Return
Activatable photoimmunotherapy enables spatiotemporal depletion of pathogenic cells in immune-driven disease and cancer
E
A
S
K
J
W
A
Z
B
J
DOI:10.1016/j.jid.2026.07.025.png)
Abstract
En 中文
Photoimmunotherapy (PIT) combines antibody specificity with light-activated cytotoxicity to enable precise, spatially and temporally confined cell depletion. However, the leading clinical-stage PIT agent, cetuximab–IR700, can induce inflammation, swelling, and edema that may restrict its use to oncology, likely due to activation of unbound conjugates in illuminated tissues and robust on-target tumor necrosis. To overcome these limitations, we introduce vertamax, a benzoporphyrin-based antibody–photosensitizer conjugate platform engineered to remain quenched until enzymatically activated within target cells, enabling more selective PIT. Vertamax-PIT demonstrated versatility across multiple antibody targets, including T cell (CD2, CD5) and tumor (EGFR) antigens. We show that CD5-directed vertamax-PIT selectively depletes T cells from healthy human skin biopsies, and pathogenic T cells from a single-patient biopsy of CTCL. EGFR-targeted vertamax-PIT inhibited tumor growth without detectable off-target toxicity in vivo, distinguishing it from IR700-PIT. These findings establish vertamax as an alternative and potentially safer PIT platform that may be applied in oncology, autoimmunity, and other settings where inflammation must be minimized.
Journal
IF:
5.7
Papers:
1.8W
Citations:
3.4W
