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An investigation of the effects of the gadolinium and gadolinium chelates on the intracellular calcium in the different cell cultures

2012
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Advisor: Prof. Dr. Haluk Keleştimur

Abstract (EN)

Gadolinium (Gd3+) is a rare earth metal that occurs in only trace amounts biologically and is not known to have a metabolic role but shown to inhibit calcium channels. Gd based MR contrast agents (GBMCA) are manufactured by a chelating process, in which organic ligand molecules form a stable complex around Gd3+. Aim of this study is to investigate the probably effect of free gadolinium and GBMCA in neuron cell lines on the intracellular Ca2+ because these agents can dissociate and result in release of toxic Gd3+ ions in metabolic conditions.Dorsal root ganglia (DRG), trigeminal ganglia (TG) and GT1 7 (immortalized GnRH neurons) cells were studied for responses to agents and nonspecific depolarization by high KCl+ and melatonin, respectively, by monitoring changes in [Ca2+]i with a microscopic digital image analysis system in Fura 2 AM loaded neurons.GBMCA and molecular gadolinium were prepared at 0.1 mmol/kg doses at the same pH and temperature values and administrated to the cell lines that loaded to calcium sensitive fluorescent dye Fura 2 AM.Application of Gd3+ and gadodiamid on the rat DRG and TG neurons caused significant decreases in the basal intracellular calcium levels whereas gadoterat meglumine did not have a significant impact. Gd3+ was more effective than gadodiamide. While returned effect was almost complete with gadodiamid, Gd3+ has irreversible effect. GT1 7 cell lines showed the same responses as Gd3+ and meglumine gadoterat in DRG and TG. The degree of effect of meglumine gadoterat is neglectable compared to Gd3+ and gadodiamid although it showed gadodiamid-like effects.In conclusion, some of the gadolinium chelates may release gadolinium in physiological conditions and cause toxic effects by changing the levels of intracellular calcium levels.

Author

Murat Baykara

How to Cite

Murat Baykara (Doctorate thesis). An investigation of the effects of the gadolinium and gadolinium chelates on the intracellular calcium in the different cell cultures, 2012, Fırat University.

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