As mesothelin is overexpressed in various types of cancer, it is an attractive target for therapeutic antibodies. T-cell bispecific antibodies bind to target cells and engage T cells via binding to CD3, resulting in target cell killing by T-cell activation. However, the affinity of the CD3-binding arm may influence CD3-mediated plasma clearance or antibody trapping in T-cell-containing tissues. This may then affect the biodistribution of bispecific antibodies. In this study, we used scFab and knob-into-hole technologies to construct novel IgG-based 1 + 1 MG1122-A and 2 + 1 MG1122-B bispecific antibodies against mesothelin and CD3ε. MG1122-B was designed to be bivalent to mesothelin and monovalent to CD3ε, using a 2 + 1 head-to-tail format. Activities of the two antibodies were evaluated in mesothelin-positive tumor cells in vitro and xenograft models in vivo. Although both antibodies exhibited target cell killing efficacy and produced regression of xenograft tumors with CD8+ T-cell infiltration, the antitumor efficacy of MG1122-B was significantly higher. MG1122-B may improve tumor targeting because of its bivalency for tumor antigen. It may also reduce systemic toxicity by limiting the activation of circulating T cells. Thus, MG1122-B may be useful for treating mesothelin-positive solid tumors.
A Novel T Cell-Engaging Bispecific Antibody for Treating Mesothelin-Positive Solid Tumors.
一种用于治疗间皮素阳性实体瘤的新型T细胞结合双特异性抗体
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作者:Yoon Aerin, Lee Shinai, Lee Sua, Lim Sojung, Park Yong-Yea, Song Eunjung, Kim Dong-Sik, Kim Kisu, Lim Yangmi
| 期刊: | Biomolecules | 影响因子: | 4.800 |
| 时间: | 2020 | 起止号: | 2020 Mar 4; 10(3):399 |
| doi: | 10.3390/biom10030399 | 研究方向: | 细胞生物学 |
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