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U3-1402 sensitizes HER3-expressing tumors to PD-1 blockade by immune activation
Koji Haratani1, Kimio Yonesaka1, Shiki Takamura2
1Department of Medical Oncology.
Abstract:
Immunotherapy targeting programmed cell death-1 (PD-1) induces durable antitumor efficacy in many types of cancer. However, such clinical benefit is limited because of the insufficient reinvigoration of antitumor immunity with the drug alone; therefore, rational therapeutic combinations are required to improve its efficacy. In our preclinical study, we evaluated the antitumor effect of U3-1402, a human epidermal growth factor receptor 3-targeting (HER3-targeting) antibody-drug conjugate, and its potential synergism with PD-1 inhibition. Using a syngeneic mouse tumor model that is refractory to anti-PD-1 therapy, we found that treatment with U3-1402 exhibited an obvious antitumor effect via direct lysis of tumor cells. Disruption of tumor cells by U3-1402 enhanced the infiltration of innate and adaptive immune cells. Chemotherapy with exatecan derivative (Dxd, the drug payload of U3-1402) revealed that the enhanced antitumor immunity produced by U3-1402 was associated with the induction of alarmins, including high-mobility group box-1 (HMGB-1), via tumor-specific cytotoxicity. Notably, U3-1402 significantly sensitized the tumor to PD-1 blockade, as a combination of U3-1402 and the PD-1 inhibitor significantly enhanced antitumor immunity. Further, clinical analyses indicated that tumor-specific HER3 expression was frequently observed in patients with PD-1 inhibitor-resistant solid tumors. Overall, U3-1402 is a promising candidate as a partner of immunotherapy for such patients.
Insights
U3-1402, a HER3-targeting antibody-drug conjugate, shows antitumor effects and enhances immune cell infiltration. Combining U3-1402 with PD-1 blockade improves antitumor immunity in resistant tumors.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Programmed cell death-1 (PD-1) immunotherapy offers durable antitumor efficacy but is limited by insufficient immune response.
- Rational therapeutic combinations are crucial to enhance PD-1 inhibition efficacy.
Purpose of the Study:
- To evaluate the antitumor effect of U3-1402, a HER3-targeting antibody-drug conjugate.
- To assess the synergistic potential of U3-1402 with PD-1 inhibition in preclinical cancer models.
Main Methods:
- Utilized a syngeneic mouse tumor model resistant to anti-PD-1 therapy.
- Administered U3-1402 and/or PD-1 inhibitor.
- Analyzed immune cell infiltration and tumor cell lysis.
- Correlated U3-1402's effects with alarmin induction (HMGB-1).
- Performed clinical analyses of HER3 expression in PD-1 inhibitor-resistant tumors.
Main Results:
- U3-1402 demonstrated significant antitumor activity through direct tumor cell lysis.
- U3-1402 treatment increased innate and adaptive immune cell infiltration.
- Enhanced antitumor immunity was linked to alarmin induction (HMGB-1) by U3-1402.
- Combination therapy of U3-1402 and PD-1 inhibitor showed significant synergistic antitumor effects.
- Clinical data revealed frequent tumor-specific HER3 expression in PD-1 inhibitor-resistant solid tumors.
Conclusions:
- U3-1402 exhibits potent antitumor effects and enhances anti-PD-1 therapy efficacy.
- U3-1402 shows promise as a combination partner for immunotherapy in HER3-expressing, PD-1-resistant cancers.
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