In Vivo mRNA CAR T Cell Engineering via Targeted Ionizable Lipid Nanoparticles with Extrahepatic Tropism

Author:

Billingsley Margaret M.1,Gong Ningqiang1,Mukalel Alvin J.1,Thatte Ajay S.1,El‐Mayta Rakan12,Patel Savan K.1,Metzloff Ann E.1,Swingle Kelsey L.1,Han Xuexiang1,Xue Lulu1,Hamilton Alex G.1,Safford Hannah C.1,Alameh Mohamad‐Gabriel23,Papp Tyler E.2,Parhiz Hamideh23,Weissman Drew23,Mitchell Michael J.13456ORCID

Affiliation:

1. Department of Bioengineering University of Pennsylvania Philadelphia PA 19104 USA

2. Department of Medicine University of Pennsylvania Philadelphia PA 19104 USA

3. Abramson Cancer Center Perelman School of Medicine University of Pennsylvania Philadelphia PA 19104 USA

4. Institute for Immunology Perelman School of Medicine University of Pennsylvania Philadelphia PA 19104 USA

5. Cardiovascular Institute Perelman School of Medicine University of Pennsylvania Philadelphia PA 19104 USA

6. Institute for Regenerative Medicine Perelman School of Medicine University of Pennsylvania Philadelphia PA 19104 USA

Abstract

AbstractWith six therapies approved by the Food and Drug Association, chimeric antigen receptor (CAR) T cells have reshaped cancer immunotherapy. However, these therapies rely on ex vivo viral transduction to induce permanent CAR expression in T cells, which contributes to high production costs and long‐term side effects. Thus, this work aims to develop an in vivo CAR T cell engineering platform to streamline production while using mRNA to induce transient, tunable CAR expression. Specifically, an ionizable lipid nanoparticle (LNP) is utilized as these platforms have demonstrated clinical success in nucleic acid delivery. Though LNPs often accumulate in the liver, the LNP platform used here achieves extrahepatic transfection with enhanced delivery to the spleen, and it is further modified via antibody conjugation (Ab‐LNPs) to target pan‐T cell markers. The in vivo evaluation of these Ab‐LNPs confirms that targeting is necessary for potent T cell transfection. When using these Ab‐LNPs for the delivery of CAR mRNA, antibody and dose‐dependent CAR expression and cytokine release are observed along with B cell depletion of up to 90%. In all, this work conjugates antibodies to LNPs with extrahepatic tropism, evaluates pan‐T cell markers, and develops Ab‐LNPs capable of generating functional CAR T cells in vivo.

Funder

National Center for Advancing Translational Sciences

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

Reference83 articles.

1. FDA U.S. Food & Drug Administration.https://www.fda.gov/news‐events/press‐announcements/fda‐approves‐first‐cell‐based‐gene‐therapy‐adult‐patients‐multiple‐myeloma(accessed: March2021).

2. FDA Approval Summary: Axicabtagene Ciloleucel for Relapsed or Refractory Large B-cell Lymphoma

3. FDA Approves First Cell‐Based Gene Therapy For Adult Patients with Relapsed or Refractory MCL 2020.

4. FDA approval brings first gene therapy to the United States https://www.fda.gov/news‐events/press‐announcements/fda‐approval‐rings‐first‐gene‐therapy‐united‐states 2020.

5. Chimeric Antigen Receptor T Cells for Sustained Remissions in Leukemia

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