Sherman Alexandra, Su Jin, Lin Shina, Wang Xiaomei, Herzog Roland W, Daniell Henry
Department of Pediatrics, College of Medicine, University of Florida, Gainesville, FL; and.
Department of Biochemistry and Department of Pathology, School of Dental Medicine, University of Pennsylvania, Philadelphia, PA.
Blood. 2014 Sep 4;124(10):1659-68. doi: 10.1182/blood-2013-10-528737. Epub 2014 May 13.
Hemophilia A is the X-linked bleeding disorder caused by deficiency of coagulation factor VIII (FVIII). To address serious complications of inhibitory antibody formation in current replacement therapy, we created tobacco transplastomic lines expressing FVIII antigens, heavy chain (HC) and C2, fused with the transmucosal carrier, cholera toxin B subunit. Cholera toxin B-HC and cholera toxin B-C2 fusion proteins expressed up to 80 or 370 µg/g in fresh leaves, assembled into pentameric forms, and bound to GM1 receptors. Protection of FVIII antigen through bioencapsulation in plant cells and oral delivery to the gut immune system was confirmed by immunostaining. Feeding of HC/C2 mixture substantially suppressed T helper cell responses and inhibitor formation against FVIII in mice of 2 different strain backgrounds with hemophilia A. Prolonged oral delivery was required to control inhibitor formation long-term. Substantial reduction of inhibitor titers in preimmune mice demonstrated that the protocol could also reverse inhibitor formation. Gene expression and flow cytometry analyses showed upregulation of immune suppressive cytokines (transforming growth factor β and interleukin 10). Adoptive transfer experiments confirmed an active suppression mechanism and revealed induction of CD4(+)CD25(+) and CD4(+)CD25(-) T cells that potently suppressed anti-FVIII formation. In sum, these data support plant cell-based oral tolerance for suppression of inhibitor formation against FVIII.
甲型血友病是一种由凝血因子 VIII(FVIII)缺乏引起的 X 连锁出血性疾病。为了解决当前替代疗法中抑制性抗体形成的严重并发症,我们创建了表达 FVIII 抗原、重链(HC)和 C2 的烟草转质体系,它们与跨粘膜载体霍乱毒素 B 亚基融合。霍乱毒素 B-HC 和霍乱毒素 B-C2 融合蛋白在新鲜叶片中的表达量高达 80 或 370 µg/g,组装成五聚体形式,并与 GM1 受体结合。通过免疫染色证实了在植物细胞中通过生物包封对 FVIII 抗原的保护以及口服递送至肠道免疫系统。给两种不同品系背景的甲型血友病小鼠喂食 HC/C2 混合物可显著抑制 T 辅助细胞反应以及针对 FVIII 的抑制剂形成。需要长期口服给药来长期控制抑制剂的形成。免疫前小鼠中抑制剂滴度的大幅降低表明该方案也可以逆转抑制剂的形成。基因表达和流式细胞术分析显示免疫抑制细胞因子(转化生长因子β和白细胞介素 10)上调。过继转移实验证实了一种主动抑制机制,并揭示了 CD4(+)CD25(+)和 CD4(+)CD25(-) T 细胞的诱导,这些细胞可有效抑制抗 FVIII 的形成。总之,这些数据支持基于植物细胞的口服耐受性,以抑制针对 FVIII 的抑制剂形成。