遗传增强
免疫抑制
免疫系统
转基因
免疫学
单克隆抗体
生物
载体(分子生物学)
抗体
病毒载体
B细胞
医学
病毒学
基因
重组DNA
生物化学
作者
Jyoti Rana,Roland W. Herzog,Maite Muñoz-Melero,Kentaro Yamada,Sandeep Kumar,Anh K. Lam,David M. Markusic,Dongsheng Duan,Cox Terhorst,Barry J. Byrne,Manuela Corti,Moanaro Biswas
标识
DOI:10.1016/j.omtm.2024.101216
摘要
Adeno-associated virus (AAV) vectors are used for correcting multiple genetic disorders. Although the goal is to achieve lifelong correction with a single vector administration, the ability to redose would enable the extension of therapy in cases in which initial gene transfer is insufficient to achieve a lasting cure, episomal vector forms are lost in growing organs of pediatric patients, or transgene expression is diminished over time. However, AAV typically induces potent and long-lasting neutralizing antibodies (NAbs) against capsid that prevents re-administration. To prevent NAb formation in hepatic AAV8 gene transfer, we developed a transient B cell-targeting protocol using a combination of monoclonal Ab therapy against CD20 (for B cell depletion) and BAFF (to slow B cell repopulation). Initiation of immunosuppression before (rather than at the time of) vector administration and prolonged anti-BAFF treatment prevented immune responses against the transgene product and abrogated prolonged IgM formation. As a result, vector re-administration after immune reconstitution was highly effective. Interestingly, re-administration before the immune system had fully recovered achieved further elevated levels of transgene expression. Finally, this immunosuppression protocol reduced Ig-mediated AAV uptake by immune cell types with implications to reduce the risk of immunotoxicities in human gene therapy with AAV.
科研通智能强力驱动
Strongly Powered by AbleSci AI