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◆ Biomarker research2026-08-12

FECH, a novel metabolic target influencing CAR T-cell phenotype and function.

Marsha Pellegrino, Simone Vespa, Illari Salvatori, Giang Dang Mac, Cristiana Valle, Valerio Secli, Sara Cairoli, Bianca Maria Goffredo, Matteo Caforio, Valentina Folgiero, Lokossou William Sanvi, Elisabetta Vulpis, Elena Ciampini, Marco Scarsella, Ezio Giorda, Ferdinando Chiaradonna, Manuela Giansanti, Francesca Nazio, Alberto Ferri, Francesco Cecconi, Silvia Campello, Enrico Velardi, Ignazio Caruana, Emmanuel de Billy

原始摘要(英文原文)· Original abstract
Recent phase I/II clinical trials have demonstrated that chimeric antigen receptor (CAR) T cells targeting the disialogangliosade GD2 represent a promising therapeutic option for pediatric patients with relapsed or refractory high-risk neuroblastoma (NB). However, incomplete and heterogeneous clinical responses highlight the need to improve CAR T-cell efficacy and persistence. We previously demonstrated the therapeutic benefit of combining the dual insulin-like growth factor 1 receptor/insulin receptor (IGF1R/IR) inhibitor linsitinib (LIN) with third-generation GD2.CAR T cells in diffuse intrinsic pontine glioma, where LIN induced tumor cell death and modulated the CAR T-cell phenotype. Here, we extended these findings to NB and explored the mechanisms of LIN-mediated CAR T-cell modulation. LIN, in combination with CAR T cells, significantly enhanced antitumor activity in LIN-sensitive NB cell lines. Mechanistically, we investigated ferrochelatase (FECH), a mitochondrial enzyme involved in heme biosynthesis, and a known off-target of LIN. LIN treatment or selective FECH inhibition with N-methyl protoporphyrin IX reduced intracellular heme, attenuated activation and exhaustion marker expression and promoted central memory characteristics associated with improved in vivo CAR T-cell persistence and functionality. Both treatments similarly decreased ATP production by reducing glycolysis and mitochondrial respiration in chronical antigen-activated CAR T cells. Collectively, these data reveal a dual mechanism of action for LIN, combining direct tumor cell cytotoxicity with metabolic reprogramming of CAR T cells linked to heme biosynthesis. These findings identify heme metabolism as regulator of CAR T-cell phenotype and function and support further investigation of FECH to enhance therapeutic efficacy in NB and beyond.
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FECH, a novel metabolic target influencing CAR T-cell phenotype and function. — 科研速览 Science Skim