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In Vivo Pharmacology Models for Cancer Target Research
Dawei Chen1, Xiaoyu An1,2, Xuesong Ouyang1
1Crown Bioscience Inc., San Diego, CA, USA.
Abstract:
Experimental animal tumor models have been broadly used to evaluate anticancer drugs in the preclinical setting. They have also been widely applied for drug target discovery and validation, which usually follows four experimental strategies: first, assess the roles of putative drug targets using in vivo tumorigenicity and tumor growth kinetics assays of transplanted tumors, engineered through gain-of-function (GOF) by overexpressing transgene or knock-in (KI) or loss-of-function by gene silencing using knockdown (KD) or knockout (KO) or mutation via mutagenesis procedures; second, similarly genetically engineered mouse models (GEMM), through either germline or somatic cell procedures, are used to test the roles of potential targets in spontaneous tumorigenicity assays; third, patient-derived xenografts (PDXs), which most closely resemble patient genetics and histopathology, are used in tumor inhibition assays for evaluating target-/pathway-specific inhibitors, including large and small molecules, thus assessing the drug target; and fourth, the targets can be assessed in population-based trials, mouse clinical trials (MCT), so that the validation can be generally meaningful as performed in human clinical trials. This chapter outlines the commonly used protocols in cancer drug target research: the first four sections describe four sets of different, specific pharmacology protocols used in the respective cancer modeling stages, with the last section summarizing the common protocols applicable to all four pharmacology modeling steps.
Insights
This study details four experimental strategies for validating anticancer drug targets using various animal tumor models. These methods range from genetically engineered mouse models to patient-derived xenografts, aiding preclinical drug development.
Area of Science:
- Oncology
- Pharmacology
- Translational Research
Background:
- Experimental animal tumor models are crucial for preclinical anticancer drug evaluation and target discovery.
- Validating drug targets involves assessing their role in tumor development and response to therapy.
Purpose of the Study:
- To outline common protocols for cancer drug target research.
- To describe four distinct experimental strategies for target validation in preclinical models.
Main Methods:
- Utilizing transplanted tumors engineered for gain-of-function or loss-of-function.
- Employing genetically engineered mouse models (GEMM) for spontaneous tumorigenicity assays.
- Using patient-derived xenografts (PDXs) for evaluating target-specific inhibitors.
- Incorporating mouse clinical trials (MCT) for population-based target assessment.
Main Results:
- The chapter details specific pharmacology protocols for each of the four modeling stages.
- Common protocols applicable across all modeling steps are summarized.
Conclusions:
- A comprehensive overview of cancer drug target validation methodologies is provided.
- The described strategies facilitate robust assessment of potential therapeutic targets in cancer research.
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