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Isolation and Functional Assessment of Human Breast Cancer Stem Cells from Cell and Tissue Samples
Published on: October 2, 2020
β1 integrin mediates an alternative survival pathway in breast cancer cells resistant to lapatinib
Catherine Huang1, Catherine C Park, Susan G Hilsenbeck
1Lester and Sue Smith Breast Center, Baylor College of Medicine, One Baylor Plaza, Houston, TX 77054, USA.
Introduction:
The overexpression of human epidermal growth factor receptor (HER)-2 in 20% of human breast cancers and its association with aggressive growth has led to widespread use of HER2-targeted therapies, such as trastuzumab (T) and lapatinib (L). Despite the success of these drugs, their efficacy is limited in patients whose tumors demonstrate de novo or acquired resistance to treatment. The β1 integrin resides on the membrane of the breast cancer cell, activating several elements of breast tumor progression including proliferation and survival.
Methods:
We developed a panel of HER2-overexpressing cell lines resistant to L, T, and the potent LT combination through long-term exposure and validated these models in 3D culture. Parental and L/T/LT-resistant cells were subject to HER2 and β1 integrin inhibitors in 3D and monitored for 12 days, followed by quantification of colony number. Parallel experiments were conducted where cells were either stained for Ki-67 and Terminal deoxynucleotidyl transferase dUTP nick end labeling (TUNEL) or harvested for protein and analyzed by immunoblot. Results were subjected to statistical testing using analysis of variance and linear contrasts, followed by adjustment with the Sidak method.
Results:
Using multiple cell lines including BT474 and HCC1954, we reveal that in L and LT resistance, where phosphorylation of EGFR/HER1, HER2, and HER3 are strongly inhibited, kinases downstream of β1 integrin--including focal adhesion kinase (FAK) and Src--are up-regulated. Blockade of β1 by the antibody AIIB2 abrogates this up-regulation and functionally achieves significant growth inhibition of L and LT resistant cells in 3D, without dramatically affecting the parental cells. SiRNA against β1 as well as pharmacologic inhibition of FAK achieve the same growth inhibitory effect. In contrast, trastuzumab-resistant cells, which retain high levels of phosphorylated EGFR/HER1, HER2, and HER3, are only modestly growth-inhibited by AIIB2.
Conclusions:
Our data suggest that HER2 activity, which is suppressed in resistance involving L but not T alone, dictates whether β1 mediates an alternative pathway driving resistance. Our findings justify clinical studies investigating the inhibition of β1 or its downstream signaling moieties as strategies to overcome acquired L and LT resistance.
Insights
Targeting β1 integrin overcomes resistance to HER2-targeted therapies in breast cancer. Inhibiting β1 or its downstream signaling pathways offers a new strategy for treating patients with lapatinib or lapatinib-trastuzumab resistance.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Human epidermal growth factor receptor 2 (HER2) overexpression drives aggressive breast cancer, necessitating targeted therapies like trastuzumab (T) and lapatinib (L).
- Acquired or de novo resistance to HER2-targeted therapies limits clinical efficacy.
- β1 integrin signaling promotes breast cancer cell proliferation and survival.
Purpose of the Study:
- To investigate the role of β1 integrin in acquired resistance to HER2-targeted therapies (lapatinib, trastuzumab, and their combination).
- To evaluate the therapeutic potential of targeting β1 integrin or its downstream effectors in resistant breast cancer models.
Main Methods:
- Developed HER2-overexpressing breast cancer cell lines resistant to lapatinib (L), trastuzumab (T), and the combination (LT) via long-term drug exposure.
- Validated resistant models in 3D culture and assessed the impact of HER2 and β1 integrin inhibitors.
- Quantified cell growth, proliferation (Ki-67), apoptosis (TUNEL), and downstream signaling pathway activation (e.g., FAK, Src) via immunoblotting.
Main Results:
- Lapatinib and combination resistance involved upregulation of β1 integrin downstream kinases (FAK, Src), despite inhibited HER2 signaling.
- β1 integrin blockade (antibody AIIB2, siRNA) significantly inhibited growth in L- and LT-resistant cells but not parental cells.
- Pharmacologic inhibition of FAK mimicked the growth inhibitory effects of β1 blockade.
- Trastuzumab-resistant cells, retaining HER2 activity, showed only modest growth inhibition with β1 blockade.
Conclusions:
- HER2 signaling status dictates whether β1 integrin mediates resistance to HER2-targeted therapies.
- Targeting β1 integrin or its downstream signaling pathways (e.g., FAK) is a promising strategy to overcome acquired resistance to lapatinib and combination therapy.
- Findings support clinical investigation of β1 integrin-targeted therapies for resistant breast cancer.
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