CD154 blockade effectively controls antibody-mediated rejection in highly sensitized nonhuman primate kidney transplant recipients

免疫抑制 CD154 医学 他克莫司 钙调神经磷酸酶 免疫学 抗体 生发中心 移植 贝拉塔克普 免疫系统 肾移植 生物 B细胞 内科学 肾移植 CD40 细胞毒性T细胞 体外 生物化学
作者
Imran J. Anwar,Isabel DeLaura,Joseph M. Ladowski,Davide Schiliró,Qimeng Gao,Miriam Manook,Janghoon Yoon,Rafaela Belloni,Angela Park,Daniel J. Schuster,Mingqing Song,Lin Lin,Alton B. Farris,Diogo M. Magnani,Kyha Williams,Jean Kwun,Stuart J. Knechtle
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:17 (779): eadn8130-eadn8130 被引量:9
标识
DOI:10.1126/scitranslmed.adn8130
摘要

Current desensitization and maintenance immunosuppression regimens for kidney transplantation in sensitized individuals show limited ability to control the posttransplant humoral response, resulting in high rates of antibody-mediated rejection (ABMR) and graft failure. Here, we showed that anti-CD154 monoclonal antibody (mAb)–based immunosuppression more effectively controlled allograft rejection and humoral rebound in a highly sensitized nonhuman primate kidney transplantation model compared with tacrolimus-based standard-of-care (SOC) immunosuppression. Desensitization with an anti-CD154 mAb (5C8) and a proteasome inhibitor led to decreased donor-specific antibodies (DSAs) and disruption of lymph node germinal centers with reduction of proliferating, memory, and class-switched B cells as well as T follicular helper cells. After transplant, the nonhuman primates maintained on 5C8-based immunosuppression had significantly better survival compared with those maintained on SOC immunosuppression (135.2 days versus 32.8 days, P = 0.013). The 5C8-treated group demonstrated better suppression of DSAs after transplant, more robust suppression of B cell populations, and better induction of regulatory T cells. Fewer infectious and welfare complications, including viral reactivation and weight loss, were also observed with 5C8-based immunosuppression compared with SOC immunosuppression. Therefore, anti-CD154 mAbs may improve kidney transplant outcomes through better control of posttransplant immune responses. The superior efficacy of anti-CD154 mAb–based immunosuppression over tacrolimus-based SOC seen in this highly sensitized NHP transplant model suggests that anti-CD154 mAbs could potentially be used to desensitize and treat highly sensitized patients receiving kidney transplantation.
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