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Inhibition of EGFR Overcomes Acquired Lenvatinib Resistance Driven by STAT3-ABCB1 Signaling in Hepatocellular
Beiyuan Hu1,2, Tiantian Zou1,2, Wei Qin1,2
1Department of General Surgery, Huashan Hospital, Cancer Metastasis Institute, Fudan University, Shanghai, China.
Abstract:
Lenvatinib is an inhibitor of multiple receptor tyrosine kinases that was recently authorized for first-line treatment of hepatocellular carcinoma (HCC). However, the clinical benefits derived from lenvatinib are limited, highlighting the urgent need to understand mechanisms of resistance. We report here that HCC cells develop resistance to lenvatinib by activating EGFR and stimulating the EGFR-STAT3-ABCB1 axis. Lenvatinib resistance was accompanied by aberrant cholesterol metabolism and lipid raft activation. ABCB1 was activated by EGFR in a lipid raft-dependent manner, which significantly enhanced the exocytosis of lenvatinib to mediate resistance. Furthermore, clinical specimens of HCC showed a correlation between the activation of the EGFR-STAT3-ABCB1 pathway and lenvatinib response. Erlotinib, an EGFR inhibitor that has also been shown to inhibit ABCB1, suppressed lenvatinib exocytosis, and combined treatment with lenvatinib and erlotinib demonstrated a significant synergistic effect on HCC both in vitro and in vivo. Taken together, these findings characterize a mechanism of resistance to a first-line treatment for HCC and offer a practical means to circumvent resistance and treat the disease.
Significance:
HCC cells acquire resistance to lenvatinib by activating the EGFR-STAT3-ABCB1 pathway, identifying combined treatment with erlotinib as a strategy to overcome acquired resistance and improve the clinical benefit of lenvatinib.
Insights
Hepatocellular carcinoma (HCC) cells resist lenvatinib by activating the EGFR-STAT3-ABCB1 pathway. Combining lenvatinib with erlotinib, an EGFR inhibitor, overcomes this resistance, improving treatment outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Lenvatinib is a first-line treatment for hepatocellular carcinoma (HCC).
- Limited clinical benefits and resistance mechanisms necessitate further research.
- Understanding resistance pathways is crucial for improving HCC treatment efficacy.
Purpose of the Study:
- To elucidate the mechanisms of lenvatinib resistance in HCC.
- To identify therapeutic strategies to overcome lenvatinib resistance.
- To evaluate the efficacy of combined lenvatinib and erlotinib treatment.
Main Methods:
- Investigated resistance mechanisms in HCC cells treated with lenvatinib.
- Analyzed the role of the EGFR-STAT3-ABCB1 axis and cholesterol metabolism.
- Assessed the impact of erlotinib, an EGFR inhibitor, on lenvatinib resistance.
- Evaluated combined lenvatinib and erlotinib treatment in vitro and in vivo.
Main Results:
- HCC cells acquired lenvatinib resistance via activation of the EGFR-STAT3-ABCB1 pathway.
- Aberrant cholesterol metabolism and lipid raft activation were associated with resistance.
- EGFR activation promoted ABCB1-mediated lenvatinib exocytosis.
- Combined lenvatinib and erlotinib treatment showed significant synergistic effects in HCC models.
Conclusions:
- EGFR-STAT3-ABCB1 pathway activation is a key mechanism of lenvatinib resistance in HCC.
- Targeting EGFR with erlotinib can overcome lenvatinib resistance.
- Combination therapy with lenvatinib and erlotinib offers a promising strategy for HCC treatment.
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