INFORMAZIONI SU QUESTO ARTICOLO

Cita

1. Martinez-Salgado, C., Lopez-Hernandez, F. J., Lopez-Novoa, J. M. (2007). Glomerular nephrotoxicity of aminoglycosides. Toxicology and applied pharmacology, 223(1), 86-98, https://doi.org/10.1016/j.taap.2007.05.00410.1016/j.taap.2007.05.004Search in Google Scholar

2. Balakumar, P., Rohilla, A., Thangathirupathi, A. (2010). Gentamicin-induced nephrotoxicity: do we have a promising therapeutic approach to blunt it?. Pharmacological Research, 62(3), 179-186, https://doi.org/10.1016/j.phrs.2010.04.00410.1016/j.phrs.2010.04.004Search in Google Scholar

3. Bennett, J. E., Dolin, R., Blaser, M. J. Mandell, Douglas. (2015). Bennett's principles and practice of infectious diseases, eight ed., Elsevier Health Sciences, pp. 310-321.Search in Google Scholar

4. Noone, P., Parsons, T. M. C., Pattison, J. R., Slack, R. C. B., Garfield-Davies, D., Hughes, K. (1974). Experience in monitoring gentamicin therapy during treatment of serious gram-negative sepsis. British Medical Journal, 1, 477-481.10.1136/bmj.1.5906.477Search in Google Scholar

5. Miglioli, P. A., Silini, R., Carzeri, O., Grabocka, E., Allerberger, F. (1999). Antibacterial activity of gentamicin and ciprofloxacin against gram-negative bacteria: interactions with pig and calf sera. Pharmacological research, 39, 321-323, https://doi.org/10.1006/phrs.1998.044710.1006/phrs.1998.0447Search in Google Scholar

6. Dehne, N., Rauen, U., De Groot, H., & Lautermann, J. (2002). Involvement of the mitochondrial permeability transition in gentamicin ototoxicity. Hearing research, 169(1), 47-55. https://doi.org/10.1016/S0378-5955(02)00338-610.1016/S0378-5955(02)00338-6Search in Google Scholar

7. Forge, A., Schacht, J. (2000). Aminoglycoside antibiotics. Audiology and Neurotology, 5(1), 3-22, https://doi.org/10.1159/00001386110.1159/00001386110686428Search in Google Scholar

8. Isefuku, S., Joyner, C. J., & Simpson, A. H. R. (2003). Gentamicin may have an adverse effect on osteogenesis. Journal of orthopaedic trauma, 17, 212-216.10.1097/00005131-200303000-0001012621263Search in Google Scholar

9. Duewelhenke, N., Krut, O., Eysel, P. (2007). Influence on mitochondria and cytotoxicity of different antibiotics administered in high concentrations on primary human osteoblasts and cell lines. Antimicrobial agents and chemotherapy, 51, 54-63, doi:10.1128/AAC.00729-05Search in Google Scholar

10. Chung, W. H., Pak, K., Lin, B., Webster, N., & Ryan, A. F. (2006). A PI3K pathway mediates hair cell survival and opposes gentamicin toxicity in neonatal rat organ of Corti. Journal of the Association for Research in Otolaryngology, 7(4), 373-382. DOI:10.1007/s10162-006-0050-y10.1007/s10162-006-0050-y250463117053865Search in Google Scholar

11. Ince, A., Schutze, N., Karl, N., Lohr, J. F., Eulert, J. (2007). Gentamicin negatively influenced osteogenic function in vitro. International Orthopaedics (SICOT), 31, 2007, 223-228. doi:10.1007/s00264-006-0144-5Search in Google Scholar

12. Giguere, S., Prescott, J. F., Baggot, J. D., Walker, R. D., Dowling, P. M. (2007). Antimicrobial Therapy in Veterinary Medicine, fourth ed., Wiley-Blackwell, New York, p. 626.Search in Google Scholar

13. Fülöpová, D., Kováčik, A., Kováčová, R., Čupka, P., Massányi, P. (2012). Effect of macrolide antibiotics on various cell cultures in vitro: Cell Morphology. The Journal of Microbiology, Biotechnology and Food Sciences, 2(1), 164-208.Search in Google Scholar

14. Tvrdá, E., Kováčik, A., Fülöpová, D., Lukáč, N., Massányi, P. (2016). In Vitro Impact of Macrolide Antibiotics on the Viability of Selected Mammalian Cell Lines. Scientific Papers: Animal Science & Biotechnologies, 49(2), 80-85.Search in Google Scholar

15. Kováčik, A., Tušimová, E., Tvrdá, E., Fülöpová, D., Čupka, P., Tirpák, F., Zbyňovská, K., Massányi, P., Kolesárová, A. (2016). Influence of gentamicin on the specific cell culture (BHK-21) in vitro. The Journal of Microbiology, Biotechnology and Food Sciences, doi:10.15414/jmbfs.2016/17.6.3.983-986Search in Google Scholar

16. Kováčik, A., Fülöpová, D., Kováčová, R., Čupka, P., Tušimová, E., Trandžík, J., Massányi, P. (2012). Effect of macrolide antibiotics on various cell cultures in vitro: 2. Cell biochemistry. The Journal of Microbiology, Biotechnology and Food Sciences, 2(3), 1079-1091.Search in Google Scholar

