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Ammonia Detoxification Inhibits Liver Metastasis by Reshaping Hepatic Microenvironment
Sumin Sun1,2,3, Haili Hu1,2,3, Long Chen1,3,4
1Jiangsu Institute of Cancer Research, Jiangsu Cancer Hospital, Affiliated Cancer Hospital of Nanjing Medical University, Nanjing, Jiangsu, China.
Abstract:
Liver metastases represent an urgent unmet medical need in the care of cancer due to a lack of effective therapies. This study reveals that pathological ammonia accumulation, resulting from dysregulation of ammonia removal processes, promotes the formation of a hepatic microenvironment favorable for metastatic colonization. Metabolomic and transcriptomic analyses suggest that tumoral metabolic reprogramming due to cancer cell-intrinsic hyperactivation of the de novo pyrimidine biosynthesis pathway impairs the urea cycle and causes pathological ammonia accumulation. Utilizing tumor microenvironmental profiling and single-cell RNA sequencing, subsequent analyses further reveal that ammonia accumulation remodels the hepatic stromal-immune landscape by inducing hepatic stellate cell differentiation into metastasis-associated fibroblasts (MAFs), suppressing Ifi27l2a+ monocyte-macrophages, and expanding pro-metastatic low-density neutrophils (LDNs). Strikingly, the ammonia detoxifying agent L-ornithine-L-aspartate (LOLA) potently promotes ammonia removal, thereby reshaping the hepatic microenvironment with decrease of MAFs and LDNs and increase of Ifi27l2a+ monocyte-macrophages, and reducing metastatic burden in liver metastasis mouse models. These results suggest that ammonia, a metabolic toxin, is required for the formation of the hepatic microenvironment favoring liver metastatic colonization, and highlight LOLA as a promising therapeutic strategy for treatment of liver metastasis by detoxifying pathological ammonia accumulation.
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