Establishing a pediatric solid tumor PDX biobank for precision oncology research

Larissa Akemi Kido1, Milena Rodrigues Marusco1, Ellen Aparecida da Silva1

  • 1Research Center, Boldrini Children's Center, Campinas, Brazil.

Cancer Biology & Therapy
|August 13, 2025
PubMed

Insights

Establishing pediatric patient-derived xenografts (PDX) in mice successfully models diverse solid tumors, aiding targeted therapy discovery for improved pediatric cancer outcomes.

Area of Science:

  • Oncology
  • Translational Research
  • Preclinical Models

Background:

  • Pediatric solid tumors require advanced preclinical models for effective targeted therapy development.
  • Patient-derived xenografts (PDX) offer a promising approach to recapitulate tumor heterogeneity and microenvironment.

Purpose of the Study:

  • To establish and characterize a biobank of pediatric solid tumor patient-derived xenografts (PDX).
  • To assess the fidelity of PDX models in preserving tumor morphology, genetic alterations, and fusion genes.
  • To evaluate the potential of PDX models for studying tumor biology and therapeutic responses in pediatric cancers.

Main Methods:

  • Implantation of 124 pediatric solid tumor samples into NOD/SCID/IL2Rg (NSG) mice.
  • Monitoring of tumor growth and characterization using histopathology, Short Tandem Repeat (STR) profiling, RT-PCR, and RNA-sequencing.
  • Assessment of first- and second-generation xenograft engraftment rates and molecular stability.

Main Results:

  • Successfully established 55 pediatric PDX models (44.35% engraftment rate) across 19 tumor types.
  • High engraftment rates (>55%) observed for sarcomas, including osteosarcoma and Ewing sarcoma.
  • High concordance (85.45% histopathology, 81.1% STR) and retention of driver fusion genes (92.6% in sarcoma PDXs) confirmed model fidelity.
  • Second-generation xenografts demonstrated accelerated growth, indicating host adaptation.

Conclusions:

  • Pediatric PDX models effectively capture key histological and molecular features of original tumors.
  • These models serve as a valuable resource for precision oncology, facilitating targeted therapy discovery and the study of tumor evolution.
  • The established PDX biobank demonstrates feasibility and potential to accelerate development of novel treatments for pediatric solid tumors.

Related Concept Videos