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. 2022 Dec 6;7(6):100650. doi: 10.1016/j.esmoop.2022.100650

Table 2.

Interaction between HFDS and anticancer treatments found in the study with the application

Patient’s study number HFDS Cancer treatment CYP involved CYP modification Level Supervised Auto-implementation Food questionnaire HFDS type HFDI category
3 Green tea Vinorelbine CYP3A Inhibition 3 Yes No No Herb Probable
30 Green tea Paclitaxel CYP3A Inhibition 3 No Yes Yes Food Probable
Licorice Paclitaxel CYP3A Induction 1 No Yes Yes Food Probable
36 Green tea Letrozole CYP3A Inhibition 3 No Yes Yes Food Probable
38 Cranberry Paclitaxel CYP3A Inhibition 2 No Yes Yes Food Probable
Grapefruit Paclitaxel CYP3A Inhibition 1 No Yes Yes Food Probable
40 Coffee Cyclophosphamide CYP1A2 Inhibition 2 No Yes Yes Food Probable
44 Green tea Trastuzumab-emtansine CYP3A Inhibition 3 No Yes Yes Food Probable
46 Green tea Paclitaxel CYP3A Inhibition 3 No Yes Yes Food Probable
55 Coffee Cyclophosphamide CYP1A2 Inhibition 2 No Yes Yes Food Probable
60 Peppermint Lenvatinib CYP3A Inhibition 2 No Yes No Herb Probable
Green tea Lenvatinib CYP3A Inhibition 2 No Yes Yes Food Probable
71 Grapefruit Dexamethasone CYP3A Inhibition 1 Yes Yes Yes Food Probable
73 Cranberry Lapatinib CYP3A Inhibition 2 No Yes Yes Food Probable
78 Green tea Ibrutinib CYP3A Inhibition 3 Yes Yes Yes Food Probable
79 Green tea Vinblastine CYP3A Inhibition 3 Yes Yes Yes Food Probable
Pomelo Vinblastine CYP3A Inhibition 3 Yes Yes Yes Food Probable
85 Coffee Cyclophosphamide CYP1A2 Inhibition 2 Yes Yes Yes Food Probable
87 Green tea Vinblastine CYP3A Inhibition 3 No Yes Yes Food Probable
Pomelo Vinblastine CYP3A Inhibition 3 No Yes Yes Food Probable
Grapefruit Vinblastine CYP3A Inhibition 1 No Yes Yes Food Probable
89 Coffee Cyclophosphamide CYP1A2 Inhibition 2 No Yes Yes Food Probable

The scale for the HFDS level of evidence of interaction with cytochromes is available in Supplementary Table S1, available at https://doi.org/10.1016/j.esmoop.2022.100650, and has been reported in a previous study.13 Version 2 of the application allowed both auto-implementation and the acquisition of CYP-interacting food through a specific food questionnaire. In version 2 of the application, food–drug interactions could be detected either through the general questionnaire or the specific food questionnaire.

CYP, cytochrome P-450; HFDI, herb and food–drug interaction; HFDS, herb, food and dietary supplements.