguo Zhong Yao Za Zhi 2018: 43; 1209-1214.
Year 2018, Volume: 2 Issue: 2, 101 - 107, 29.09.2018

Abstract

References

  • 1. Anderson JM, Baird-Parker AC. A rapid and direct plate method for enumerating Escherichia coli biotype i in food. J Appl Bact 1975; 39: 111-117. (English)
  • 2. Ekici K, Korkoca H, Sancak YC, Atalan E. Van Yöresi İçme Sularında Koliform ve E. Coli Araştırması. Uludag Univ J Fac Vet Med 2010; 29: 2: 21-25. (Türkçe)
  • 3. Wang Y, Alocilja EC. Gold nanoparticle-labeled biosensor for rapid and sensitive detection of bacterial pathogens. J Biol Eng 2015; 2:9-16.(English)
  • 4. Altintas Z, Akgun M, Kokturk G, Uludag Y. A fully automated microfluidic-based electrochemical sensor for real-time bacteria detection. Biosensor and Bioelectronics 2018; 100:541-548.(English)
  • 5. Tüylek, Z. Biyosensör and Nanoteknolojik Etkileşim.BEU Journal of Science 2017; 6(2); 71-80. (Turkçe)
  • 6. Hay A, Macdonald E, Evans R, Davidson M. Use of VITEK for surveillance of antibiotic resistance in Escherichia coli in the Scottish Highlands: results over 15 years. J Infection 2007; 55,e87–e88.doi:10.1016/j.jinf.2007.04.132.
  • 7. Derong D, Liu W, Li H, Wang Y, Li X, Zou D, Yang Z, Huang S, Zhou D, Huang L, Yuan J. Survey and rapid detection of Klebsiella pneumoniae in clinical samples targeting the rcsA gene in Beijing, China. Front. Microbiol 2015; 6:519.
  • 8. deFranchis R, Cross NC, Foulkes NS, Cox TM. Apotent inhibitör of Taq polymerase copurifies with human genomic DNA. Nucleic Acids Res 1988: 16. 10355.doi:10.1093/nar/16.21.10355.
  • 9. Chen L, Mediavilla JR, Endimiani A, Rosenthal ME, Zhao Y, Bonomo RA. Multiplex real-time PCR assay for detection and classification of Klebsiella pneumoniae carbapenemase gene (bla KPC) variants J Clin Microbiol 2011: 49; 479-585.
  • 10. Malhotra R, Patel V, Chikkaveeraiah BV, Munge BS, Cheong SC, Zain RB, Abraham MT, Dey DK, Gutkind JS, Rusling JF. Ultrasensitive Detection of Cancer Biomarkers in the Clinic by Use of a Nanostructured Microfluidic Array, Analytical Chemistry 2012; 84: 6249-6255.
  • 11. Afonso AS, Uliana CV, Martucci DH, Faria RC. Simple and rapid fabrication of disposable carbon-based electrochemical cells using an electronic craft cutter for sensor and biosensor applications. Talanta 2016; 146: 381-387.
  • 12. Varshney M, Li YB. Srinivasan B, Tung S. Sens. Actuators B Chem 2007; 128 (1): 99–107.
  • 13. Ma K, Deng Y, Bai Y, Xu D, Chen E, Wu H, Li B, Gao L. Food Control 2014; 42: 87–93. 14.Zhao YW, Wang HX, ST Bie, Shao Q, Wang CH, Li Z. Application of DNA based electrochemical biosensor in rapid detection of Escherichia coli exist in licorice decoction. Zhongguo Zhong Yao Za Zhi 2018: 43; 1209-1214.
There are 13 citations in total.

Details

Primary Language Turkish
Subjects Health Care Administration
Journal Section Research Article
Authors

Sümeyra Savaş

Publication Date September 29, 2018
Acceptance Date August 19, 2018
Published in Issue Year 2018 Volume: 2 Issue: 2

Cite

AMA Savaş S. ALTIN NANOPARTİKÜL İŞARETLİ BİYOSENSÖR ile E.COLİ’NİN HIZLI ve DUYARLI TESPİTİ. J Biotechnol and Strategic Health Res. September 2018;2(2):101-107.

Journal of Biotechnology and Strategic Health Research