Role of -Catenin Activation in the Tumor Immune Microenvironment and Immunotherapy of Hepatocellular Carcinoma

CANCERS(2023)

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摘要
Recently, the therapeutic combination of atezolizumab and bevacizumab was widely used to treat advanced hepatocellular carcinoma (HCC). According to recent clinical trials, immune checkpoint inhibitors (ICIs) and molecular target agents are expected to be key therapeutic strategies in the future. Nonetheless, the mechanisms underlying molecular immune responses and immune evasion remain unclear. The tumor immune microenvironment plays a vital role in HCC progression. The infiltration of CD8-positive cells into tumors and the expression of immune checkpoint molecules are key factors in this immune microenvironment. Specifically, Wnt/fi catenin pathway activation causes "immune exclusion", associated with poor infiltration of CD8-positive cells. Some clinical studies suggested an association between ICI resistance and fi-catenin activation in HCC. Additionally, several subclassifications of the tumor immune microenvironment were proposed. The HCC immune microenvironment can be broadly divided into inflamed class and non-inflamed class, with several subclasses. fi-catenin mutations are important factors in immune subclasses; this may be useful when considering therapeutic strategies as fi-catenin activation may serve as a biomarker for ICI. Various types of fi-catenin modulators were developed. Several kinases may also be involved in the fi-catenin pathway. Therefore, combinations of fi-catenin modulators, kinase inhibitors, and ICIs may exert synergistic effects.
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关键词
hepatocellular carcinoma,tumor immune microenvironment,immunotherapy
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