Engineering anti-amyloid antibodies with transferrin receptor targeting improves safety and brain biodistribution
Pizzo, M. E.; Plowey, E. D.; Khoury, N.; Kwan, W.; Abettan, J.; DeVos, S. L.; Discenza, C. B.; Earr, T.; Joy, D.; Lye-Barthel, M.; Roche, E.; Chan, D.; Dugas, J. C.; Gadkar, K.; Meisner, R.; Sebalusky, J.; Silva Amaral, A. C.; Becerra, I.; Chau, R.; Chow, J.; Clemens, A. J.; Dennis, M. S.; Duque, J.; Fusaro, L.; Getz, J. A.; Kariolis, M. S.; Kim, D. J.; Leung, A. W.-S.; Nguyen, H. N.; Thomsen, E. R.; Sanchez, P. E.; Shan, L.; Silverman, A. P.; Solanoy, H.; Tong, R.; Calvert, M. E. K.; Watts, R. J.; Thorne, R. G.; Weinreb, P. H.; Walsh, D. M.; Lewcock, J. W.; Bussiere, T.; Zuchero, Y. J. Y.
Show abstract
Although the first generation of immunotherapies for Alzheimers disease (AD) are now clinically approved, amyloid-related imaging abnormalities (ARIA) remain a major safety problem for this class of drugs. Here, we report an antibody transport vehicle (ATV) targeting the transferrin receptor (TfR) for brain delivery of amyloid beta (A{beta}) antibodies that significantly reduced ARIA-like lesions and improved plaque target engagement in a mouse model of amyloid deposition. Asymmetrical Fc mutations (ATVcisLALA) allowed the molecule to selectively retain effector function only when bound to A{beta} while mitigating TfR-related hematology liabilities. Mice treated with ATVcisLALA:A{beta} exhibited broad brain parenchymal antibody distribution; in contrast, anti-A{beta} IgG was highly enriched at arterial perivascular spaces where vascular A{beta} localizes and likely plays a role in induction of ARIA. Importantly, ATVcisLALA: A{beta} almost completely eliminated ARIA-like lesions and vascular inflammation associated with anti-A{beta} treatment. Taken together, ATVcisLALA has the potential to significantly improve both safety and efficacy of A{beta} immunotherapy through enhanced biodistribution mediated by transport across the blood-brain barrier.
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