Related Experiment Video
Updated: Dec 31, 2025

Author Spotlight: Establishment of Pancreatic Cancer-Derived Tumor Organoids and Fibroblasts From Fresh Tissue
Published on: May 26, 2023
Applications of patient-derived tumor xenograft models and tumor organoids
Go J Yoshida1,2
1Department of Pathology and Oncology, Juntendo University School of Medicine, 2-1-1, Hongo, Bunkyo-ku, Tokyo, 113-8412, Japan. go-yoshida@juntendo.ac.jp.
Abstract:
Patient-derived tumor xenografts (PDXs), in which tumor fragments surgically dissected from cancer patients are directly transplanted into immunodeficient mice, have emerged as a useful model for translational research aimed at facilitating precision medicine. PDX susceptibility to anti-cancer drugs is closely correlated with clinical data in patients, from whom PDX models have been derived. Accumulating evidence suggests that PDX models are highly effective in predicting the efficacy of both conventional and novel anti-cancer therapeutics. This also allows "co-clinical trials," in which pre-clinical investigations in vivo and clinical trials could be performed in parallel or sequentially to assess drug efficacy in patients and PDXs. However, tumor heterogeneity present in PDX models and in the original tumor samples constitutes an obstacle for application of PDX models. Moreover, human stromal cells originally present in tumors dissected from patients are gradually replaced by host stromal cells as the xenograft grows. This replacement by murine stroma could preclude analysis of human tumor-stroma interactions, as some mouse stromal cytokines might not affect human carcinoma cells in PDX models. The present review highlights the biological and clinical significance of PDX models and three-dimensional patient-derived tumor organoid cultures of several kinds of solid tumors, such as those of the colon, pancreas, brain, breast, lung, skin, and ovary.
Insights
Patient-derived tumor xenografts (PDXs) are valuable for precision medicine, closely mirroring patient drug responses. However, challenges like tumor heterogeneity and stromal cell replacement need addressing for broader application.
Area of Science:
- Oncology
- Translational Research
- Preclinical Models
Background:
- Patient-derived tumor xenografts (PDXs) are critical for translational research and precision medicine.
- PDX drug susceptibility correlates with clinical patient data, aiding therapeutic predictions.
- PDXs enable co-clinical trials, integrating preclinical and clinical drug efficacy assessments.
Purpose of the Study:
- To review the biological and clinical significance of PDX models.
- To discuss the utility of PDX models and 3D patient-derived tumor organoid cultures.
- To highlight applications in various solid tumors like colon, pancreas, and breast cancer.
Main Methods:
- Review of existing literature on PDX models and organoid cultures.
- Analysis of PDX correlation with clinical data.
- Discussion of challenges and future directions in PDX model application.
Main Results:
- PDX models demonstrate high efficacy in predicting anti-cancer drug responses.
- PDXs facilitate parallel preclinical and clinical trial designs.
- Tumor heterogeneity and murine stromal cell replacement are identified limitations.
Conclusions:
- PDX models are powerful tools for precision oncology, despite existing challenges.
- 3D patient-derived tumor organoid cultures offer complementary insights.
- Further research is needed to overcome PDX model limitations for enhanced clinical translation.