17. Tvrdá, E., Lukáč, N., Lukáčová, J., Jambor, T., Massányi, P. (2015). Dose-and Time-Dependent In Vitro Effects of Divalent and Trivalent Iron on the Activity of Bovine Spermatozoa. Biological Trace Element Research, 167 (1), 36-47. https://doi.org/10.1007/s12011-015-0288-510.1007/s12011-015-0288-5Search in Google Scholar

18. Yu, H., Guo, C. K., Wang, Y., Zhou, T., Kong, W. J. (2014). Gentamicin Blocks the ACh-Induced BK Current in Guinea Pig Type II Vestibular Hair Cells by Competing with Ca2+ at the L-Type Calcium Channel. International journal of molecular sciences, 15, 6757-6771, doi:10.3390/ijms15046757Search in Google Scholar

19. Shah, S. V., Walker, P. D. (1992). Reactive oxygen metabolites in toxic acute renal failure, Renal Failure, 14, 363-370.10.3109/08860229209106644Search in Google Scholar

20. Abdel Gayoum, A. A., Ali, B. H., Gawarsha, K., Bashir, A. A. (1993). Plasma lipid profile in rats with gentamicin nephrotoxicity. Human and Experimental Toxicology, 12, 371-375. DOI:10.1177/09603271930120050510.1177/096032719301200505Search in Google Scholar

21. Ali, B. H., Bashir, A. A., Tanira, M. O. M. (1995). The effect of thyroxine or carbimazole treatment on gentamicin nephrotoxicity in rats, Human and Experimental Toxicology, 14, 13-17. DOI:10.1177/09603271950140010310.1177/096032719501400103Search in Google Scholar

22. Papanikolaou, N., Peros, G., Morphake, P., Gkikas, G., Maraghianne, D., Tsipas, G., Kostopoulos, K., Arambtaze, C., Gkika, E-L., Bariety, J. (1992). Does gentamicin induce acute renal failure by increasing renal TX2 synthesis in rats. Prostaglandin Leuk. Essential Fatty Acids, 5, 131-136.10.1016/0952-3278(92)90229-CSearch in Google Scholar

23. Sundin, D. P., Sandoval, R., Molitoris, B. A. (2001). Gentamicin inhibits renal protein and phospholipid metabolism in rats: implications involving intracellular trafficking. Journal of the American Society of Nephrology, 12(1), 114-123.10.1681/ASN.V12111411134257Search in Google Scholar

24. Servais, H., Van Der Smissen, P., Thirion, G., Van der Essen, G., Van Bambeke, F., Tulkens, P. M., Mingeot-Leclercq, M. P. (2005). Gentamicin-induced apoptosis in LLC-PK1 cells: involvement of lysosomes and mitochondria. Toxicology and applied pharmacology, 206(3), 321-333, https://doi.org/10.1016/j.taap.2004.11.02410.1016/j.taap.2004.11.02416039943Search in Google Scholar

25. Morales, A. I., Detaille, D., Prieto, M., Puente, A., Briones, E., Arévalo, M., Leverve, X., López-novoa, J.M., El-Mir, M. Y. (2010). Metformin prevents experimental gentamicin-induced nephropathy by a mitochondria-dependent pathway. Kidney international, 77(10), 861-869. http://dx.doi.org/10.1038/ki.2010.1110.1038/ki.2010.1120164825Search in Google Scholar

26. Ali, B. H. (1995). Gentamicin nephrotoxicity in humans and animals: some recent research. General Pharmacology: The Vascular System, 26(7), 1477-1487. https://doi.org/10.1016/0306-3623(95)00049-610.1016/0306-3623(95)00049-6Search in Google Scholar

27. Sha, S. H., Schacht, J. (1999). Formation of reactive oxygen species following bioactivation of gentamicin. Free Radical Biology and Medicine, 26(3), 341-347, https://doi.org/10.1016/S0891-5849(98)00207-X10.1016/S0891-5849(98)00207-XSearch in Google Scholar

28. Rathbone, C. R., Cross, J. D., Brown, K. V., Murray, C. K. and Wenke, J. C. (2011). Effect of various concentrations of antibiotics on osteogenic cell viability and activity. Journal of Orthopaedic Research, 29, 1070-1074, DOI:10.1002/jor.2134310.1002/jor.2134321567453Search in Google Scholar

29. El Mouedden, M., Laurent, G., Mingeot-Leclercq, M. P., Taper, H. S., Cumps, J., Tulkens, P. M. (2000). Apoptosis in renal proximal tubules of rats treated with low doses of aminoglycosides. Antimicrobial agents and chemotherapy, 44(3), 665-675. doi:10.1128/AAC.44.3.665-675.2000Search in Google Scholar

eISSN:
2543-8050
Lingua:
Inglese
Frequenza di pubblicazione:
Volume Open
Argomenti della rivista:
Geosciences, Cartography and Photogrammetry, Life Sciences, Biotechnology, Plant Science, Medicine, Veterinary Medicine