4.5 Article

A HER2-targeted antibody-novel DNA topoisomerase I inhibitor conjugate induces durable adaptive antitumor immunity by activating dendritic cells

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MABS
卷 15, 期 1, 页码 -

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TAYLOR & FRANCIS INC
DOI: 10.1080/19420862.2023.2220466

关键词

Adaptive antitumor immunity; antibody-drug conjugate; damage-associated molecular patterns; DNA topoisomerase I inhibitor; immunogenic cell death

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We designed and developed a novel DNA topoisomerase I inhibitor MF-6, which demonstrated stronger cytotoxicity and inducible immunogenic cell death compared to DXd. To harness MF-6's ability to induce antitumor immunity, we developed a HER2-targeted antibody-drug conjugate (ADC) called trastuzumab-L6, which included a cleavable linker and MF-6. Trastuzumab-L6 exhibited enhanced antitumor efficacy by inducing immune response, activating dendritic cells and cytotoxic CD8+ T cells to acquire adaptive immune memory.
We designed and developed a novel DNA topoisomerase I inhibitor MF-6, which was a more potent cytotoxin and a more potent inducer of immunogenic cell death compared with DXd. To utilize MF-6's ability to induce antitumor immunity, a human epidermal growth factor receptor 2 (HER2)-targeted antibody-drug conjugate (ADC) trastuzumab-L6 that included a cleavable linker and MF-6 was developed. Different from traditional cytotoxic ADC, the antitumor activity of trastuzumab-L6 was assessed by inducing tumor cell immunogenic cell death, activating dendritic cells and cytotoxic CD8+ T cells to acquire durable adaptive immune memory. Tumor cells treated with trastuzumab-L6 were committed to immunogenic cell death, with upregulation of damage-associated molecular patterns and antigen presentation molecules. In a syngeneic tumor model with a mouse cell line that expressed human HER2, immunocompetent mice showed greater antitumor efficacy compared with nude mice. The trastuzumab-L6-cured immunocompetent mice acquired adaptive antitumor memory and rejected subsequent tumor cell challenge. The trastuzumab-L6 efficacy was abrogated when cytotoxic CD8+ T cells were depleted and enhanced when regulatory CD4+ T cells were depleted. The combination of trastuzumab-L6 with immune checkpoint inhibitors significantly increased antitumor efficacy. Enhanced T cell infiltration, dendritic cell activation, and decreased type M2 macrophages in tumor post trastuzumab-L6 administration confirmed the immune-activating responses. In conclusion, trastuzumab-L6 was considered to be an immunostimulatory agent, rather than a traditional cytotoxic ADC, and its antitumor efficacy was enhanced when combined with an anti-PD-L1 and anti-CTLA-4 antibody, which suggested a potential therapeutic strategy.

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