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Folate targeting enables durable and specific antitumor responses from a therapeutically null tubulysin B analogue
Christopher P Leamon1, Joseph A Reddy, Marilynn Vetzel
1Endocyte, Inc., West Lafayette, Indiana 47906, USA. Chrisleamon@endocyte.com
Abstract:
The membrane-bound high-affinity folate receptor (FR) is highly expressed on a wide range of primary and metastatic human cancers, such as those originating in ovary, lung, breast, endometrium, kidney, and brain. Because folate-linked conjugates bind to and become internalized within FR-expressing cells (similar to that of free folic acid), we explored the possibility of using the folate ligand to target a potent, semisynthetic analogue of the microtubule inhibitor tubulysin B to FR-enriched tumors. When tested in vitro, a novel folate conjugate, herein referred to as EC0305, was found to specifically inhibit the growth of a panel of FR-positive cell lines (IC50 range, 1-10 nmol/L) in a dose-dependent manner, whereas cells lacking FR expression were unaffected. The potency of EC0305 was also confirmed against a human KB xenograft-nu/nu mouse cancer model. Here, a brief three times per week, 2-week regimen yielded remarkable antitumor activity (100% tumor-free animals) without causing significant weight loss or major organ tissue degeneration. In contrast, antitumor activity was completely abolished in EC0305-treated animals that were co-dosed with an excess of a nontoxic folate-containing analogue, thereby confirming that the antitumor effect of this agent was mediated by FRs. The advantage provided by folate conjugation was further proved by the untargeted free drug, which was found to be completely inactive at both tolerable and highly toxic dose levels. Collectively, these results show that this potent antiproliferative tubulysin compound can be specifically delivered to FR-positive tumors to provide substantial therapeutic benefit using well-tolerable dosing regimens.
Insights
Researchers developed EC0305, a novel folate conjugate targeting cancer cells expressing folate receptors (FR). This drug effectively inhibited FR-positive tumor growth in vitro and in vivo, demonstrating significant therapeutic potential with minimal toxicity.
Area of Science:
- Oncology
- Pharmacology
- Drug Delivery
Background:
- The high-affinity folate receptor (FR) is overexpressed in various human cancers, including ovarian, lung, breast, and brain tumors.
- Folate receptor-mediated endocytosis offers a potential pathway for targeted drug delivery to cancer cells.
Purpose of the Study:
- To investigate the potential of using folate conjugation to deliver a potent tubulysin B analogue (EC0305) to FR-enriched tumors.
- To evaluate the efficacy and specificity of EC0305 in preclinical cancer models.
Main Methods:
- Synthesis and in vitro testing of the novel folate conjugate EC0305 against FR-positive and FR-negative cancer cell lines.
- In vivo efficacy studies using a human KB xenograft mouse model treated with EC0305.
- Assessment of EC0305's mechanism of action through competitive binding assays with a folate analogue.
Main Results:
- EC0305 demonstrated potent, dose-dependent inhibition of FR-positive cell lines (IC50: 1-10 nmol/L) with no effect on FR-negative cells.
- A short treatment regimen of EC0305 in mice resulted in 100% tumor-free animals without significant toxicity.
- Antitumor activity was abrogated by co-administration of a free folate analogue, confirming FR-mediated targeting.
Conclusions:
- Folate conjugation enables specific delivery of potent tubulysin analogues to FR-positive tumors.
- EC0305 exhibits significant therapeutic potential against FR-expressing cancers with well-tolerable dosing.
- Targeted delivery via folate receptors represents a promising strategy for enhancing anticancer drug efficacy.
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