Organoid Luminal Environment

Organoid luminal environment refers to the biochemical and physical conditions within the internal cavity, or lumen, of a three-dimensional organoid, where secreted products, nutrients, ions, and signaling molecules can accumulate. In many organoids, polarized epithelial cells release material toward the lumen, while tight junctions and limited fluid exchange create a distinct compartment that can differ from the surrounding culture medium. Studying this microenvironment helps researchers model tissue physiology, host–microbe interactions, disease-associated secretions, and drug responses in medicine. Controlling or sampling luminal contents can also clarify how organoids reproduce organ-specific functions and reveal limitations caused by swelling, altered pressure, or restricted access.

Organoid Luminal Environment - Related Videos

Research

JoVE Journal - Medicine

Profiling Luminal pH in Three-Dimensional Gastrointestinal Organoids Using Microelectrodes

0 Views •

Cited by 2 •

2024

The present protocol describes pH measurements in human tissue-derived gastric organoids using microelectrodes for spatiotemporal characterization of intraluminal physiology.

Whole-mount Immunofluorescence Imaging: A Fixing and Staining Technique to Evaluate Intact Organoids

0 Views •

2023

This video describes the technique of immunofluorescent staining of intact prostate cancer organoids and their imaging by whole-mount confocal microscopy. This technique aims to evaluate the ex vivo differentiation capacity of basal and luminal prostate epithelial cells.

Organoid Electroporation: A Method to Transfect Plasmid DNA into Gastrointestinal Organoids

0 Views •

2023

This video describes the electroporation protocol for transfecting large plasmids into three-dimensional gastrointestinal organoids to prove its universal functionality in different entities, namely pancreatic ductal adenocarcinoma (PDAC), colorectal cancer (CRC), cholangiocarcinoma (CCC), and gastric cancer (GC) organoids.

Generating an Organoid Culture from a Brain Tumor Cell Suspension

0 Views •

2025

This video describes the preparation and cultivation of brain tumor organoids from single-cell suspension. Using a laminin-rich extracellular matrix as a scaffold and culture media for nutrients, cells are facilitated to multiply and self-organize within the organoid. Consequently, ex vivo organoids are generated, mimicking cellular diversity and the microenvironment of brain tumors.

Prostate Organoid Assay: A Matrix Gel Ring-based Ex Vivo Culture Technique to Study the Differentiation Capacity of Prostate Epithelial Cells

0 Views •

2023

In this video, we demonstrate the culturing of isolated mouse prostate epithelial cells using a matrix gel-ring based culture technique. This approach can provide complementary information about the differentiation capacity of prostate epithelial cells to form 3D glandular structures in response to genetic or pharmacological manipulation.

View All Results

FAQs

Related Topics