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Fibroblast Activation Protein α-Targeted CD40 Agonism Abrogates Systemic Toxicity and Enables Administration of High Doses to Induce Effective Antitumor Immunity

CD40 成纤维细胞活化蛋白 癌症研究 医学 药理学 免疫系统 免疫学 化学 癌症 内科学 体外 细胞毒性T细胞 生物化学
作者
Eva Sum,Moritz Rapp,Philipp Fröbel,Marine Le Clech,Harald Dürr,Anna Maria Giusti,Mario Perro,Dario Speziale,Leo Kunz,Elena Menietti,Peter Brünker,Ulrike Hopfer,Martin Lechmann,Andrzej Sobieniecki,Birte Appelt,Roberto Adelfio,Valeria Nicolini,Anne Freimoser–Grundschober,Whitney Jordaan,Sara Labiano,Felix Weber,Thomas Emrich,François Christen,Birgit Essig,Pedro Romero,Christine Trumpfheller,Pablo Umaña
出处
期刊:Clinical Cancer Research [American Association for Cancer Research]
卷期号:27 (14): 4036-4053 被引量:46
标识
DOI:10.1158/1078-0432.ccr-20-4001
摘要

Abstract Purpose: CD40 agonists hold great promise for cancer immunotherapy (CIT) as they enhance dendritic cell (DC) activation and concomitant tumor-specific T-cell priming. However, the broad expression of CD40 accounts for sink and side effects, hampering the efficacy of anti-CD40 antibodies. We hypothesized that these limitations can be overcome by selectively targeting CD40 agonism to the tumor. Therefore, we developed a bispecific FAP-CD40 antibody, which induces CD40 stimulation solely in presence of fibroblast activation protein α (FAP), a protease specifically expressed in the tumor stroma. Experimental Design: FAP-CD40's in vitro activity and FAP specificity were validated by antigen-presenting cell (APC) activation and T-cell priming assays. In addition, FAP-CD40 was tested in subcutaneous MC38-FAP and KPC-4662-huCEA murine tumor models. Results: FAP-CD40 triggered a potent, strictly FAP-dependent CD40 stimulation in vitro. In vivo, FAP-CD40 strongly enhanced T-cell inflammation and growth inhibition of KPC-4662-huCEA tumors. Unlike nontargeted CD40 agonists, FAP-CD40 mediated complete regression of MC38-FAP tumors, entailing long-term protection. A high dose of FAP-CD40 was indispensable for these effects. While nontargeted CD40 agonists induced substantial side effects, highly dosed FAP-CD40 was well tolerated. FAP-CD40 preferentially accumulated in the tumor, inducing predominantly intratumoral immune activation, whereas nontargeted CD40 agonists displayed strong systemic but limited intratumoral effects. Conclusions: FAP-CD40 abrogates the systemic toxicity associated with nontargeted CD40 agonists. This enables administration of high doses, essential for overcoming CD40 sink effects and inducing antitumor immunity. Consequently, FAP-targeted CD40 agonism represents a promising strategy to exploit the full potential of CD40 signaling for CIT.
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