Jul 2026· Chinese Medical Journal· 0 citations· 190 references
Medicine
TL;DR
This review systematically introduces the molecular biological basis of each epigenetic modification and then summarizes the latest research progress on the epigenetic regulation of metabolism in HCC, with the goal of linking these two frontier fields to provide novel insights into the treatment of HCC.
Abstract
ABSTRACT
Hepatocellular carcinoma (HCC) is the most prevalent form of primary liver cancer and is characterized by high mortality rates and a lack of effective therapeutic options. HCC cells undergo extensive metabolic reprogramming, including alterations in glycolytic, lipid, and amino acid metabolism, among other processes. These metabolic changes are often accompanied by widespread alterations in the epigenetic landscape, including DNA methylation, post-transcriptional modifications, non-coding RNA dysregulation, and histone modifications. A thorough understanding of how epigenetic modifications and metabolic reprogramming interact in HCC is critical for elucidating the mechanisms underlying hepatocarcinogenesis and developing new treatment approaches against HCC. In this review, we systematically introduce the molecular biological basis of each epigenetic modification and then summarize the latest research progress on the epigenetic regulation of metabolism in HCC, with the goal of linking these two frontier fields to provide novel insights into the treatment of HCC.
Although aerobic glycolysis is a hallmark of hepatocellular carcinoma (HCC) progression, the underlying epitranscriptomic mechanisms remain poorly understood. Here, we identify METTL15, an N4-methylcytidine (m4C) RNA methyltransferase, as a novel oncogenic driver of this metabolic reprogramming. METTL15 is significantl...
Longhui Xie, Ken Ning, Yu-Hu Wang et al.· International Journal of Bio...· 0 citations
A conceptual framework is proposed in which TK1 is viewed not merely as a proliferation marker but as a potential regulator of the metabolic–immune ecosystem in HCC, which may facilitate the development of novel biomarkers and precision therapeutic strategies for patients with HCC.
Hao Chai, Lang Wu, Ming-Hao Li· Discover Oncology· 0 citations
This article systematically reviews the molecular mechanisms underlying the dysregulation of three major nutrient metabolic pathways—glucose, lipid, and amino acid metabolism—and their interconnected regulatory networks and suggests a novel approach to improving the prognosis of pancreatic cancer.
Ze-Liang Zhang, Ying Tian, Bo Zhang et al.· Cytotechnology (Dordrecht)· 0 citations
Background: Cancer is characterized not only by genetic and epigenetic abnormalities but also by profound alterations in cellular metabolism. Metabolic reprogramming enables malignant cells to meet the increased requirements for energy production, biosynthesis, redox regulation, proliferation, invasion, and adaptation...
Arshiya Fatima, Mohammed Abdul Muqeeth, K. Maanasa et al.· International Journal of Med...· 0 citations
Hepatocellular carcinoma (HCC) commonly develops in the context of chronic liver injury, viral hepatitis, metabolic dysfunction, alcohol-related liver disease and cirrhosis. Although immune checkpoint inhibitor-based combination therapies have improved the treatment of unresectable HCC, primary and acquired resistance...
Xiao-Peng Chen, Bao-Ding Li, Hao Chai et al.· Journal of Hepatocellular Ca...· 0 citations
This review comprehensively summarizes the multifaceted roles of major histone modifications, including acetylation, methylation, ubiquitination, phosphorylation, and emerging metabolism-linked acylations, in governing critical DNA-templated processes such as replication, transcription, and the DNA damage response.
Ling-Li Wang, Shi-Ying Li, Xiao-Yan Hu et al.· Precision Clinical Medicine· 0 citations
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