Humanized Mouse Models for Immuno-oncology Drug Discovery

Rajendra Kumari1, Gerold Feuer1, Ludovic Bourré1

  • 1Crown Bioscience Inc., San Diego, California, USA.

Current Protocols
|August 8, 2023
PubMed

Insights

Humanized mice models improve understanding of cancer-immunity cycles and aid in developing novel immunotherapeutics. These advanced preclinical models are crucial for assessing treatment efficacy and safety in immuno-oncology drug discovery.

Area of Science:

  • Immuno-oncology
  • Translational research
  • Preclinical drug development

Background:

  • Immunotherapeutics offer long-term cancer patient benefits, but response rates vary, and resistance mechanisms remain unclear.
  • Effective preclinical models are essential for understanding the tumor microenvironment and screening novel cancer treatments.
  • Humanized mice, incorporating human tumors and immune cells, are valuable tools in immuno-oncology research.

Purpose of the Study:

  • To review recent advancements in humanized mouse models for immuno-oncology drug discovery.
  • To discuss the benefits and drawbacks of these models in cancer research.
  • To explore their application in evaluating immunotherapeutic efficacy and safety.

Main Methods:

  • Overview of humanized mouse models, including human tumor and immune cell engraftment.
  • Discussion of model improvements focusing on humanization and translational relevance.
  • Analysis of applications in efficacy and safety/toxicity assessments of immunotherapeutics.

Main Results:

  • Humanized models offer a more comprehensive recapitulation of the human tumor microenvironment.
  • These models facilitate the study of complex interactions within the cancer-immunity cycle.
  • Recent developments enhance the translational value of humanized mice for drug discovery.

Conclusions:

  • Humanized mouse models are pivotal for advancing immuno-oncology drug discovery.
  • Continued development of these models is key to overcoming challenges in cancer treatment.
  • They provide critical insights for the efficacy and safety evaluation of novel immunotherapeutics.