Center for Transfusion Medicine and Cellular Therapies, Department of Laboratory Medicine and Pathology.
Department of Biochemistry.
Blood. 2022 Mar 3;139(9):1312-1317. doi: 10.1182/blood.2020009210.
Recombinant factor VIII (FVIII) products represent a life-saving intervention for patients with hemophilia A. However, patients can develop antibodies against FVIII that prevent its function and directly increase morbidity and mortality. The development of anti-FVIII antibodies varies depending on the type of recombinant product used, with previous studies suggesting that second-generation baby hamster kidney (BHK)-derived FVIII products display greater immunogenicity than do third-generation Chinese hamster ovary (CHO)-derived FVIII products. However, the underlying mechanisms responsible for these differences remain incompletely understood. Our results demonstrate that BHK cells express higher levels of the nonhuman carbohydrate α1-3 galactose (αGal) than do CHO cells, suggesting that αGal incorporation onto FVIII may result in anti-αGal antibody recognition that could positively influence the development of anti-FVIII antibodies. Consistent with this, BHK-derived FVIII exhibits increased levels of αGal, which corresponds to increased reactivity with anti-αGal antibodies. Infusion of BHK-derived, but not CHO-derived, FVIII into αGal-knockout mice, which spontaneously generate anti-αGal antibodies, results in significantly higher anti-FVIII antibody formation, suggesting that the increased levels of αGal on BHK-derived FVIII can influence immunogenicity. These results suggest that posttranslational modifications of recombinant FVIII products with nonhuman carbohydrates may influence the development of anti-FVIII antibodies.
重组凝血因子 VIII(FVIII)产品是治疗 A 型血友病患者的救命干预措施。然而,患者可能会产生针对 FVIII 的抗体,从而阻止其发挥功能,直接增加发病率和死亡率。抗 FVIII 抗体的产生取决于所使用的重组产品类型,先前的研究表明,第二代仓鼠卵巢(CHO)衍生的 FVIII 产品比第三代仓鼠卵巢(CHO)衍生的 BHK 衍生的 FVIII 产品具有更高的免疫原性。然而,导致这些差异的潜在机制仍不完全清楚。我们的结果表明,BHK 细胞表达的非人类碳水化合物 α1-3 半乳糖(αGal)水平高于 CHO 细胞,这表明 FVIII 上的 αGal 掺入可能导致抗-αGal 抗体的识别,从而可能正面影响抗 FVIII 抗体的产生。与此一致,BHK 衍生的 FVIII 表现出增加的 αGal 水平,这与与抗-αGal 抗体的增加反应性相对应。将 BHK 衍生的 FVIII 而不是 CHO 衍生的 FVIII 输注到自发产生抗-αGal 抗体的 αGal 敲除小鼠中,会导致明显更高的抗 FVIII 抗体形成,表明 BHK 衍生的 FVIII 上增加的 αGal 水平会影响免疫原性。这些结果表明,重组 FVIII 产品的非人类碳水化合物的翻译后修饰可能会影响抗 FVIII 抗体的产生。