移植
免疫抑制
抗体
抗原
结合
效力
细胞毒性
免疫学
化学
免疫系统
B细胞
癌症研究
抗体依赖性细胞介导的细胞毒性
ABO血型系统
免疫疗法
双特异性抗体
医学
器官移植
同种抗体
移植排斥反应
细胞
抗原提呈细胞
细胞培养
免疫球蛋白G
T细胞
药理学
免疫耐受
作者
Hyeong Ryeol Choi,Honglin Piao,Shafrizal Rasyid Atriardi,In Kang,Tae Kyung Chang,Serin Kim,Joon Young Jang,Gwang-Min Lee,Kyeong Cheon Jung,Hanifah Mardhiyah,Fazsa Islamianti Machmud,Jin Park,Sang Kook Woo,Jaeseok Yang,Chan Hyuk Kim
出处
期刊:Blood
[Elsevier BV]
日期:2026-01-07
卷期号:147 (17): 1928-1940
被引量:1
标识
DOI:10.1182/blood.2025030660
摘要
ABSTRACT: Organ transplantation is a pivotal treatment for patients with organ failure. ABO-incompatible (ABOi) transplantation, developed to expand the donor pool, presents significant clinical challenges due to preexisting antibodies targeting ABO antigens on donor organs. Current therapies using broad B-cell depletion, such as rituximab, effectively reduce antibody-mediated rejection but increase infection risks. Therefore, there is a critical need for targeted methods to specifically eliminate ABO-responsive B cells. Here, we developed a novel bispecific antibody-ligand conjugate (BiALC) platform designed to selectively target ABO-responsive B cells. Using synthetic trisaccharide A antigens conjugated to T-cell-recruiting Fab fragments, our optimized hexameric construct, (A3-peg)2-αCD3, demonstrated enhanced affinity and potent cytotoxicity specifically against type A antigen-responsive B cells. Notably, BiALC maintained robust efficacy even in the presence of circulating anti-A antibodies. In murine models, (A3-peg)2-αCD3 selectively depleted A-responsive B cells without broadly affecting total immunoglobulin M-positive (IgM+) and IgG+ B-cell populations, preserving overall immune competence. Similarly, the human-compatible BiALC, (A3-peg)2-αhCD3, effectively and selectively depleted type A-responsive B cells from human peripheral blood mononuclear cells, with potency comparable with that of rituximab, while sparing total antibody-secreting cells. Overall, the BiALC strategy offers a promising antigen-specific approach to reduce rejection risks in ABOi transplantation without inducing broad immunosuppression through nonspecific pan-B-cell depletion, supporting its potential for clinical translation.
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