4.7 Article

Tuning the Antigen Density Requirement for CAR T-cell Activity

Journal

CANCER DISCOVERY
Volume 10, Issue 5, Pages 702-723

Publisher

AMER ASSOC CANCER RESEARCH
DOI: 10.1158/2159-8290.CD-19-0945

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Categories

Funding

  1. NIH [T32GM007365, U54-CA232568-01, P01CA217959-01, 5P30CA124435]
  2. Hyundai Hope on Wheels Young Investigator Award
  3. St. Baldrick's-Stand Up To Cancer Dream Team Translational Research Grant [SU2C-AACR-DT-27-17]
  4. American Association for Cancer Research
  5. Scientific Partner of SU2C
  6. D.K. Ludwig Fund for Cancer Research
  7. Stanford University Cancer Immunotherapy Program
  8. German Cancer Aid (Deutsche Krebshilfe) grant [P-91650709]
  9. NIH R35 [1R35GM130332]
  10. Howard Hughes Medical Institute Faculty Scholar Program
  11. American Society of Hematology Honors award
  12. Jane Coffin Childs Postdoctoral Fellowship

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Insufficient reactivity against cells with low antigen density has emerged as an important cause of chimeric antigen receptor (CAR) T-cell resistance. Little is known about factors that modulate the threshold for antigen recognition. We demonstrate that CD19 CAR activity is dependent upon antigen density and that the CAR construct in axicabtagene ciloleucel (CD19-CD28 xi) outperforms that in tisagenlecleucel (CD19-4-1BB xi) against antigen-low tumors. Enhancing signal strength by including additional immunoreceptor tyrosine-based activation motifs (ITAM) in the CAR enables recognition of low-antigen-density cells, whereas ITAM deletions blunt signal and increase the antigen density threshold. Furthermore, replacement of the CD8 hinge-transmembrane (H/T) region of a 4-1BB xi CAR with a CD28-H/T lowers the threshold for CAR reactivity despite identical signaling molecules. CARs incorporating a CD28-H/T demonstrate a more stable and efficient immunologic synapse. Precise design of CARs can tune the threshold for antigen recognition and endow 4-1BB xi-CARs with enhanced capacity to recognize antigen-low targets while retaining a superior capacity for persistence. SIGNIFICANCE: Optimal CAR T-cell activity is dependent on antigen density, which is variable in many cancers, including lymphoma and solid tumors. CD28 xi-CARs outperform 4-1BB xi-CARs when antigen density is low. However, 4-1BB xi-CARs can be reengineered to enhance activity against low-antigendensity tumors while maintaining their unique capacity for persistence.

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