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MZ1 co-operates with trastuzumab in HER2 positive breast cancer
María Del Mar Noblejas-López1,2, Cristina Nieto-Jiménez3, Eva M Galán-Moya2,4
1Translational Research Unit, Translational Oncology Laboratory, Albacete University Hospital, C/Francisco Javier de Moya esquina C/Laurel, Albacete, Spain.
Background:
Although the anti-HER2 antibody trastuzumab augments patient survival in HER2+ breast cancer, a relevant number of patients progress to this treatment. In this context, novel drug combinations are needed to increase its antitumor activity. In this work, we have evaluated the efficacy of proteolysis targeting chimera (PROTAC) compounds based on BET inhibitors (BETi) to augment the activity of trastuzumab in HER2+ breast cancer models.
Methods:
BT474 and SKBR3 HER2+ breast cancer cell lines were used. The effects of trastuzumab and the BET-PROTAC MZ1 either alone or in combination, were evaluated using MTT proliferation assays, three-dimensional invasion and adhesion cultures, flow cytometry, qPCR and Western blot. In vivo studies were carried out in a xenografted model in mice. Finally, a Clariom_S_Human transcriptomic array was applied to identify deregulated genes after treatments.
Results:
MZ1 induced a higher antiproliferative effect compared to the BETi JQ1. The combination of MZ1 and -trastuzumab significantly decreased cell proliferation, the formation of three-dimensional structures and cellular invasion compared to either of the drugs alone. Evaluation of apoptosis resulted in an increase of cell death following treatment with the combination, and biochemical studies displayed modifications of apoptosis and DNA damage components. In vivo administration of agents alone or combined, to tumors orthotopically xenografted in mice, resulted in a decrease of the tumor volume only after MZ1-Trastuzumab combination treatment. Results from a transcriptomic array indicated a series of newly described transcription factors including HOXB7, MEIS2, TCERG1, and DNAJC2, that were associated to poor outcome in HER2+ breast cancer subtype and downregulated by the MZ1-trastuzumab combination.
Conclusions:
We describe an active novel combination that includes the BET-PROTAC MZ1 and trastuzumab, in HER2+ tumors. Further studies should be performed to confirm these findings and pave the way for their future clinical development.
Insights
The novel BET inhibitor proteolysis targeting chimera (PROTAC) MZ1 combined with trastuzumab significantly reduced HER2+ breast cancer cell proliferation and tumor growth in preclinical models. This combination also increased apoptosis and downregulated key genes associated with poor outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Trastuzumab improves survival in HER2+ breast cancer but resistance limits efficacy.
- Novel drug combinations are crucial to overcome treatment resistance and enhance antitumor activity.
- Proteolysis targeting chimera (PROTAC) compounds offer a new therapeutic strategy.
Purpose of the Study:
- To evaluate the efficacy of BET inhibitor-based PROTACs combined with trastuzumab in HER2+ breast cancer models.
- To determine if BET-PROTACs can augment the antitumor activity of trastuzumab.
Main Methods:
- Utilized BT474 and SKBR3 HER2+ breast cancer cell lines.
- Assessed drug effects using proliferation assays, 3D invasion/adhesion cultures, flow cytometry, qPCR, and Western blot.
- Conducted in vivo studies in a xenografted mouse model and transcriptomic analysis.
Main Results:
- The BET-PROTAC MZ1 demonstrated superior antiproliferative effects compared to BET inhibitor JQ1.
- The MZ1-trastuzumab combination significantly reduced cell proliferation, 3D structure formation, and invasion.
- In vivo studies showed decreased tumor volume only with the MZ1-trastuzumab combination, which also increased apoptosis and downregulated poor-outcome genes.
Conclusions:
- The combination of BET-PROTAC MZ1 and trastuzumab is an active novel therapeutic strategy for HER2+ tumors.
- Further studies are warranted to validate these findings for clinical development.
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