AI Article Synopsis

  • The research investigates the role of butyrate metabolism-related genes (BMRGs) in the immune microenvironment of lung adenocarcinoma (LUAD), revealing their suppressive effects on tumor formation.
  • By analyzing The Cancer Genome Atlas dataset, 38 differentially expressed BMRGs were identified, leading to the development of a prognostic signature that indicates high-risk scores are linked to poor survival outcomes in LUAD patients.
  • A key gene, PTGDS, was found to have significant associations with T cells and specific immune pathways, suggesting that targeting butyrate metabolism and T cell interactions could offer new cancer treatment strategies.

Article Abstract

Background: Experimental results have verified the suppressive impact of butyrate on tumor formation. Nevertheless, there is a limited understanding of the hidden function of butyrate metabolism within the tumor immune microenvironment (TIME) of lung adenocarcinoma (LUAD). This research aimed at digging the association between genes related to butyrate metabolism (butyrate metabolism-related genes [BMRGs) and immune infiltrates in LUAD patients.

Methods: Through analyzing The Cancer Genome Atlas dataset (TCGA), the identification of 38 differentially expressed BMRGs was made between LUAD and normal samples. Later, a prognostic signature made up of nine BMRGs was made to evaluate the risk score of LUAD subjects. Notably, high-risk scores emerged as negative prognostic indicators for overall survival in LUAD subjects. Additionally, BMRGs displayed associations with immunocyte infiltration levels, immune pathway activities, and pivotal prognostic hub BMRGs.

Results: One key prognostic BMRG, PTGDS, exhibited a robust correlation with T cells, the chemokine-related pathway, and the TCR signaling pathway. This study suggests that investigating the interplay between butyrate metabolism and T cells could present a promising novel approach to cancer treatment. OncoPredict analysis further unveiled distinct sensitivities of nine medicine in high- and low-risk groups, facilitating the selection of optimal treatment strategies for individual LUAD patients.

Conclusions: The study establishes that the BMRG signature serves as a sensitive predictive biomarker, providing profound insights into the crucial effect of butyrate metabolism in the context of LUAD TIME.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11621860PMC
http://dx.doi.org/10.1002/iid3.70087DOI Listing

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