Publications by authors named "Christopher M Arian"

The natural product goldenseal is a clinical inhibitor of CYP3A activity, as evidenced by a 40%-60% increase in midazolam area under the plasma concentration versus time curve (AUC) after coadministration with goldenseal. The predominant goldenseal alkaloids berberine and (-)--hydrastine were previously identified as time-dependent CYP3A inhibitors using human liver microsomes. Whether these alkaloids contribute to the clinical interaction, as well as the primary anatomic site (hepatic vs.

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The intestine has important gate-keeping functions that can profoundly affect the systemic blood exposure of orally administered drugs. Thus, characterizing a new molecular entity's (NME) disposition within the intestine is of utmost importance in drug development. While currently used in vitro systems, such as Ussing chamber, precision-cut intestinal slices, immortalized cell lines, and primary enterocytes provide substantial knowledge about drug absorption and the intestinal first-pass effect, they remain sub-optimal for quantitatively predicting this process and the oral bioavailability of many drugs.

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The botanical natural product goldenseal can precipitate clinical drug interactions by inhibiting cytochrome P450 (CYP) 3A and CYP2D6. Besides P-glycoprotein, effects of goldenseal on other clinically relevant transporters remain unknown. Established transporter-expressing cell systems were used to determine the inhibitory effects of a goldenseal extract, standardized to the major alkaloid berberine, on transporter activity.

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Synopsis of recent research by authors named "Christopher M Arian"

  • Christopher M Arian's recent research primarily focuses on the pharmacokinetic interactions of natural products, particularly goldenseal, with pharmaceutical drugs like midazolam and the implications for drug disposition in clinical settings.
  • His work employs in vitro assays and physiologically based pharmacokinetic models to elucidate how components of goldenseal, such as berberine, can alter drug metabolism and transportation processes involving key enzymes like CYP3A and transporters like P-glycoprotein.
  • Additionally, Arian emphasizes the need for improved in vitro models to better predict oral drug bioavailability and interactions, advocating for advancements in intestinal drug disposition research to enhance drug development outcomes.