Harmsen Michiel M, Van Solt Conny B, Fijten Helmi P D, Van Setten Marga C
Animal Sciences Group (ID-Lelystad BV) of Wageningen University and Research Centre, Edelhertweg 15, P.O. Box 65, 8219 PH, Lelystad, The Netherlands.
Vaccine. 2005 Sep 30;23(41):4926-34. doi: 10.1016/j.vaccine.2005.05.017.
The therapeutic parenteral application of llama single-domain antibody fragments (VHHs) is hampered by their small size, resulting in a fast elimination from the body. Here we describe a method to increase the serum half-life of VHHs in pigs by fusion to another VHH binding to porcine immunoglobulin G (pIgG). We isolated 19 pIgG-binding VHHs from an immunized llama using phage display. Six VHHs were genetically fused to model VHH K 609 that binds to Escherichia coli F4 fimbriae. All six yeast-produced genetic fusions of two VHH domains (VHH2s) were functional in ELISA and bound to pIgG with high affinity (1-33 nM). Four pIgG-binding VHH2s were administered to pigs and showed a 100-fold extended in vivo residence times as compared to a control VHH2 that does not bind to pIgG. This could provide the basis for therapeutic application of VHHs in pigs.
羊驼单域抗体片段(VHHs)的治疗性肠胃外应用受到其小尺寸的限制,导致其在体内快速清除。在此,我们描述了一种通过与另一种结合猪免疫球蛋白G(pIgG)的VHH融合来延长VHHs在猪体内血清半衰期的方法。我们使用噬菌体展示从免疫的羊驼中分离出19种结合pIgG的VHHs。将六种VHHs与结合大肠杆菌F4菌毛的模型VHH K 609进行基因融合。所有六种酵母产生的两个VHH结构域的基因融合体(VHH2s)在ELISA中均具有功能,并以高亲和力(1 - 33 nM)结合pIgG。将四种结合pIgG的VHH2s给予猪,与不结合pIgG的对照VHH2相比,其体内停留时间延长了100倍。这可为VHHs在猪体内的治疗应用提供基础。