AI Article Synopsis

  • The tumor microenvironment (TME) in pancreatic cancer makes up about 90% of the tumor mass, influenced by factors like pancreatitis, which enhances macrophage infiltration and increases cancer risk.
  • The transcription factor NRF2 plays a crucial role in regulating oxidative stress responses and inflammation in macrophages, impacting cancer progression and drug resistance.
  • Using bromodomain inhibitors like I-BET-762 in treatment can decrease HO-1 levels in macrophages, suggesting a potential strategy to inhibit inflammation-related tumor growth in pancreatic cancer.

Article Abstract

In pancreatic cancer, the tumor microenvironment (TME) accounts for up to 90% of the tumor mass. Pancreatitis, characterized by the increased infiltration of macrophages into the pancreas, is a known risk factor for pancreatic cancer. The NRF2 (nuclear factor erythroid 2-related factor 2) transcription factor regulates responses to oxidative stress and can promote cancer and chemoresistance. NRF2 also attenuates inflammation through the regulation of macrophage-specific genes. Heme oxygenase 1 (HO-1) is expressed by anti-inflammatory macrophages to degrade heme, and its expression is dependent on NRF2 translocation to the nucleus. In macrophages stimulated with conditioned media from pancreatic cancer cells, HO-1 protein levels increased, which correlated with higher NRF2 expression in the nuclear fraction. Significant differences in macrophage infiltration and HO-1 expression were detected in LSL-Kras; Pdx-1-Cre (KC) mice, Nrf2 whole-body knockout (KO) mice and wildtype mice with pancreatitis. Since epigenetic modulation is a mechanism used by tumors to regulate the TME, using small molecules as epigenetic modulators to activate immune recognition is therapeutically desirable. When the bromodomain inhibitor I-BET-762 was used to treat macrophages or mice with pancreatitis, high levels of HO-1 were reduced. This study shows that bromodomain inhibitors can be used to prevent physiological responses to inflammation that promote tumorigenesis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11432103PMC
http://dx.doi.org/10.3390/ijms25189985DOI Listing

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