Single-cell imaging of T cell immunotherapy responses in vivo.
Chuan YanQiqi YangSongfa ZhangDavid G MillarEric J AlpertDaniel DoAlexandra VelosoDalton C BrunsonBenjamin J DrapkinMarcello StanzioneIrene ScarfoJohn C MooreSowmya IyerQian QinYun WeiKarin M McCarthyJohn F RawlsNicholas J DysonMark CobboldMarcela V MausDavid M LangenauPublished in: The Journal of experimental medicine (2021)
T cell immunotherapies have revolutionized treatment for a subset of cancers. Yet, a major hurdle has been the lack of facile and predicative preclinical animal models that permit dynamic visualization of T cell immune responses at single-cell resolution in vivo. Here, optically clear immunocompromised zebrafish were engrafted with fluorescent-labeled human cancers along with chimeric antigen receptor T (CAR T) cells, bispecific T cell engagers (BiTEs), and antibody peptide epitope conjugates (APECs), allowing real-time single-cell visualization of T cell-based immunotherapies in vivo. This work uncovered important differences in the kinetics of T cell infiltration, tumor cell engagement, and killing between these immunotherapies and established early endpoint analysis to predict therapy responses. We also established EGFR-targeted immunotherapies as a powerful approach to kill rhabdomyosarcoma muscle cancers, providing strong preclinical rationale for assessing a wider array of T cell immunotherapies in this disease.
Keyphrases
- single cell
- rna seq
- high throughput
- immune response
- cell therapy
- high resolution
- small cell lung cancer
- endothelial cells
- quantum dots
- cancer therapy
- social media
- toll like receptor
- intensive care unit
- dendritic cells
- computed tomography
- mesenchymal stem cells
- inflammatory response
- single molecule
- stem cells
- combination therapy
- respiratory failure
- young adults
- living cells
- pluripotent stem cells
- positron emission tomography