Combining Cell-Intrinsic and-Extrinsic Resistance to HIV-1 By Engineering Hematopoietic Stem Cells for CCR5 Knockout and B Cell Secretion of Therapeutic …

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Brief intro:

  • Author: William N. Feist, Sofia E. Luna, Kaya Ben-Efraim, Maria V. Filsinger Interrante, Nelson A. Amorin, Nicole M. Johnston, Theodora U. J. Bruun, Hana Y. Ghanim, Benjamin J. Lesch, Amanda M. Dudek, Matthew H. Porteus
  • Journal: BioRxiv
  • Doi: https://www.doi.org/10.1101/2024.03.08.583956
  • Publication Date: 2024 Mar 24

Products/Services used in the paper

Quotation shows PackGene:Experiments were performed with rAAV6 vectors produced and purified by SignaGen Laboratories (Frederick, MD, USA) and Packgene Biotech (Houston, TX, USA).

Research Field:HIV

AAV Serotype:rAAV6

Targeted organ:stem cell

Animal or cell line strain:mice

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Abstract

Autologous transplantation of CCR5 null hematopoietic stem and progenitor cells (HSPCs) is the only known cure for HIV-1 infection. However, this treatment is limited because of the rarity of CCR5-null matched donors, the morbidities associated with allogeneic transplantation, and the prevalence of HIV-1 strains resistant to CCR5 knockout (KO) alone. Here, we propose a one-time therapy through autologous transplantation of HSPCs genetically engineered ex vivo to produce both CCR5 KO cells and long-term secretion of potent HIV-1 inhibiting antibodies from B cell progeny. CRISPR-Cas9-engineered HSPCs maintain engraftment capacity and multi-lineage potential in vivo and can be engineered to express multiple antibodies simultaneously. Human B cells engineered to express each antibody secrete neutralizing concentrations capable of inhibiting HIV-1 pseudovirus infection in vitro. This work lays the groundwork for a potential one-time functional cure for HIV-1 through combining the long-term delivery of therapeutic antibodies against HIV-1 and the known efficacy of CCR5 KO HSPC transplantation.

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