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20 results on '"Dall'Asta, C."'

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1. Investigating Metabolic Plant Response toward Deoxynivalenol Accumulation in Four Winter Cereals.

2. Mycotoxin occurrence in kernels and straws of wheat, barley, and tritordeum.

3. The bitter side of toxicity: A big data analysis spotted the interaction between trichothecenes and bitter receptors.

4. Exploiting the potential of micropropagated durum wheat organs as modified mycotoxin biofactories: The case of deoxynivalenol.

5. Acrylamide Reduction Strategy in Combination with Deoxynivalenol Mitigation in Industrial Biscuits Production.

6. Response of intestinal HT-29 cells to the trichothecene mycotoxin deoxynivalenol and its sulfated conjugates.

7. Formulation and processing factors affecting trichothecene mycotoxins within industrial biscuit-making.

8. In silico analysis sheds light on the structural basis underlying the ribotoxicity of trichothecenes-A tool for supporting the hazard identification process.

9. Group detection of DON and its modified forms by an ELISA kit.

10. Deoxynivalenol & Deoxynivalenol-3-Glucoside Mitigation through Bakery Production Strategies: Effective Experimental Design within Industrial Rusk-Making Technology.

11. Masked mycotoxins are efficiently hydrolyzed by human colonic microbiota releasing their aglycones.

12. Fate of Fusarium mycotoxins in the cereal product supply chain: the deoxynivalenol (DON) case within industrial bread-making technology.

13. Occurrence of deoxynivalenol and its 3-beta-D-glucoside in wheat and maize.

14. The ability to detoxify the mycotoxin deoxynivalenol colocalizes with a major quantitative trait locus for Fusarium head blight resistance in wheat.

15. Masked mycotoxins: determination of a deoxynivalenol glucoside in artificially and naturally contaminated wheat by liquid chromatography-tandem mass spectrometry.

16. A rapid multiresidual determination of type A and type B trichothecenes in wheat flour by HPLC-ESI-MS.

17. Simultaneous detection of type A and type B trichothecenes in cereals by liquid chromatography-electrospray ionization mass spectrometry using NaCl as cationization agent.

18. Simultaneous liquid chromatography-fluorescence analysis of type A and type B trichothecenes as fluorescent derivatives via reaction with coumarin-3-carbonyl chloride.

19. Simultaneous detection of type A and type B trichothecenes in cereals by liquid chromatography–electrospray ionization mass spectrometry using NaCl as cationization agent

20. Simultaneous liquid chromatography–fluorescence analysis of type A and type B trichothecenes as fluorescent derivatives via reaction with coumarin-3-carbonyl chloride

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