Research and Development Department, LinXis BV, 1081 GM Amsterdam, The Netherlands.
Cell Biology, Neurobiology and Biophysics, Department of Biology, Science Faculty, Utrecht University, 3584 CH Utrecht, The Netherlands.
Biomolecules. 2021 Jun 22;11(7):927. doi: 10.3390/biom11070927.
Antibody-drug conjugates (ADCs) are currently used for the targeted delivery of drugs to diseased cells, but intracellular drug delivery and therefore efficacy may be suboptimal because of the large size, slow internalization and ineffective intracellular trafficking of the antibody. Using a phage display method selecting internalizing phages only, we developed internalizing single domain antibodies (sdAbs) with high binding affinity to rat PDGFRβ, a receptor involved in different types of diseases. We demonstrate that these constructs have different characteristics with respect to internalization rates but all traffic to lysosomes. To compare their efficacy in targeted drug delivery, we conjugated the sdAbs to a cytotoxic drug. The conjugates showed improved cytotoxicity correlating to their internalization speed. The efficacy of the conjugates was inhibited in the presence of vacuolin-1, an inhibitor of lysosomal maturation, suggesting lysosomal trafficking is needed for efficient drug release. In conclusion, sdAb constructs with different internalization rates can be designed against the same target, and sdAbs with a high internalization rate induce more cell killing than sdAbs with a lower internalization rate in vitro. Even though the overall efficacy should also be tested in vivo, sdAbs are particularly interesting formats to be explored to obtain different internalization rates.
抗体药物偶联物(ADCs)目前被用于将药物靶向递送至病变细胞,但由于抗体的体积大、内化速度慢和细胞内转运效率低下,可能导致细胞内药物递送和疗效不理想。我们使用噬菌体展示方法仅选择内化噬菌体,开发了与参与多种疾病的受体大鼠 PDGFRβ 具有高结合亲和力的内化单域抗体(sdAb)。我们证明,这些结构在内化速率方面具有不同的特征,但都可转运至溶酶体。为了比较它们在靶向药物递送中的功效,我们将 sdAb 与细胞毒性药物缀合。缀合物显示出与内化速度相关的改善的细胞毒性。在溶酶体成熟抑制剂 vacuolin-1 的存在下,缀合物的功效受到抑制,这表明溶酶体转运对于有效药物释放是必需的。总之,可以针对相同的靶标设计具有不同内化速率的 sdAb 构建体,并且具有高内化速率的 sdAb 在体外诱导比具有较低内化速率的 sdAb 更多的细胞杀伤。尽管还应在体内测试整体功效,但 sdAb 是特别有趣的探索以获得不同内化速率的格式。