Human Gastric Organoids

Human gastric organoids are three-dimensional, laboratory-grown models derived from human gastric stem or progenitor cells that reproduce key features of stomach tissue, making them valuable for studying health and disease. In a defined culture environment, cells proliferate and self-organize within an extracellular matrix, while selected growth factors guide the formation of gastric epithelial structures and specialized cell types. These organoids support research on gastric development, Helicobacter pylori infection, cancer, and other gastrointestinal disorders, and provide platforms for testing drugs, investigating disease mechanisms, and developing more personalized therapeutic strategies. Their human origin can complement animal models by capturing patient-relevant biological responses.

Human Gastric Organoids - Related Videos

Research

JoVE EoE - Immunodiagnostics

Establishing an Infection Model Through Microinjection of Gastric Organoids with Pathogenic Bacteria

0 Views •

2025

This video demonstrates a method to establish a gastric organoid infection model by microinjecting gastric pathogen Helicobacter pylori into the lumen of the organoids. This model helps in studying infection-induced changes in gastric cells.

Organoids as Model for Infectious Diseases: Culture of Human and Murine Stomach Organoids and Microinjection of Helicobacter Pylori

0 Views •

Cited by 144 •

2015

Stem cell derived cultures harbor tremendous potential to model infectious diseases. Here, the culture of mouse and human gastric organoids derived from adult stem cells is described. The organoids are microinjected with the gastric pathogen Helicobacter pylori.

Generation and Genetic Manipulation of Human Cervical Organoids

0 Views •

2026

We present a detailed protocol to establish and genetically manipulate human cervical organoids.

An In Vitro Method to Generate Human Brain Organoids

0 Views •

2025

The video demonstrates a method for generating human brain organoids from induced pluripotent stem cells. It shows how the neurosphere forms a neuroectodermal layer, which suppresses the formation of other germ layers. The neurospheres are embedded in a 3D gel matrix and form neuroepithelial buds. When incubated with organoid media, these neuroepithelial buds differentiate into specific brain regions, resulting in the formation of mature brain organoids.

Roux-en-Y Gastric Bypass Operation in Rats

0 Views •

Cited by 45 •

2012

Numerous studies using gastric bypass rat models have been recently conducted to uncover the underlying physiological mechanisms of Roux-en-Y gastric bypass operations. This article aims to demonstrate and discuss the technical and experimental details of our published gastric bypass rat model to understand advantages and limitations of this experimental tool.

View All Results

FAQs

Related Topics