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Similar uptake profiles of microcystin-LR and -RR in an in vitro human intestinal model
P Zeller1, M Clément, V Fessard
1Anses, Fougères Laboratory, Contaminant Toxicology Unit, La Haute Marche, BP 90203, 35302 Fougères Cedex, France.
Abstract:
Microcystins (MCs) are cyclic hepatotoxins produced by various species of cyanobacteria. Their structure includes two variable amino acids (AA) leading to more than 80 MC variants. In this study, we focused on the most common variant, microcystin-LR (MC-LR), and microcystin-RR (MC-RR), a variant differing by only one AA. Despite their structural similarity, MC-LR elicits higher liver toxicity than MC-RR partly due to a discrepancy in their uptake by hepatic organic anion transporters (OATP 1B1 and 1B3). However, even though ingestion is the major pathway of human exposure to MCs, intestinal absorption of MCs has been poorly addressed. Consequently, we investigated the cellular uptake of the two MC variants in the human intestinal cell line Caco-2 by immunolocalization using an anti-MC antibody. Caco-2 cells were treated for 30min to 24h with several concentrations (1-50μM) of both variants. We first confirmed the localization of OATP 3A1 and 4A1 at the cell membrane of Caco-2 cells. Our study also revealed a rapid uptake of both variants in less than 1h. The uptake profiles of the two variants did not differ in our immunostaining study neither with respect to concentration nor the time of exposure. Furthermore, we have demonstrated for the first time the nuclear localization of MC-RR and confirmed that of MC-LR. Finally, our results suggest a facilitated uptake and an active excretion of MC-LR and MC-RR in Caco-2 cells. Further investigation on the role of OATP 3A1 and 4A1 in MC uptake should be useful to clarify the mechanism of intestinal absorption of MCs and contribute in risk assessment of cyanotoxin exposure.
Insights
This study investigated microcystin uptake in human intestinal cells, finding both variants rapidly absorbed. Further research into organic anion transporters could clarify cyanotoxin absorption and risk assessment.
Area of Science:
- Environmental Toxicology
- Cell Biology
- Gastroenterology
Background:
- Microcystins (MCs) are cyanobacterial hepatotoxins with over 80 variants.
- MC-LR and MC-RR differ by one amino acid, with MC-LR showing higher liver toxicity.
- Intestinal absorption of MCs, a major human exposure route, is poorly understood.
Purpose of the Study:
- To investigate the cellular uptake of microcystin-LR (MC-LR) and microcystin-RR (MC-RR) in the human intestinal cell line Caco-2.
- To explore the potential role of organic anion transporters (OATPs) in intestinal MC absorption.
Main Methods:
- Immunolocalization using an anti-MC antibody to study MC uptake in Caco-2 cells.
- Treatment of Caco-2 cells with varying concentrations (1-50μM) and durations (30min-24h) of MC-LR and MC-RR.
- Confirmation of OATP 3A1 and OATP 4A1 localization at the Caco-2 cell membrane.
Main Results:
- Rapid cellular uptake of both MC-LR and MC-RR in Caco-2 cells within 1 hour.
- Similar uptake profiles for MC-LR and MC-RR regarding concentration and exposure time.
- Demonstrated nuclear localization of MC-RR for the first time, confirming MC-LR nuclear localization.
Conclusions:
- Suggests facilitated uptake and active excretion mechanisms for MC-LR and MC-RR in intestinal cells.
- Highlights the need for further investigation into OATP 3A1 and OATP 4A1 roles in MC intestinal absorption.
- Contributes to a better understanding of cyanotoxin absorption and risk assessment.
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