4.7 Article

Beauvericin and enniatin B effects on a human lymphoblastoid Jurkat T-cell model

Journal

FOOD AND CHEMICAL TOXICOLOGY
Volume 115, Issue -, Pages 127-135

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.fct.2018.03.008

Keywords

Mycotoxins; Flow cytometry; Beauvericine; Enniatin B; Jurkat-T cells; Oxidative stress; DNA damage; Cell cycle; Caspase-3&7

Funding

  1. Spanish Ministry of Economy and Competitiveness [AGL2016-77610R]

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Several mycotoxins exert their effect on the immunological system; some are classified as immunotoxic. Jurkat T-cells were used to study toxic effects of beauvericin (BEA) and enniatin B (ENN B). Both are not legislated mycotoxins with increasing presence in feed and food. Concentrations studied were from 1 to 15 mu M at 24, 48 and 72 h. Cell death by increasing the percentage of apoptotic/necrotic cells was: BEA > ENN B. IC50 values ranged from 3 to 7.5 mu M for BEA. ENN B 15 mu M decreased viability (21-29%). The percentage of apoptotic/necrotic cells was BEA > ENN B at 24 h but not at 48 h. Caspase-3&7 activation profile varied, although both mycotoxins increased this activation. No difference in ROS production for any mycotoxin was observed. Arrest in S phase for both mycotoxins was obtained. BEA increased the percentage of DNA in the tail (18% and 20%) with respect to the control, whereas not for ENN B. In summary, cytotoxicity of BEA involved mitochondrial alterations; while ENN B only at highest concentrations and time assayed. BEA had cell cycle disturbances and apoptotic and apoptotic/necrotic cells increased; for ENN B these were not evident. Different toxic responses in Jurkat T-cells may be involved in BEA and ENN B toxicity.

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