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Published on: June 13, 2014
Targeting the function of the HER2 oncogene in human cancer therapeutics
1Department of Medicine, Comprehensive Cancer Center, University of California, San Francisco, CA 94143-0875, USA. mmoasser@medicine.ucsf.edu
Abstract:
The year 2007 marks exactly two decades since human epidermal growth factor receptor-2 (HER2) was functionally implicated in the pathogenesis of human breast cancer (Slamon et al., 1987). This finding established the HER2 oncogene hypothesis for the development of some human cancers. An abundance of experimental evidence compiled over the past two decades now solidly supports the HER2 oncogene hypothesis. A direct consequence of this hypothesis was the promise that inhibitors of oncogenic HER2 would be highly effective treatments for HER2-driven cancers. This treatment hypothesis has led to the development and widespread use of anti-HER2 antibodies (trastuzumab) in clinical management resulting in significantly improved clinical antitumor efficacies that have transformed the clinical practice of oncology. In the shadows of this irrefutable clinical success, scientific studies have not yet been able to mechanistically validate that trastuzumab inhibits oncogenic HER2 function and it remains possible that the current clinical advances are a consequence of the oncogene hypothesis, but not a translation of it. These looming scientific uncertainties suggest that the full promise of the treatment hypothesis may not yet have been realized. The coming decade will see a second generation of HER2-targeting agents brought into clinical testing and a renewed attempt to treat HER2-driven cancers through the inactivation of HER2. Here, I review the development of treatments that target HER2 in the context of the HER2 oncogene hypothesis, and where we stand with regards to the clinical translation of the HER2 oncogene hypothesis.
Insights
Human epidermal growth factor receptor-2 (HER2) plays a key role in breast cancer. While anti-HER2 antibodies show clinical success, their exact mechanism of action requires further scientific validation.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Human epidermal growth factor receptor-2 (HER2) was implicated in breast cancer pathogenesis in 1987.
- The HER2 oncogene hypothesis posits that HER2 drives cancer development.
- This hypothesis predicted effective treatments targeting oncogenic HER2.
Purpose of the Study:
- To review the development of HER2-targeting treatments.
- To examine the clinical translation of the HER2 oncogene hypothesis.
- To discuss the mechanistic validation of anti-HER2 therapies.
Main Methods:
- Literature review of experimental and clinical studies on HER2.
- Analysis of the HER2 oncogene hypothesis and its clinical implications.
- Evaluation of the mechanistic basis for anti-HER2 antibody efficacy.
Main Results:
- Anti-HER2 antibodies like trastuzumab have transformed breast cancer treatment.
- Despite clinical success, the precise mechanism by which trastuzumab inhibits HER2 function remains unconfirmed.
- The clinical advances may stem from the oncogene hypothesis but not necessarily its direct translation.
Conclusions:
- The full potential of HER2-targeted therapies may not yet be realized.
- Further research is needed to mechanistically validate current treatments.
- Second-generation HER2-targeting agents are anticipated to enter clinical trials, aiming for improved HER2 inactivation.
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