Mechanisms of enhanced oral availability of CYP3A4 substrates by grapefruit constituents: Decreased enterocyte CYP3A4 concentration and mechanism-based inactivation by furanocoumarins

Механизмы повышения пероральной биодоступности субстратов CYP3A4 под действием компонентов грейпфрута: снижение концентрации CYP3A4 в энтероцитах и механизм-обусловленная инактивация фуранокумаринами
Kan He, Atiqur Rahman, Patrick M. Woster, Kenneth E. Thummel, Paul B. Watkins, Jeannine M. Fisher, Paul F. Hollenberg, David Edwards, Michael E. Fitzsimmons, Kenneth S. Lown, Phyllissa Schmiedlin‐Ren
2019-08-17

6',7'-dihydroxybergamottinCYP3A4 substratesfuranocoumarinsgrapefruit juicemechanism-based inactivation
Grapefruit juice increases the oral availability of a variety of CYP3A4 substrates. It has been shown that recurrent grapefruit juice ingestion results in a loss of CYP3A4 from the small bowel epithelium. We now show that the reduction in intestinal CYP3A4 concentration is rapid; a 47% decrease occurred in a healthy volunteer within 4 hr after consuming grapefruit juice. To identify the specific components of the juice responsible for this effect, we used a recently developed Caco-2 cell culture model of human intestinal epithelium that expresses catalytically active CYP3A4. We found that grapefruit oil and two furanocoumarin constituents (6*,7*-dihydroxybergamottin and a closely related dimer) caused a dose-dependent fall in CYP3A4 catalytic activity and immunoreactive CYP3A4 concentration. The effect was selective in that concentrations of CYP1A1 and CYP2D6 did not fall, consistent with previous results obtained in vivo. Assays of various juices confirmed that 6*,7*-dihydroxybergamottin is the major furanocoumarin present and, although its concentration varies significantly among types and brands of grapefruit juice, it is consistently present in concentrations exceeding the IC50 (1 mM) for loss of midazolam 1*-hydroxylase activity determined in the Caco-2 cells. Studies with recombinant CYP3A4 revealed that 6*,7*-dihydroxybergamottin is a mechanism-based inactivator, which supports the idea that loss of CYP3A4 results from accelerated degradation of the enzyme. We conclude that the effect of grapefruit juice on oral availability of CYP3A4 substrates can be largely accounted for by the presence of 6*,7*-dihydroxybergamottin although other furanocoumarins probably also contribute.
1
6′,7′-Dihydroxybergamottin is consistently present in grapefruit juices above the 1 mM IC50 for inhibiting midazolam 1′-hydroxylase activity, despite substantial variation among products.
2
6′,7′-Dihydroxybergamottin mechanism-based inactivates recombinant CYP3A4, supporting accelerated enzyme degradation as the mechanism underlying increased oral availability of CYP3A4 substrates; other furanocoumarins may also contribute.
3
Grapefruit juice rapidly reduces intestinal CYP3A4 concentration, with a 47% decrease observed in a healthy volunteer within four hours.
4
Grapefruit oil and the furanocoumarins 6′,7′-dihydroxybergamottin and a related dimer dose-dependently decrease CYP3A4 activity and immunoreactive protein in Caco-2 cells.
5
The effect is selective for CYP3A4, because CYP1A1 and CYP2D6 concentrations do not decrease under the tested conditions.

Intestinal CYP3A4 and its grapefruit-juice constituents, particularly the furanocoumarin 6′,7′-dihydroxybergamottin

Grapefruit-constituent-induced loss of enterocyte CYP3A4 through reduced enzyme concentration, catalytic inhibition, and mechanism-based inactivation, leading to enhanced oral availability of CYP3A4 substrates

Publication Details
Publication Date
2019-08-17
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Kan He
Atiqur Rahman
Patrick M. Woster
Kenneth E. Thummel
Paul B. Watkins
Jeannine M. Fisher
Paul F. Hollenberg
David Edwards
Michael E. Fitzsimmons
Kenneth S. Lown
Phyllissa Schmiedlin‐Ren
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%