血脑屏障
抗体
医学
免疫学
神经科学
非人灵长类
中枢神经系统
双特异性抗体
生物
单克隆抗体
进化生物学
作者
Yang Yu,Jasvinder K. Atwal,Yin Zhang,Raymond K. Tong,Kristin R. Wildsmith,Christine Tan,Nga Bien‐Ly,Maria Hersom,Janice Maloney,William J. Meilandt,Daniela Bumbaca,Kapil Gadkar,Kwame Hoyte,Wilman Luk,Yanmei Lu,James A. Ernst,Kimberly Scearce‐Levie,Jessica A. Couch,Mark S. Dennis,Ryan J. Watts
标识
DOI:10.1126/scitranslmed.3009835
摘要
Using therapeutic antibodies that need to cross the blood-brain barrier (BBB) to treat neurological disease is a difficult challenge. We have shown that bispecific antibodies with optimized binding to the transferrin receptor (TfR) that target β-secretase (BACE1) can cross the BBB and reduce brain amyloid-β (Aβ) in mice. Can TfR enhance antibody uptake in the primate brain? We describe two humanized TfR/BACE1 bispecific antibody variants. Using a human TfR knock-in mouse, we observed that anti-TfR/BACE1 antibodies could cross the BBB and reduce brain Aβ in a TfR affinity-dependent fashion. Intravenous dosing of monkeys with anti-TfR/BACE1 antibodies also reduced Aβ both in cerebral spinal fluid and in brain tissue, and the degree of reduction correlated with the brain concentration of anti-TfR/BACE1 antibody. These results demonstrate that the TfR bispecific antibody platform can robustly and safely deliver therapeutic antibody across the BBB in the primate brain.
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