Related Experiment Video
Updated: Dec 15, 2025

Establishment and Histological Analysis of Esophageal Organoids Modeling the Progression from Normal to Cancerous Tissues
Published on: May 30, 2025
Tumor organoids to study gastroesophageal cancer: a primer
Ramon U Jin1, Jason C Mills2,3,4
1Division of Oncology, Department of Internal Medicine, Washington University School of Medicine, St. Louis, MO 63130, USA.
Abstract:
Gastroesophageal cancers are leading causes of cancer death. Our attempts at adopting molecularly based treatment approaches have been slow and ineffective even though we begin to identify specific targetable gene mutations and pathways. It is clear that we should no longer treat all gastroesophageal cancers as a homogeneous disease, which is what we do when we use non-specific chemotherapy. However, we currently cannot monitor successful gene/pathway targeting, nor understand how/when tumors develop resistance, nor predict which patients will derive maximal benefit. To improve outcomes, we must precisely detail the heterogeneity of these tumors to then individualize cancer therapy as well as develop novel avenues to study and predict treatment effects in individual patients. To this end, patient-derived organoids, in which tumor cells from individual patients are grown in a Petri dish, are a new versatile system that allows for timely expandability, detailed molecular characterization, and genetic manipulation with the promise of enabling predictive assessment of treatment response. In this review, we will explore the development and basic techniques for organoid generation, and discuss the current and potential future applications of this exciting technology to study the basic science of carcinogenesis and to predict/guide cancer patient care in the clinics.
Insights
Patient-derived organoids offer a new way to study gastroesophageal cancers. This technology helps personalize treatment and predict patient response for better outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Gastroesophageal cancers are a major cause of cancer mortality.
- Current treatments lack personalization due to tumor heterogeneity.
- Targeted therapies are hindered by an inability to monitor efficacy or resistance.
Purpose of the Study:
- To review the development and techniques of patient-derived organoids (PDOs).
- To discuss the application of PDOs in understanding gastroesophageal cancer biology.
- To explore the potential of PDOs in predicting treatment response and guiding clinical care.
Main Methods:
- Review of current literature on organoid generation and application.
- Discussion of PDOs as a model for tumor heterogeneity.
- Exploration of PDOs for molecular characterization and genetic manipulation.
Main Results:
- PDOs provide a scalable system for studying individual tumors.
- PDOs allow for detailed molecular profiling and genetic analysis.
- PDOs show promise for predicting treatment efficacy and resistance.
Conclusions:
- Patient-derived organoids represent a versatile tool for advancing gastroesophageal cancer research.
- Organoid technology can facilitate personalized medicine by predicting treatment response.
- PDOs hold significant potential for improving patient outcomes in clinical oncology.

