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Published on: June 28, 2018
Preclinical Modeling of Pathway-Targeted Therapy of Human Lung Cancer in the Mouse
Aria Vaishnavi1, Conan G Kinsey1,2, Martin McMahon3,4,5
1Huntsman Cancer Institute, University of Utah, Salt Lake City, Utah 84112, USA.
Abstract:
Animal models, particularly genetically engineered mouse models (GEMMs), continue to have a transformative impact on our understanding of the initiation and progression of hematological malignancies and solid tumors. Furthermore, GEMMs have been employed in the design and optimization of potent anticancer therapies. Increasingly, drug responses are assessed in mouse models either prior, or in parallel, to the implementation of precision medical oncology, in which groups of patients with genetically stratified cancers are treated with drugs that target the relevant oncoprotein such that mechanisms of drug sensitivity or resistance may be identified. Subsequently, this has led to the design and preclinical testing of combination therapies designed to forestall the onset of drug resistance. Indeed, mouse models of human lung cancer represent a paradigm for how a wide variety of GEMMs, driven by a variety of oncogenic drivers, have been generated to study initiation, progression, and maintenance of this disease as well as response to drugs. These studies have now expanded beyond targeted therapy to include immunotherapy. We highlight key aspects of the relationship between mouse models and the evolution of therapeutic approaches, including oncogene-targeted therapies, immunotherapies, acquired drug resistance, and ways in which successful antitumor strategies improve on efficiently translating preclinical approaches into successful antitumor strategies in patients.
Insights
Genetically engineered mouse models (GEMMs) are crucial for understanding cancer development and testing new therapies. These models accelerate the translation of preclinical findings into effective patient treatments, improving cancer care.
Area of Science:
- Oncology
- Translational Medicine
- Genetics
Background:
- Genetically engineered mouse models (GEMMs) are vital tools in cancer research.
- They aid in understanding cancer initiation, progression, and drug response.
- GEMMs are increasingly used in precision medicine and preclinical drug development.
Purpose of the Study:
- To highlight the impact of GEMMs on cancer research and therapy development.
- To illustrate how GEMMs facilitate the study of targeted therapies and immunotherapies.
- To emphasize the role of GEMMs in translating preclinical findings to clinical applications.
Main Methods:
- Review and synthesis of current research on GEMMs in oncology.
- Analysis of the application of GEMMs in studying cancer initiation, progression, and drug resistance.
- Examination of the role of GEMMs in evaluating targeted therapies and immunotherapies.
Main Results:
- GEMMs have significantly advanced the understanding of hematological malignancies and solid tumors.
- These models are instrumental in assessing drug responses and optimizing anticancer therapies.
- GEMMs enable the study of drug sensitivity, resistance, and the development of combination therapies.
Conclusions:
- GEMMs are indispensable for preclinical cancer research and therapeutic strategy development.
- The use of GEMMs accelerates the translation of effective anticancer strategies to patients.
- Continued development and application of GEMMs will drive further progress in oncology.
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