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Goldenseal-mediated inhibition of intestinal uptake transporters decreases metformin systemic exposure in mice

Victoria O Oyanna, Kenisha Y Garcia-Torres, Baron J Bechtold, Katherine D Lynch, M Ridge Call, Miklós Horváth, Preston K Manwill, Tyler N Graf, Nadja B. Cech, Nicholas H. Oberlies, Mary F. Paine and John D. Clarke
Drug Metabolism and Disposition August 10, 2023, DMD-AR-2023-001360; DOI: https://doi.org/10.1124/dmd.123.001360
Victoria O Oyanna
1Pharmaceutical Sciences, Washington State University, United States
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Kenisha Y Garcia-Torres
2Washington State University, United States
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Baron J Bechtold
1Pharmaceutical Sciences, Washington State University, United States
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Katherine D Lynch
1Pharmaceutical Sciences, Washington State University, United States
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M Ridge Call
1Pharmaceutical Sciences, Washington State University, United States
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Miklós Horváth
3SOLVO Biotechnology, Hungary
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Preston K Manwill
4Chemistry and Biochemistry, University of North Carolina at Greensboro, United States
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Tyler N Graf
4Chemistry and Biochemistry, University of North Carolina at Greensboro, United States
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Nadja B. Cech
5University of North Carolina, United States
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Nicholas H. Oberlies
4Chemistry and Biochemistry, University of North Carolina at Greensboro, United States
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Mary F. Paine
1Pharmaceutical Sciences, Washington State University, United States
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John D. Clarke
2Washington State University, United States
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  • For correspondence: j.clarke@wsu.edu
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Abstract

Goldenseal is a perennial plant native to eastern North America. A recent clinical study reported goldenseal decreased metformin Cmax and AUC by 27% and 23%, respectively, but half-life and renal clearance were unchanged. These observations suggested goldenseal altered processes involved in metformin absorption. The underlying mechanism(s) remain(s) unknown. One mechanism for the decreased metformin systemic exposure is inhibition by goldenseal of intestinal uptake transporters involved in metformin absorption. Goldenseal extract and three goldenseal alkaloids (berberine, (-)-β-hydrastine, hydrastinine) were tested as inhibitors of organic cation transporter (OCT) 3, plasma membrane monoamine transporter (PMAT), and thiamine transporter (THTR) 2 using HEK293 cells overexpressing each transporter. The goldenseal extract, normalized to berberine content, was the strongest inhibitor of each transporter (IC50: 4.9, 13.1, and 5.8 μM for OCT3, PMAT, and THTR2, respectively). A pharmacokinetic study in mice compared the effects of berberine, (-)-β-hydrastine, goldenseal extract, and imatinib (OCT inhibitor) on orally administered metformin. Goldenseal extract and imatinib significantly decreased metformin Cmax by 31% and 25%, respectively, and had no effect on half-life. Berberine and (-)-β-hydrastine had no effect on metformin pharmacokinetics, indicating neither alkaloid alone precipitated the interaction in vivo. A follow-up murine study involving intravenous metformin and oral inhibitors examined the contributions of basolateral enteric/hepatic uptake transporters to the goldenseal-metformin interaction. Goldenseal extract and imatinib had no effect on metformin AUC and half-life, suggesting lack of inhibition of basolateral enteric/hepatic uptake transporters. Results may have implications for patients taking goldenseal with drugs that are substrates for OCT3 and THTR2.

Significance Statement Goldenseal is used to self-treat respiratory infections and digestive disorders. We investigated potential mechanisms for the clinical pharmacokinetic interaction observed between goldenseal and metformin, specifically inhibition by goldenseal of intestinal uptake transporters (OCT3, PMAT, THTR2) involved in metformin absorption. Goldenseal extract inhibited all three transporters in vitro and decreased metformin systemic exposure in mice. These data may have broader implications for patients co-consuming goldenseal with other drugs that are substrates for these transporters.

  • Absorption
  • Drug interactions
  • gastrointestinal tract
  • inhibition
  • natural products
  • pharmacokinetics
  • transporters
  • © 2023 The Authors. This is an open access article under the terms of the Creative Commons Attribution Non-Commercial License, which permits use, distribution, and reproduction in any medium, provided that the original work is properly cited and is not used for commercial purposes.
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Drug Metabolism and Disposition: 51 (10)
Drug Metabolism and Disposition
Vol. 51, Issue 10
1 Oct 2023
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OtherArticle

Mechanistic study of the PK goldenseal-metformin interaction

Victoria O Oyanna, Kenisha Y Garcia-Torres, Baron J Bechtold, Katherine D Lynch, M Ridge Call, Miklós Horváth, Preston K Manwill, Tyler N Graf, Nadja B. Cech, Nicholas H. Oberlies, Mary F. Paine and John D. Clarke
Drug Metabolism and Disposition August 10, 2023, DMD-AR-2023-001360; DOI: https://doi.org/10.1124/dmd.123.001360

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OtherArticle

Mechanistic study of the PK goldenseal-metformin interaction

Victoria O Oyanna, Kenisha Y Garcia-Torres, Baron J Bechtold, Katherine D Lynch, M Ridge Call, Miklós Horváth, Preston K Manwill, Tyler N Graf, Nadja B. Cech, Nicholas H. Oberlies, Mary F. Paine and John D. Clarke
Drug Metabolism and Disposition August 10, 2023, DMD-AR-2023-001360; DOI: https://doi.org/10.1124/dmd.123.001360
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