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Published on: May 14, 2016
Selective antiproliferative effect of C-2 halogenated 13α-estrones on cells expressing Organic anion-transporting
Réka Laczkó-Rigó1, Éva Bakos1, Rebeka Jójárt2
1Institute of Enzymology, Research Centre for Natural Sciences, Eötvös Loránd Research Center, Magyar tudósok körútja 2, H-1117 Budapest, Hungary.
Abstract:
Organic anion-transporting polypeptide 2B1 (OATP2B1) is a multispecific transporter mediating the cellular uptake of steroids and numerous drugs. OATP2B1 is abundantly expressed in the intestine and is also present in various tumors. Increased steroid hormone uptake by OATP2B1 has been suggested to promote progression of hormone dependent tumors. 13α-estrones are effective inhibitors of endogenous estrogen formation and are potential candidates to inhibit proliferation of hormone dependent cancers. Recently, we have identified a variety of 13α/β-estrone-based inhibitors of OATP2B1. However, the nature of this interaction, whether these inhibitors are potential transported substrates of OATP2B1 and hence may be enriched in OATP2B1-overexpressing cells, has not yet been investigated. In the current study we explored the antiproliferative effect of the most effective OATP2B1 inhibitor 13α/β-estrones in control and OATP2B1-overexpressing A431 carcinoma cells. We found an increased antiproliferative effect of 3-O-benzyl 13α/β-estrones in both mock transfected and OATP2B1-overexpressing cells. However, C-2 halogenated 13α-estrones had a selective OATP2B1-mediated cell growth inhibitory effect. In order to demonstrate that increased sensitization can be attributed to OATP2B1-mediated cellular uptake, tritium labeled 2-bromo-13α-estrone was synthesized for direct transport measurements. These experiments revealed increased accumulation of [3H]2-bromo-13α-estrone due to OATP2B1 function. Our results indicate that C-2 halogenated 13α-estrones are good candidates in the design of anti-cancer drugs targeting OATP2B1.
Insights
C-2 halogenated 13α-estrones selectively inhibit cancer cell growth by targeting the OATP2B1 transporter. This transporter mediates drug uptake, suggesting these compounds are promising for developing targeted anti-cancer therapies.
Area of Science:
- Pharmacology
- Oncology
- Molecular Biology
Background:
- Organic anion-transporting polypeptide 2B1 (OATP2B1) facilitates cellular uptake of steroids and drugs, and is implicated in hormone-dependent tumor progression.
- 13α-estrones are potential inhibitors of hormone-dependent cancers by blocking estrogen formation.
Purpose of the Study:
- To investigate the antiproliferative effects of 13α/β-estrone derivatives on OATP2B1-overexpressing cancer cells.
- To determine if OATP2B1 mediates the cellular uptake and growth inhibitory effects of these estrone derivatives.
Main Methods:
- Comparing the antiproliferative activity of 13α/β-estrones in control and OATP2B1-overexpressing A431 carcinoma cells.
- Synthesizing tritium-labeled 2-bromo-13α-estrone for direct transport assays.
- Measuring the accumulation of [3H]2-bromo-13α-estrone in cells to confirm OATP2B1-mediated uptake.
Main Results:
- 3-O-benzyl 13α/β-estrones showed increased antiproliferative effects in both cell types.
- C-2 halogenated 13α-estrones demonstrated selective OATP2B1-mediated growth inhibition.
- [3H]2-bromo-13α-estrone accumulation was significantly increased in OATP2B1-overexpressing cells, confirming OATP2B1-mediated uptake.
Conclusions:
- C-2 halogenated 13α-estrones exhibit selective anti-cancer activity by leveraging OATP2B1-mediated uptake.
- These compounds represent promising candidates for designing novel anti-cancer drugs targeting OATP2B1.
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