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Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
Biomarker-guided sequential targeted therapies to overcome therapy resistance in rapidly evolving highly aggressive
Ozgur Sahin1, Qingfei Wang2, Samuel W Brady3
11] Department of Molecular and Cellular Oncology, The University of Texas MD Anderson Cancer Center, 1515 Holcombe Boulevard, Houston, TX 77030, USA [2] Department of Molecular Biology and Genetics, Faculty of Science, Bilkent University, Ankara, Turkey 06800.
Abstract:
Combinatorial targeted therapies are more effective in treating cancer by blocking by-pass mechanisms or inducing synthetic lethality. However, their clinical application is hampered by resistance and toxicity. To meet this important challenge, we developed and tested a novel concept of biomarker-guided sequential applications of various targeted therapies using ErbB2-overexpressing/PTEN-low, highly aggressive breast cancer as our model. Strikingly, sustained activation of ErbB2 and downstream pathways drives trastuzumab resistance in both PTEN-low/trastuzumab-resistant breast cancers from patients and mammary tumors with intratumoral heterogeneity from genetically-engineered mice. Although lapatinib initially inhibited trastuzumab-resistant mouse tumors, tumors by-passed the inhibition by activating the PI3K/mTOR signaling network as shown by the quantitative protein arrays. Interestingly, activation of the mTOR pathway was also observed in neoadjuvant lapatinib-treated patients manifesting lapatinib resistance. Trastuzumab + lapatinib resistance was effectively overcome by sequential application of a PI3K/mTOR dual kinase inhibitor (BEZ235) with no significant toxicity. However, our p-RTK array analysis demonstrated that BEZ235 treatment led to increased ErbB2 expression and phosphorylation in genetically-engineered mouse tumors and in 3-D, but not 2-D, culture, leading to BEZ235 resistance. Mechanistically, we identified ErbB2 protein stabilization and activation as a novel mechanism of BEZ235 resistance, which was reversed by subsequent treatment with lapatinib + BEZ235 combination. Remarkably, this sequential application of targeted therapies guided by biomarker changes in the tumors rapidly evolving resistance doubled the life-span of mice bearing exceedingly aggressive tumors. This fundamentally novel approach of using targeted therapies in a sequential order can effectively target and reprogram the signaling networks in cancers evolving resistance during treatment.
Insights
Sequential targeted therapies overcome cancer resistance. Biomarker guidance reversed resistance in aggressive breast cancer models, doubling mouse lifespan and offering a novel treatment strategy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Combinatorial targeted therapies show promise but face resistance and toxicity.
- ErbB2-overexpressing/PTEN-low breast cancer is aggressive and prone to resistance.
- Understanding resistance mechanisms is crucial for effective cancer treatment.
Purpose of the Study:
- To develop and test a novel biomarker-guided sequential targeted therapy approach.
- To investigate resistance mechanisms in ErbB2-overexpressing/PTEN-low breast cancer.
- To improve treatment outcomes for aggressive breast cancer.
Main Methods:
- Utilized genetically-engineered mouse models and patient-derived samples.
- Employed quantitative protein arrays and p-RTK arrays for signaling analysis.
- Investigated sequential drug administration and combination therapies.
Main Results:
- Sustained ErbB2 activation drives trastuzumab resistance.
- PI3K/mTOR pathway activation mediates resistance to lapatinib and BEZ235.
- ErbB2 stabilization identified as a novel resistance mechanism to BEZ235.
- Sequential therapy (lapatinib + BEZ235) reversed resistance and doubled lifespan in mice.
Conclusions:
- Biomarker-guided sequential targeted therapy is effective against aggressive breast cancer.
- This approach overcomes resistance by reprogramming signaling networks.
- Sequential therapy offers a promising strategy to improve patient outcomes.
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