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An Oncogenic Hepatocyte-Induced Orthotopic Mouse Model of Hepatocellular Cancer Arising in the Setting of Hepatic Inflammation and Fibrosis
Published on: September 12, 2019
Alpelisib combination treatment as novel targeted therapy against hepatocellular carcinoma
Hongwei Xu1,2, Kefei Chen1, Runze Shang3
1Department of Liver Surgery, Center of Liver Transplantation, West China Hospital of Sichuan University, Chengdu, Sichuan, China.
Abstract:
Hepatocellular carcinoma (HCC) is the sixth most common primary cancer with an unsatisfactory long-term survival. Gain of function mutations of PIK3CA occur in a subset of human HCC. Alpelisib, a selective PIK3CA inhibitor, has been approved by the FDA to treat PIK3CA mutant breast cancers. In this manuscript, we evaluated the therapeutic efficacy of alpelisib, either alone or in combination, for the treatment of HCC. We tested alpelisib in mouse HCC induced by hydrodynamic injection of c-Met/PIK3CA(H1047R) (c-Met/H1047R), c-Met/PIK3CA(E545K) (c-Met/E545K), and c-Met/sgPten gene combinations. Alpelisib slowed down the growth of c-Met/H1047R and c-Met/E545K HCC but was ineffective in c-Met/sgPten HCC. Mechanistically, alpelisib inhibited p-ERK and p-AKT in c-Met/H1047R and c-Met/E545K HCC progression but did not affect the mTOR pathway or genes involved in cell proliferation. In human HCC cell lines transfected with PIK3CA(H1047R), alpelisib synergized with the mTOR inhibitor MLN0128 or the CDK4/6 inhibitor palbociclib to suppress HCC cell growth. In c-Met/H1047R mice, alpelisib/MLN0128 or alpelisib/palbociclib combination therapy caused tumor regression. Our study demonstrates that alpelisib is effective for treating PIK3CA-mutated HCC by inhibiting MAPK and AKT cascades. Furthermore, combining alpelisib with mTOR or CDK4/6 inhibitors has a synergistic efficacy against PIK3CA-mutated HCC, providing novel opportunities for precision medicine against HCC.
Insights
Alpelisib effectively treats PIK3CA-mutant hepatocellular carcinoma (HCC) by inhibiting key signaling pathways. Combination therapies with mTOR or CDK4/6 inhibitors show synergistic effects, offering new precision medicine strategies for HCC.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Hepatocellular carcinoma (HCC) has poor survival rates, with PIK3CA mutations present in a subset of cases.
- Alpelisib, a PIK3CA inhibitor, is FDA-approved for PIK3CA-mutant breast cancer.
Purpose of the Study:
- To evaluate alpelisib's efficacy alone and in combination for treating HCC.
- To investigate the therapeutic potential of alpelisib in PIK3CA-mutated HCC models.
Main Methods:
- Testing alpelisib in mouse models of HCC with specific genetic mutations (c-Met/PIK3CA(H1047R), c-Met/PIK3CA(E545K), c-Met/sgPten).
- Assessing alpelisib's effects on signaling pathways (p-ERK, p-AKT, mTOR) and cell proliferation.
- Evaluating combination therapies with mTOR inhibitor MLN0128 or CDK4/6 inhibitor palbociclib in cell lines and mouse models.
Main Results:
- Alpelisib slowed HCC growth in models with PIK3CA(H1047R) and PIK3CA(E545K) mutations but not in c-Met/sgPten models.
- Alpelisib inhibited p-ERK and p-AKT, but not the mTOR pathway or cell proliferation genes.
- Combination therapy with alpelisib and MLN0128 or palbociclib led to tumor regression in PIK3CA-mutated HCC models.
Conclusions:
- Alpelisib is effective against PIK3CA-mutated HCC by targeting MAPK and AKT pathways.
- Combined alpelisib with mTOR or CDK4/6 inhibitors demonstrates synergistic efficacy, presenting new avenues for HCC precision medicine.
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