3D Bioprinted Gastric Cancer Model Uses Patient-Derived Tissue Fragments to Predict Drug Response
By LabMedica International staff writers Posted on 10 Feb 2025 |
Tumor heterogeneity presents a major obstacle in the development and treatment of cancer therapies, as patients' responses to the same drug can differ, and the timing of treatment significantly influences prognosis. Consequently, technologies that predict the effectiveness of anticancer treatments are essential in minimizing side effects and improving treatment efficiency. Current methods, such as gene panel-based tests and patient-derived xenograft (PDX) models, have limitations in their applicability to certain patients, have challenges in predicting drug effects, and require significant time and costs to develop. Now, researchers have successfully created a gastric cancer model using 3D bioprinting technology and patient-derived cancer tissue fragments. This groundbreaking model preserves the characteristics of actual patient tissues and is expected to rapidly assess and predict individual patient drug responses.
In collaborative research by Pohang University of Science & Technology (POSTECH, Gyeongbuk, Korea) and The Jackson Laboratory for Genomic Medicine (Farmington, CT, USA), scientists have developed an in vitro gastric cancer model by utilizing 3D bioprinting technology and tissue-specific bioink that incorporated patient-derived tissue fragments. Notably, they encapsulated cancer tissues within a stomach-derived decellularized extracellular matrix (dECM) hydrogel, which artificially facilitated cell-matrix interactions. By co-culturing these tissues with human gastric fibroblasts, they successfully replicated cancer cell-stroma interactions, thereby recreating the in vivo tumor microenvironment in vitro.
Published in the international journal Advanced Science, the research shows that this model preserved the distinct characteristics of gastric tissues from individual patients by replicating both cell-stroma and cell-matrix interactions. It demonstrated high specificity in predicting the patient's anticancer drug responses and prognosis. Additionally, the model's gene profiles related to cancer development, progression, and drug response closely mirrored those of patient tissues, outperforming conventional PDX models. The rapid fabrication process of this model through bioprinting also allows drug evaluation within two weeks of tumor tissue extraction from the patient. This efficient platform is expected to make a significant contribution to the development of personalized cancer treatments.
“By reproducing cancer cell-stroma and cell-matrix interactions, this model enhances the accuracy of drug response predictions and reduces unnecessary drug administration to non-responsive patients,” said Professor Charles Lee from The Jackson Laboratory for Genomic Medicine, who led the study.
“This is a critical preclinical platform not only for developing patient-specific treatments but also for validating new anticancer drugs and combination therapies,” added Professor Jinah Jang of POSTECH.
Related Links:
POSTECH
The Jackson Laboratory for Genomic Medicine
Latest Pathology News
- New AI Model Predicts Gene Variants’ Effects on Specific Diseases
- Powerful AI Tool Diagnoses Coeliac Disease from Biopsy Images with Over 97% Accuracy
- Pre-Analytical Conditions Influence Cell-Free MicroRNA Stability in Blood Plasma Samples
- 3D Cell Culture System Could Revolutionize Cancer Diagnostics
- Painless Technique Measures Glucose Concentrations in Solution and Tissue Via Sound Waves
- Skin-Based Test to Improve Diagnosis of Rare, Debilitating Neurodegenerative Disease
- Serum Uromodulin Could Indicate Acute Kidney Injury in COVID-19 Patients
- AI Model Reveals True Biological Age From Five Drops of Blood
- First-Of-Its-Kind AI Tool Visualizes Cell’s ‘Social Network’ To Treat Cancer
- New Test Diagnoses High-Risk Childhood Brain Tumors
- Informatics Solution Elevates Laboratory Efficiency and Patient Care
- Microfluidic Device Assesses Stickiness of Tumor Cells to Predict Cancer Spread
- New AI Tool Outperforms Previous Methods for Identifying Colorectal Cancer from Tissue Sample Analysis
- New Technique Predicts Aggressive Tumors Before They Metastasize
- Butterfly Wings-Inspired Imaging Technique Enables Faster Cancer Diagnosis
- Machine Learning Tool Enables AI-Assisted Diagnosis of Immunological Diseases
Channels
Clinical Chemistry
view channel
Carbon Nanotubes Help Build Highly Accurate Sensors for Continuous Health Monitoring
Current sensors can measure various health indicators, such as blood glucose levels, in the body. However, there is a need to develop more accurate and sensitive sensor materials that can detect lower... Read more
