PI3K inhibitors in trastuzumab-resistant HER2-positive breast cancer cells with PI3K pathway alterations
Wei-Pang Chung1,2,3, Wei-Lun Huang2,4, Chun-Hui Lee1,2,3
1Department of Oncology, National Cheng Kung University Hospital, College of Medicine, National Cheng Kung University Tainan, Taiwan.
Abstract:
The activation of the PI3K signaling pathway resulting from genetic alterations induces carcinogenesis and resistance to anticancer therapies. Breast cancer is a major malignancy that is associated with dysregulation of the PI3K signaling pathway. PIK3CA mutations and PTEN loss occur in every subtype of breast cancer. PI3K inhibitors are being evaluated in breast cancer after the success of an alpha isoform-specific PI3K inhibitor in estrogen receptor (ER)-positive/HER2-negative metastatic breast cancer. Some preclinical data indicate the potential for PI3K/mTOR targeting in combination with trastuzumab for HER2-positive breast cancer with or without expression of the estrogen receptor. However, the role of this therapy in HER2-positive breast cancer with PIK3CA mutations and/or PTEN loss remains unclear. We examined three HER2-positive, ER-negative breast cancer cell lines to determine the efficacy of a novel alpha isoform-specific PI3K inhibitor in combination with trastuzumab. The results indicated that this combination was effective in PIK3CA-mutant or PTEN-deficient breast cancer cells by inducing apoptosis and inhibiting the expression of downstream proteins. PTEN loss by siRNA modulation in parental HER2-positive cancer cells with PI3K signaling pathway alterations could not confer resistance to alpelisib or GDC-0077 plus trastuzumab. We selected the CK-MB-1 cell line without alterations in the PI3K pathway to demonstrate that PI3K inhibitors plus trastuzumab represented a biomarker-specific treatment. In vivo effects of alpelisib plus trastuzumab were tested and confirmed in a mouse model, showing the combination strategy offered the best opportunity to achieve tumor volume reduction. With known safety profiles, this cytotoxic chemotherapy-free regimen warrants further attention as a biomarker-driven strategy for treating HER2-positive breast cancer.
Insights
Targeting the PI3K pathway with specific inhibitors and trastuzumab shows promise for HER2-positive breast cancer. This combination therapy effectively reduces tumor volume, offering a chemotherapy-free, biomarker-driven treatment option.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- The PI3K signaling pathway is frequently dysregulated in breast cancer, contributing to carcinogenesis and therapy resistance.
- PIK3CA mutations and PTEN loss are common in all breast cancer subtypes.
- PI3K inhibitors show efficacy in ER-positive/HER2-negative breast cancer, prompting investigation in HER2-positive subtypes.
Purpose of the Study:
- To evaluate the efficacy of a novel alpha isoform-specific PI3K inhibitor combined with trastuzumab in HER2-positive, ER-negative breast cancer.
- To determine the role of PIK3CA mutations and PTEN loss in response to this combination therapy.
- To establish PI3K inhibitors plus trastuzumab as a biomarker-specific treatment for HER2-positive breast cancer.
Main Methods:
- Testing a novel alpha isoform-specific PI3K inhibitor in combination with trastuzumab on three HER2-positive, ER-negative breast cancer cell lines.
- Utilizing siRNA to modulate PTEN loss in cancer cells.
- Evaluating the combination therapy in a mouse model.
Main Results:
- The combination of PI3K inhibitor and trastuzumab demonstrated efficacy in PIK3CA-mutant or PTEN-deficient breast cancer cells.
- PTEN loss did not confer resistance to alpelisib or GDC-0077 plus trastuzumab.
- In vivo studies confirmed tumor volume reduction with the combination strategy.
Conclusions:
- The combination of PI3K inhibitors and trastuzumab is an effective, chemotherapy-free, biomarker-driven strategy for HER2-positive breast cancer.
- This regimen warrants further investigation for clinical application.
- Targeting PI3K pathway alterations in conjunction with HER2 inhibition offers a promising therapeutic approach.
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