Mehdi Mohammadi, Mahmood Jeddi-Tehrani, Forough Golsaz-Shirazi, Mohammad Arjmand, Fatemeh Torkashvand, Tannaz Bahadori, Mohammad Ali Judaki, Fariba Shiravi, Hengameh Ahmadi Zare, Farzaneh Notash Haghighat, Maryam Mobini, Fazel Shokri, Mohammad Mehdi Amiri
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We have recently developed an anti-HER2 bispecific mAb, BiHT, constructed from variable domains of trastuzumab, and our novel humanized anti-HER2 mAb, hersintuzumab. BiHT displayed promising antitumor activity as potently as the combination of the parental mAbs. Here, we aimed to modify the Fc of BiHT to improve its therapeutic efficacy. The Fc-engineered BiHT (MBiHT) bound to recombinant HER2 and its subdomains with an affinity similar to BiHT. It also recognized native HER2 on different cell lines, inhibited their proliferation, downregulated HER2 expression, and suppressed downstream signaling pathways similar to BiHT. Compared with BiHT, MBiHT displayed enhanced antibody-dependent cellular cytotoxicity activity against various tumor cell lines. It also inhibited the growth of ovarian xenograft tumors in nude mice more potently than BiHT. Our findings suggest that MBiHT could be a potent therapeutic candidate for the treatment of HER2-overexpressing cancer types.</p>","PeriodicalId":15996,"journal":{"name":"Journal of Immunotherapy","volume":"46 4","pages":"121-131"},"PeriodicalIF":3.2000,"publicationDate":"2023-05-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"A Novel Fc-Engineered Anti-HER2 Bispecific Antibody With Enhanced Antitumor Activity.\",\"authors\":\"Mehdi Mohammadi, Mahmood Jeddi-Tehrani, Forough Golsaz-Shirazi, Mohammad Arjmand, Fatemeh Torkashvand, Tannaz Bahadori, Mohammad Ali Judaki, Fariba Shiravi, Hengameh Ahmadi Zare, Farzaneh Notash Haghighat, Maryam Mobini, Fazel Shokri, Mohammad Mehdi Amiri\",\"doi\":\"10.1097/CJI.0000000000000464\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Human epidermal growth factor receptor 2 (HER2) overexpression has been demonstrated in a variety of cancers. 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It also recognized native HER2 on different cell lines, inhibited their proliferation, downregulated HER2 expression, and suppressed downstream signaling pathways similar to BiHT. Compared with BiHT, MBiHT displayed enhanced antibody-dependent cellular cytotoxicity activity against various tumor cell lines. It also inhibited the growth of ovarian xenograft tumors in nude mice more potently than BiHT. 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A Novel Fc-Engineered Anti-HER2 Bispecific Antibody With Enhanced Antitumor Activity.
Human epidermal growth factor receptor 2 (HER2) overexpression has been demonstrated in a variety of cancers. Targeted therapy with anti-HER2 monoclonal antibodies (mAbs) has been approved as a therapeutic modality. Despite the efficacy of mAbs in tumor treatment, many patients do not benefit from this therapeutic platform. Fragment crystallizable (Fc) engineering is a common approach to improve the efficacy of therapeutic mAbs. Five Fc-engineered mAbs have so far been approved by FDA. We have recently developed an anti-HER2 bispecific mAb, BiHT, constructed from variable domains of trastuzumab, and our novel humanized anti-HER2 mAb, hersintuzumab. BiHT displayed promising antitumor activity as potently as the combination of the parental mAbs. Here, we aimed to modify the Fc of BiHT to improve its therapeutic efficacy. The Fc-engineered BiHT (MBiHT) bound to recombinant HER2 and its subdomains with an affinity similar to BiHT. It also recognized native HER2 on different cell lines, inhibited their proliferation, downregulated HER2 expression, and suppressed downstream signaling pathways similar to BiHT. Compared with BiHT, MBiHT displayed enhanced antibody-dependent cellular cytotoxicity activity against various tumor cell lines. It also inhibited the growth of ovarian xenograft tumors in nude mice more potently than BiHT. Our findings suggest that MBiHT could be a potent therapeutic candidate for the treatment of HER2-overexpressing cancer types.
期刊介绍:
Journal of Immunotherapy features rapid publication of articles on immunomodulators, lymphokines, antibodies, cells, and cell products in cancer biology and therapy. Laboratory and preclinical studies, as well as investigative clinical reports, are presented. The journal emphasizes basic mechanisms and methods for the rapid transfer of technology from the laboratory to the clinic. JIT contains full-length articles, review articles, and short communications.