bioRxiv · 10.1101/2021.04.08.438900
In vivo engineered B cells retain memory and secrete high titers of anti-HIV antibodies in mice
Abstract
As a potential single-shot HIV therapy, transplanted engineered B cells allow robust secretion of broadly neutralizing antibodies (bNAbs). However, ex vivo engineering of autologous B cells is expensive and requires specialized facilities, while allogeneic B cell therapy necessitates MHC compatibility. Here, we develop in vivo B cell engineering, by injecting two adeno associated viral vectors, one coding for saCas9 and another coding for a bNAb. Following immunizations, we demonstrate memory retention and bNAb secretion at neutralizing titers. We observed minimal CRISPR/Cas9 off-target cleavage, using unbiased CHANGE-Seq analysis, while on-target cleavage at undesired tissues is reduced by expressing saCas9 from a B cell specific promoter. In vivo B cell engineering is thus a safe, potent and scalable method for expressing desired antibodies against HIV and beyond. One sentence summaryB cells can be engineered in vivo to robustly secrete anti-HIV bNAbs in a safe, durable and scalable manner.
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Nahmad, A. D., Lazzarotto, C. R., Zelikson, N., Kustin, T., Tenuta, M., Huang, D., Reuveni, I., Horovitz-Fried, M., Dotan, I., Rosin-Arbesfeld, R., Nemazee, D., Voss, J. E., Stern, A., Tsai, S. Q., Barzel, A.. 2021-04-09. In vivo engineered B cells retain memory and secrete high titers of anti-HIV antibodies in mice. https://doi.org/10.1101/2021.04.08.438900
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