Paper-Based Device Boosts HIV Test Accuracy from Dried Blood Samples
In regions where access to clinics for routine blood tests presents financial and logistical obstacles, HIV patients are increasingly able to collect and send a drop of blood using paper-based devices... Read moreMolecular Diagnostics
view channel
Simple DNA PCR-Based Lab Test to Enable Personalized Treatment of Bacterial Vaginosis
Approximately one in three women aged 14-49 in the United States will experience bacterial vaginosis (BV), a vaginal bacterial imbalance, at some point in their lives. Around 50% of BV cases do not present... Read more
Rapid Diagnostic Test to Halt Mother-To-Child Hepatitis B Transmission
Hepatitis B, an inflammation of the liver caused by the hepatitis B virus (HBV), is the second-leading infectious cause of death globally, following tuberculosis. This viral infection can result in serious... Read moreHematology
view channel
New Scoring System Predicts Risk of Developing Cancer from Common Blood Disorder
Clonal cytopenia of undetermined significance (CCUS) is a blood disorder commonly found in older adults, characterized by mutations in blood cells and a low blood count, but without any obvious cause or... Read more
Non-Invasive Prenatal Test for Fetal RhD Status Demonstrates 100% Accuracy
In the United States, approximately 15% of pregnant individuals are RhD-negative. However, in about 40% of these cases, the fetus is also RhD-negative, making the administration of RhoGAM unnecessary.... Read moreMicrobiology
view channel
Breakthrough Diagnostic Technology Identifies Bacterial Infections with Almost 100% Accuracy within Three Hours
Rapid and precise identification of pathogenic microbes in patient samples is essential for the effective treatment of acute infectious diseases, such as sepsis. The fluorescence in situ hybridization... Read moreInnovative ID/AST System to Help Diagnose Infectious Diseases and Combat AMR
Each year, 11 million people across the world die of sepsis out of which 1.3 million deaths are due to antibiotic-resistant bacteria. The burden of antimicrobial resistance (AMR) continues to weigh heavily,... Read more
Gastrointestinal Panel Delivers Rapid Detection of Five Common Bacterial Pathogens for Outpatient Use
Acute infectious gastroenteritis results in approximately 179 million cases each year in the United States, leading to a significant number of outpatient visits and hospitalizations. To address this, a... Read morePathology
view channel
New AI Model Predicts Gene Variants’ Effects on Specific Diseases
In recent years, artificial intelligence (AI) has greatly enhanced our ability to identify a vast number of genetic variants in increasingly larger populations. However, up to half of these variants are... Read more
Powerful AI Tool Diagnoses Coeliac Disease from Biopsy Images with Over 97% Accuracy
Coeliac disease is an autoimmune disorder triggered by the consumption of gluten, causing symptoms such as stomach cramps, diarrhea, skin rashes, weight loss, fatigue, and anemia. Due to the wide variation... Read moreTechnology
view channel
Smartphones Could Diagnose Diseases Using Infrared Scans
Rapid advancements in technology may soon make it possible for individuals to bypass invasive medical procedures by simply uploading a screenshot of their lab results from their phone directly to their doctor.... Read more
Novel Sensor Technology to Enable Early Diagnoses of Metabolic and Cardiovascular Disorders
Metabolites are critical compounds that fuel life's essential functions, playing a key role in producing energy, regulating cellular activities, and maintaining the balance of bodily systems.... Read more
3D Printing Breakthrough Enables Large Scale Development of Tiny Microfluidic Devices
Microfluidic devices are diagnostic systems capable of analyzing small volumes of materials with precision and speed. These devices are used in a variety of applications, including cancer cell analysis,... Read moreIndustry
view channel
Philips and Ibex Expand Partnership to Enhance AI-Enabled Pathology Workflows
Royal Philips (Amsterdam, The Netherlands) has expanded its partnership with Ibex Medical Analytics (Tel Aviv, Israel) and released the new Philips IntelliSite Pathology Solution (PIPS) to further accelerate... Read more
Grifols and Inpeco Partner to Deliver Transfusion Medicine ‘Lab of The Future’
Grifols (Barcelona, Spain), a manufacturer of plasma-derived medicines and innovative diagnostic solutions, has entered into a strategic agreement with Inpeco (Novazzano, Switzerland), a global leader... Read more