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Examining in vivo effects of silychristin, a potent in vitro inhibitor of thyroid hormone transporter MCT8

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Thyroid hormone (TH) availability is particularly critical for early brain development. TH transport across the blood-brain barrier is facilitated through two main transmembrane transporters: monocarboxylate transporter 8 (MCT8) and organic anion transporter 1C1 (OATP1C1). Inhibition of MCT8-mediated TH transport has been identified for a number of environmental chemicals using in vitro screening assays. Here we examined the in vivo effects of exposure to a potent in vitro inhibitor of MCT8, the flavonolignan silychristin, on several aspects of the TH system. Adult female rats were daily gavaged with 0, 250, or 500 mg/kg/day (n = 10/group) of silychristin for 7 days and euthanized on day 8. A smaller group (n = 5/group) of rats was administered the related flavonolignan, silybin (900 mg/kg), or the milk-thistle-derived flavonolignan mixture, silymarin (1,500 mg/kg). Serum TH concentrations were not changed in any treatment group. Mct8 and Oatp1c1 expression were upregulated in the choroid plexus upon silymarin exposure, without change in response to silychristin or silybin. Deiodinase 1 and dehalogenase activities, unchanged in the liver, were increased in the thyroid by the high dose of silychristin. These changes may have been triggered by increased thyroidal TH content, consequent to a reduction in MCT8-mediated TH efflux. Pharmacokinetic properties of silychristin and other flavonoids result in their low bioavailability and likely contributed to the largely negative findings. These observations demonstrate the challenges in extrapolating results from in vitro models to studies in intact organisms, showcasing the importance of selecting appropriate animal models and the best experimental design for assessing effects on human health.

Impact/Purpose

Thyroid hormone (TH) availability is especially critical for early brain development and is facilitated by active transport from blood to brain through two main transporters, monocarboxylate transporter 8 (MCT8) and organic anion transporter 1C1 (OATP1C1). MCT transporter inhibition has identified for a number of environmental contaminants using in vitro screening assays. One very potent inhibitor of MCT TH transport is the flavinoid silychristin. Here we examined the in vivo effects of a 7-day dosing period to the potent in vitro inhibitor of Mct8 TH transporter, silychristin, on several aspects of the thyroid system.  Serum TH were not changed in any treatment group. Expression of transcripts encoding Mct8 and Oatp1c1 were upregulated in the choroid plexus collected from the brains of silymarin-exposed rats, with no change in response to silychristin or silybinin. In the thyroid gland, the activity of TH metabolizing enzymes was increased by silychristin, suggestive of a compensatory response to a reduction in transporter-mediated efflux of TH from the gland, perhaps suggesting this endpoints as a possible biomarker of disruption of the thyroid system. Pharmacokinetic properties of silychristin and the flavonoid family of chemicals as a whole result in low bioavailability and likely contributed to the largely negative findings of this study. These findings reinforce the tenet that although extremely valuable in the initial detection of potential hazard, validation of the findings of in vitro assay systems in in vivo testing remains an essential component of the regulatory process.

Citation

Renko, K., R. Thomas, M. Hawks, J. Ford, J. Köhrle, M. Axelstad, AND Mary E. Gilbert. Examining in vivo effects of silychristin, a potent in vitro inhibitor of thyroid hormone transporter MCT8. Frontiers, Lausanne, SWITZERLAND, 8:1796387, (2026). [DOI: 10.3389/ftox.2026.1796387]

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DOI: Examining in vivo effects of silychristin, a potent in vitro inhibitor of thyroid hormone transporter MCT8
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Last updated on August 10, 2026
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