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[Development of a Fundamental Technology to Seek Drug Targets, and Its Application to Cancer Targeting Therapy]
Kazuya Nagano1, Kazuma Higashisaka1, Shin-Ichi Tsunoda2,3
1Graduate School of Pharmaceutical Sciences, Osaka University.
Abstract:
Human epidermal growth factor receptor 2 (Her2)-targeting antibodies and anti-hormone therapy are effective for most breast cancer patients. However, such approaches are not viable with resistant cases or in triple-negative breast cancer (TNBC) patients, given the lack of Her2 and estrogen and progesterone receptors in these patients. Thus, new drug targets are urgently required. From this perspective, we searched for novel drug targets using proteomic analysis, and identified Eph receptor A10 (EphA10), which is elevated in breast cancer cells as compared to normal breast tissue. Here, we evaluated the potential of EphA10 as a drug target by analyzing its protein expression profile/function in cancer cells, and then by using an anti-EphA10 antibody to treat EphA10-expressing tumor-bearing mice. Protein expression profile analysis showed that EphA10 was expressed in various breast cancer subtypes, including TNBCs, with no expression observed in normal tissues, apart from the testes. Moreover, functional analysis of the cancer cells revealed that ligand-dependent proliferation was observed in EphA10-expressed cancer cells. Thus, we developed our novel anti-EphA10 antibody, which binds to EphA10 with high specificity and affinity at the nanomolar level. Finally, therapeutic analysis indicated that tumor growth was significantly suppressed in the mAb-treated mice in a dose-dependent manner. These results suggest that the EphA10-targeting therapy may be a novel therapeutic option for the management of breast cancer, including in TNBCs which aren't currently treated with molecular-targeted agents. Consequently, we hope that these findings will contribute to the development of a new targeting therapy for refractory breast cancer patients.
Insights
Researchers identified Eph receptor A10 (EphA10) as a novel drug target for breast cancer, including triple-negative breast cancer (TNBC). An anti-EphA10 antibody effectively suppressed tumor growth in mice, suggesting a new therapeutic option.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Current breast cancer therapies targeting Her2 or hormone receptors are ineffective for resistant cases and triple-negative breast cancer (TNBC).
- There is an urgent need for novel therapeutic targets for challenging breast cancer subtypes.
Purpose of the Study:
- To identify novel drug targets for breast cancer using proteomic analysis.
- To evaluate Eph receptor A10 (EphA10) as a potential therapeutic target for breast cancer, including TNBC.
- To develop and test an anti-EphA10 antibody for therapeutic efficacy.
Main Methods:
- Proteomic analysis to identify novel drug targets.
- Protein expression profiling and functional analysis of EphA10 in cancer cells.
- Development of a high-affinity anti-EphA10 antibody.
- In vivo therapeutic evaluation of the anti-EphA10 antibody in tumor-bearing mice.
Main Results:
- EphA10 was identified as a novel target, significantly elevated in breast cancer cells, including TNBC, compared to normal tissues (except testes).
- EphA10 expression correlated with ligand-dependent proliferation in cancer cells.
- A novel anti-EphA10 antibody demonstrated high specificity and affinity.
- Therapeutic administration of the anti-EphA10 antibody significantly suppressed tumor growth in a dose-dependent manner in mice.
Conclusions:
- EphA10 is a promising therapeutic target for various breast cancer subtypes, including TNBC.
- Anti-EphA10 antibody therapy represents a potential novel treatment strategy for refractory breast cancer.
- This research may lead to new targeted therapies for patients with limited treatment options.
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