Area of research
Cancer Research · Epidemiology
Research interest
Research focused on Cancer research and Tumor microenvironment, with related work in Metastasis, Cancer, Methylmalonic acid. Notable publications include 'CD36-mediated metabolic adaptation supports regulatory T cell survival and function in tumors', 'Evidence for an alternative fatty acid desaturation pathway increasing cancer plasticity', and 'Age-induced accumulation of methylmalonic acid promotes tumour progression'.
Aspartate signalling drives lung metastasis via alternative translation
Nucleotide metabolism in cancer cells fuels a UDP-driven macrophage cross-talk, promoting immunosuppression and immunotherapy resistance
Methylmalonic acid induces metabolic abnormalities and exhaustion in CD8+ T cells to suppress anti-tumor immunity
A palmitate-rich metastatic niche enables metastasis growth via p65 acetylation resulting in pro-metastatic NF-κB signaling
PHGDH heterogeneity potentiates cancer cell dissemination and metastasis
CD8+ T cell metabolic rewiring defined by scRNA-seq identifies a critical role of ASNS expression dynamics in T cell differentiation
GBM tumors are heterogeneous in their fatty acid metabolism and modulating fatty acid metabolism sensitizes cancer cells derived from recurring GBM tumors to temozolomide
Author Correction: PHGDH heterogeneity potentiates cancer cell dissemination and metastasis
Macrophages are metabolically heterogeneous within the tumor microenvironment
Fat Induces Glucose Metabolism in Nontransformed Liver Cells and Promotes Liver Tumorigenesis
Heterogeneity in PHGDH protein expression potentiates cancer cell dissemination and metastasis
CD36-mediated metabolic adaptation supports regulatory T cell survival and function in tumors
Age-induced accumulation of methylmalonic acid promotes tumour progression
Stable Isotopes for Tracing Mammalian-Cell Metabolism In Vivo
Evidence for an alternative fatty acid desaturation pathway increasing cancer plasticity