Causal Associations Between Lipids, NPC1L1, and Liver Cancer Risk: Insights From Mendelian Randomization and
Xiaoyan Guo1, Lili Wu1,2, Jing Lai1
1Department of Infectious Diseases, The Third Affiliated Hospital of Sun Yat-sen University, Guangzhou, Guangdong, China.
Background And Aim:
The study aims to investigate the potential causal effects of lipids on liver cancer risk and to analyze the possible impact of lipid-lowering drug targets on liver cancer.
Methods:
Genetic variants linked to lipid traits and drug targets were obtained from the Global Lipids Genetics Consortium and DrugBank. Liver cancer data were sourced from FinnGen. Mendelian randomization (MR) was used to assess causal relationships between lipid traits and liver cancer. Functional analyses included protein-protein interaction (PPI), KEGG pathway enrichment, transcription factor (TF) network analysis, and survival analysis. NPC1L1 expression, DNA methylation, and immune infiltration were analyzed using UALCAN, TCGA-LIHC, and TIMER, respectively.
Results:
MR analysis showed higher genetically predicted LDL-C levels reduced liver cancer risk (OR = 0.5981, p = 0.034). Drug target MR indicated that NPC1L1 inhibition (OR = 1.0638, p = 0.0311) and elevated PPARɑ levels (OR = 1.1339, p < 0.01) increased liver cancer risk. Functional analysis revealed NPC1L1 was highly expressed in liver cancer tissues due to hypomethylation and linked to immune cell infiltration, indicating its role in immune evasion and tumor progression.
Conclusion:
The study demonstrates that elevated LDL-C levels are associated with a reduced risk of liver cancer and NPC1L1 plays a key role in regulating lipid metabolism and influencing immune evasion.
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