Inhibition of Radix Scutellariae flavones on carboxylesterase mediated activations of prodrugs

Life Sci. 2022 Sep 15:305:120743. doi: 10.1016/j.lfs.2022.120743. Epub 2022 Jul 1.

Abstract

Aims: Carboxylesterase (CES) plays an essential role in the hydrolysis of ester prodrugs. Our study explored the inhibitions of Radix Scutellariae flavones, including baicalein (B), baicalin (BG), wogonin (W), wogonoside (WG), oroxylin A (OXA) and oroxylin A-7-O-glucuronide (OAG), on CES-mediated hydrolysis of seven prodrugs (capecitabine, clopidogrel, mycophenolate mofetil, dabigatran etexilate, acetylsalicylic acid, prasugrel and irinotecan).

Main methods: In vitro screenings were developed by incubating the flavones with prodrugs in rat plasma, intestine S9 and liver S9. Docking simulations were conducted using AMDock v1.5.2. In vivo evaluations were performed in rats co-administered with the selected flavone and prodrug via oral gavage/intravenous administration for five consecutive days.

Key findings: The in vitro investigation showed that B and OXA demonstrated strongest inhibitions on the hydrolysis of irinotecan followed by dabigatran in rat plasma, intestine S9 and liver S9. Consistent results showed in the molecular docking analyses. Additionally, in rats receiving irinotecan, B/OXA intravenous and oral pre-treatments both led to reduction trends on the active metabolite SN-38 formation in plasma. Besides, significant decreases of SN-38/irinotecan plasma concentration ratios were found in the B/OXA oral pre-treatment group with quicker and stronger inhibition potential in OXA pre-treatment than that from B pre-treatment. OXA oral pre-treatment was also found to be able to significantly inhibit intestinal CES2 activities at 0.5 h and 5 h after irinotecan administration.

Significance: Our current findings for the first time alert on potential CES-mediated HDIs between RS flavones and prodrugs, which provide a constructive information referring to rational drug combinations in clinical practice.

Keywords: Baicalein; Carboxylesterase; Irinotecan; Oroxylin A; Prodrug; Radix Scutellariae.

MeSH terms

  • Animals
  • Carboxylesterase
  • Dabigatran
  • Flavones* / pharmacology
  • Irinotecan / pharmacology
  • Molecular Docking Simulation
  • Prodrugs* / pharmacology
  • Rats
  • Scutellaria baicalensis
  • Scutellaria*

Substances

  • Flavones
  • Prodrugs
  • Irinotecan
  • Carboxylesterase
  • Dabigatran