Drug-interaction between paclitaxel and goshajinkigan extract and its constituents

Author:

Nakayama Akiko,Tsuchiya Kazuaki,Xu Lingyu,Matsumoto Takashi,Makino ToshiakiORCID

Abstract

AbstractPaclitaxel, a standard chemotherapeutic agent for several types of cancer, including ovarian, breast, and non-small-cell lung cancer, causes peripheral neuropathy as an adverse effect in 60–70% of the patients. The utility of combination therapy with paclitaxel and goshajinkigan, a traditional Japanese Kampo medicine, in managing paclitaxel-induced neuropathy during chemotherapy has been explored. Paclitaxel is predominantly metabolized in the liver by cytochrome P450 (CYP) 2C8 to produce 6α-hydroxypaclitaxel and by CYP3A4 to produce 3′-p-hydroxypaclitaxel. In this study, we evaluated the inhibitory or inducing effects of goshajinkigan extract (GJG) and its representative and bioavailable constituents, geniposidic acid, plantagoguanidinic acid, paeoniflorin, catalpol, loganin, and neoline, on the metabolism of paclitaxel via CYP2C8 and CYP3A4 using pooled human liver microsomes and cultured human cryopreserved hepatocytes to provide the drug information about the pharmacokinetic interaction of this combination therapy. GJG significantly inhibited the production of 3’-p-hydroxypaclitaxel and 6α-hydroxypaclitaxel in vitro in a concentration-dependent manner. The half maximal inhibitory concentration (IC50) values of GJG were 4.5 and 7.8 mg/ml, respectively, for 3′-p-hydroxypaclitaxel and 6α-hydroxypaclitaxel productions. Neoline inhibited the production of 3′-p-hydroxypaclitaxel at 50 μM, but not at lower concentrations. Apart from neoline, other GJG constituents (at concentrations up to 50 or 10 μM of all test substances) did not exhibit inhibitory or inducing effects. Since GJG showed the inhibitory effect on the metabolism of paclitaxel at much higher concentrations than those used clinically, it can be concluded that GJG product does not exhibit any pharmacokinetic interaction with paclitaxel in clinical practice. Graphic abstract

Funder

Tsumura and Company

Publisher

Springer Science and Business Media LLC

Subject

Molecular Medicine

Reference30 articles.

1. Farrar MC, Jacobs TF (2021) Paclitaxel. StatPearls Publishing, Treasure Island

2. Staff NP, Fehrenbacher JC, Caillaud M, Damaj MI, Segal RA, Rieger S (2020) Pathogenesis of paclitaxel-induced peripheral neuropathy: a current review of in vitro and in vivo findings using rodent and human model systems. Exp Neurol 324:113121. https://doi.org/10.1016/j.expneurol.2019.113121

3. Yamamoto T, Murai T, Ueda M, Katsuura M, Oishi M, Miwa Y, Okamoto Y, Uejima E, Taguchi T, Noguchi S, Kurokawa N (2009) Clinical features of paclitaxel-induced peripheral neuropathy and role of Gosya-jinki-gan. Jap J Cancer Chemother 36:89–92

4. ISO/TR23022:2018 (2018) Traditional Chinese medicine—Controlled vocabulary index on Japanese Kampo formulas and indication codes for products. International Organization for Standardization, Geneva

5. The Japan Society for Oriental Medicine (2005) Introduction to KAMPO—Japanese Traditional Medicine. Elsevier, Tokyo

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