We are examining how tumor features inform progression & control toward precision cancer interventions.

Immune responses play a critical role in preventing tumorigenesis. Sometimes, however, they are ineffectual and can even drive/support malignancy. We are exploring how cancer cells alter, and are influenced by, their tumor microenvironments (TMEs). Our goal is to systematically define the ways in which environmental and cell-intrinsic factors influence malignant cell state plasticity. By identifying cancer cell state hierarchies and their dependencies, we seek to uncover actionable and extendable therapeutic strategies, as well as ways to adapt treatments to boost their efficacy in distinct tissue compartments.

Highlights

Hepatic adaptation to chronic metabolic stress primes tumorigenesis

Tzouanas et al., Cell, 2026

During chronic stress, cells must support both tissue function and their own survival. Hepatocytes perform metabolic, synthetic, and detoxification roles, but chronic nutrient imbalances can induce hepatocyte death and precipitate metabolic dysfunction-associated steatohepatitis (MASH, formerly NASH). Despite prior work identifying stress-induced drivers of hepatocyte death, chronic stress’ functional impact on surviving cells remains unclear. Through cross-species longitudinal single-cell multi-omics, we show that ongoing stress drives prognostic developmental and cancer-associated programs in non-transformed hepatocytes while reducing their mature functional identity. Creating integrative computational methods, we identify and then experimentally validate master […]