Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5138846 | Journal of Trace Elements in Medicine and Biology | 2017 | 7 Pages |
Abstract
To explore the metabolism of T-2 toxin in human chondrocytes (HCs) and determine the impact of selenium supplementation. For determination of cytotoxicity using the MTT assay, optical density values were read with an automatic enzyme-linked immunosorbent assay reader at 510â¯nm. Cell survival was calculated and the cytotoxicity estimated. To identify the metabolites of T-2 toxin, the medium supernatants and C28/I2 cells were analyzed by high-performance liquid chromatography tandem mass spectrometry (HPLC-MS/MS) separately. For HPLC-MS/MS, the mobile phase A was water and phase B was 98% methanol. The gradient for the elution was: 0-0.5â¯min, 50% of B; 0.5-2.0â¯min, 100% of B; 2.0-3.5â¯min, 100% of B; 3.6-6â¯min, 50% of B. T-2 toxin increased the toxicity to C28/I2 cells significantly in a dose- and time-dependent manner (viability range 91.5-22.0%). Supplementation with selenium (100â¯ng/mL) could increase the cell viability after the 24â¯h incubation. The concentration of T-2 toxin in the cell medium decreased from 20 to 6.67â¯Â±â¯1.02â¯ng/mL, and the concentration of HT-2 toxin increased from 0 to 6.88â¯Â±â¯1.23â¯ng/mL during the 48â¯h incubation, whereas the relative concentration of T-2 toxin in cells increased from 0 to 12.80â¯Â±â¯1.84â¯ng/g. Supplementary selenium in the HCs cultures reduced the cytotoxicity induced by T-2 toxin significantly, and was associated with rapid conversion of T-2 toxin in the culture medium to HT-2 toxin. T-2 toxin was more toxic to HCs than HT-2 toxin at equivalent concentrations. HT-2 toxin was a detectable metabolite of T-2 toxin in cultured HCs, and selenium enhanced the metabolic conversion of T-2 toxin, reducing its cytotoxicity to HCs.
Related Topics
Physical Sciences and Engineering
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Analytical Chemistry
Authors
Fang-Fang Yu, Xia-Lu Lin, Xi Wang, Huan Liu, Lei Yang, Mary B. Goldring, Mikko J. Lammi, Xiong Guo,