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Defining the role of echinocandin catechol functional groups in the development of secondary hepatocellular carcinoma
Justin M Julius1, Anjali Gaikwad, Amy Lowry
1Division of Pharmacy, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA.
Objectives:
To determine whether the catechol functional group on echinocandins decreases the catechol-O-methyltransferase (COMT) metabolism of catechol oestrogens (CEs) and the potential role of this functional group in the development of hepatocellular cancer.
Methods:
Human COMT expression was measured by RT-PCR in a panel of selected human cancer cell lines and human hepatocytes. An ex vivo human hepatocyte model was employed to evaluate the metabolism of 17-β-oestradiol to CEs in the presence of a catechol (B(0)C) versus a non-catechol echinocandin (B(0)) compound. COMT inhibition assays were conducted to evaluate the metabolism of CEs in the presence of B(0)C or B(0). Oestrogen receptor expression in human hepatic carcinoma cells was evaluated by RT-PCR and western blotting. Cell proliferation assays were used to evaluate the impact of B(0) or B(0)C on cancer cell growth.
Results:
MCF-7 and Hep-G2 cells and human hepatocytes expressed variant Met/Met COMT. At clinically relevant concentrations, only B(0)C significantly increased CE levels in the COMT inhibition assays, to 90.0 μM compared with 79.8 μM in the untreated controls (P = 0.032). A high concentration (500 μg/mL) of B(0)C decreased COMT expression to 79%, 94% and 90% of untreated, baseline control levels in the three cell lines, respectively. B(0)C and B(0) did not increase cell growth in the cancer cell lines evaluated.
Conclusions:
At clinically achievable concentrations only B(0)C significantly inhibited COMT activity and increased CE concentrations. Short-term exposure did not alter the rate of cancer cell growth. Confirmation is needed to determine the clinical impact of long-term exposure to and the use of echinocandins with catechol functional groups.
Insights
The echinocandin B(0)C, with a catechol group, inhibits catechol-O-methyltransferase (COMT) metabolism of catechol oestrogens (CEs). Short-term exposure did not affect cancer cell growth, but long-term effects require further study.
Area of Science:
- Pharmacology
- Biochemistry
- Oncology
Background:
- Catechol oestrogens (CEs) are metabolized by catechol-O-methyltransferase (COMT).
- Echinocandins are antifungal agents, some possessing a catechol functional group.
- The interaction between echinocandins, COMT, and cancer development is not fully understood.
Purpose of the Study:
- To investigate if the catechol group on echinocandins affects COMT metabolism of CEs.
- To explore the role of this functional group in hepatocellular cancer development.
Main Methods:
- Human COMT expression was analyzed in cancer cell lines and hepatocytes via RT-PCR.
- An ex vivo hepatocyte model assessed CE metabolism with catechol (B(0)C) and non-catechol (B(0)) echinocandins.
- COMT inhibition assays, oestrogen receptor analysis, and cell proliferation assays were performed.
Main Results:
- B(0)C significantly increased CE levels at clinically relevant concentrations.
- High concentrations of B(0)C reduced COMT expression in tested cell lines.
- Neither B(0)C nor B(0) demonstrated an increase in cancer cell growth during short-term exposure.
Conclusions:
- Clinically achievable concentrations of B(0)C inhibit COMT activity, leading to increased CE concentrations.
- Short-term exposure to B(0)C does not impact cancer cell proliferation.
- Further research is necessary to ascertain the clinical implications of long-term echinocandin exposure with catechol groups.
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