| Title : Substrate-dependent inhibition of hypericin on human carboxylesterase 2: implications for herb-drug combination - Wang_2022_Curr.Drug.Metab__ |
| Author(s) : Wang D , Zhao T , Zhao S , Chen J , Dou T , Ge G , Wang C , Sun H , Liu K , Meng Q , Wu J |
| Ref : Curr Drug Metab , : , 2022 |
|
Abstract :
BACKGROUND: Hypericin is the main active ingredient of St. John's wort, a Chinese herb commonly used in treating depression. Previous studies have shown that hypericin can strongly inhibit human cytochrome P450 (CYP) enzyme activities; however, its potential interactions that inhibit human carboxylesterases 2 (hCE2) were unclear. PURPOSE: The study aimed to investigate the inhibition of hypericin on hCE2. METHODS: The inhibition of hypericin on hCE2 was studied by using N-(2-butyl-1,3-dioxo-2,3-dihydro-1H-phenalen-6-yl)-2-chloroacetamide (NCEN). The type of inhibition of hypericin on hCE2 and the corresponding inhibition constant (Ki) value were determined. The inhibition of hypericin on hCE2 in living cells was discussed. The herb-drug interactions (HDI) risk of hypericin and hCE2 in vivo was predicted by estimating the drug concentration-time curve (AUC) ratio of hypericin and hypericin free. To understand the inhibition mechanism of hypericin on the activity of hCE2 in-depth, molecular docking was performed. RESULTS: The half-maximal inhibitory concentration (IC50) values of hypericin against the hydrolysis of NCEN and irinotecan (CPT-11) were calculated to be 26.59 microM and 112.8 microM, respectively. Hypericin inhibited the hydrolysis of NCEN and CPT-11. Their Ki values were 10.53 microM and 81.77 microM, respectively. Moreover, hypericin distinctly suppressed hCE2 activity in living cells. In addition, the AUC of hCE2 metabolic drugs with metabolic sites similar to NCEN was estimated to increase by up to 5%, in the presence of hypericin. More importantly, the exposure of CPT-11 in the intestinal epithelium was predicted to increase by 2%-69% following the oral co-administration of hypericin. Further, molecular simulations indicated that hypericin could strongly interact with ASP98, PHE307, and ARG355 to form four hydrogen bonds within hCE2. CONCLUSION: These findings are of considerable clinical significance to the combination of hypericin-containing herbs and drugs metabolized by hCE2. |
| PubMedSearch : Wang_2022_Curr.Drug.Metab__ |
| PubMedID: 35114918 |
Wang D, Zhao T, Zhao S, Chen J, Dou T, Ge G, Wang C, Sun H, Liu K, Meng Q, Wu J (2022)
Substrate-dependent inhibition of hypericin on human carboxylesterase 2: implications for herb-drug combination
Curr Drug Metab
:
Wang D, Zhao T, Zhao S, Chen J, Dou T, Ge G, Wang C, Sun H, Liu K, Meng Q, Wu J (2022)
Curr Drug Metab
: