Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
Escherichia coli K-12 GFP-based bacterial biosensors allowed the detection of cytotoxic and genotoxic effect of anticancer drug– cyclophosphamide and antidiabetic drug – metformin in PBS buffer and surface water. Experimental data indicated that recA::gfpmut2 genetic system was sensitive to drugs and drugs mixture applied in experiment. RecA promoter was a good bioindicator in cytotoxic and genotoxic effect screening of cyclophosphamide, metformin and the mixture of the both drugs in PBS buffer and surface water. The results indicated that E. coli K-12 recA::gfp mut2 strain could be potentially useful for first-step screening of cytotoxic and genotoxic effect of anticancer and antidiabetic pharmacist residues in water. Next steps in research will include more experimental analysis to validate recA::gfpmut2 genetic system in E. coli K-12 on different anticancer drugs.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
116--121
Opis fizyczny
Bibliogr. 13 poz., tab.
Twórcy
autor
- Department of Sanitary Biology and Biotechnology, Faculty of Civil Engineering and Environmental Engineering, Bialystok University of Technology, Wiejska 45E, 15-351 Bialystok, Poland
autor
- Department of Sanitary Biology and Biotechnology, Faculty of Civil Engineering and Environmental Engineering, Bialystok University of Technology, Wiejska 45E, 15-351 Bialystok, Poland
Bibliografia
- 1. Besse J.P., Latour J.-F., Garric J. 2012. Anticancer drugs in surface waters. What can we say about the occurrence and environmental significance of cytotoxic, cytostatic and endocrine therapy drugs? Environ. Intern., 39, 73–86.
- 2. Zhang J., Chang V.W.C., Giannis A., Wang A.–Y. 2013. Removal of cytostatic drugs from aquatic environment: A review., Scien. Tot. Environ., 445– 446, 281–298.
- 3. Yu-Chen Lin A., Lin Y.C., Lee W.N. 2014. Prevalence and sunlight photolysis of controlled and chemotherapeutic drugs in aqueous environments. Environm. Poll., 187, 170–181.
- 4. Kosjek T., Heath E. 2011. Occurrence, fate and determination of cytostatic pharmaceuticals in the environment, Tr. AC. Trends Anal. Chem., 30, 1065–1087.
- 5. Quinn B.J., Kitagawa H., Memmott R.M., Gills J.J., Dennis P.A. 2013. Repositioning metformin for cancer prevention and treatment, Trends. Endocrinol. Metabol., 24, 9, 469–480.
- 6. Scheurer M., Sacher F., Brauch H.J. 2009. Occurrence of the antidiabetic drug metformin in sewage and surface waters in Germany, J Environ. Monit., 11, 9, 1608–1613.
- 7. Kostrzyńska M, Leung K.T., Lee H., Trevors J.T. 2002. Green fluorescence protein based biosensor for detecting SOS-inducing activity of genotoxic compounds. J Microbiol. Meth., 48, 43–51.
- 8. Matejczyk M. 2010. The Potency of application of microbial biosensors. Advances in Microbiology (In Polish). 49, 4, 297–304.
- 9. Alhadrami H.A., Paton G.I. 2013. The potential applications of SOS-lux biosensors for rapid screening of mutagenic chemicals. FEMS Microbiol. Lett., 344, 1, 69–76.
- 10. Park M., Tsai S.L., Chen W. 2013. Microbial Biosensors: Engineered microorganisms as the sensing machinery. Sensors, 13, 5777–5795.
- 11. Zaslaver A., Mayo A.E., Rosemberg R., Bashkin P., Sberro H., Tsalyuk M., Surette M.G., Alon U. 2004. Just-in-time transcription program in metabolic pathways. Nat. Genet., 36, 5, 486–491.
- 12. Ptitsyn L.R., Horneck G., Komova O., Kozubek S., Krasavin E.A., Bonev M., Rettberg P. 1997. A biosensor for environmental genotoxin screening based on an SOSlux assay in recombinant Escherichia coli cells. Appl. Environm. Microbiol., 63, 4377–4384.
- 13. Amador R.R., Longo J.P.F., Lacava Z.G., Dorea J.G. 2012. Almeida Santos M. de F.M. Metformin (dimethyl-biquanide) induced DNA damage in mammalian cells. Gen. Mol. Biol., 35, 1, 153–158.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a436f97b-5f50-40e8-8275-023bfa5fdb1e