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Updated: Feb 10, 2026

Combining Human Organoids and Organ-on-a-Chip Technology to Model Intestinal Region-Specific Functionality
Published on: May 5, 2022
Use and application of 3D-organoid technology
Benedetta Artegiani1,2, Hans Clevers1,2
1Hubrecht Institute, Royal Netherlands Academy of Arts and Sciences, University Medical Center Utrecht and University Utrecht, The Netherlands.
3D organoid cultures offer a near-physiological model for studying organ function. This review covers organoid applications in disease modeling, genetic correction, and understanding gene and cell functions, with future outlooks.
Area of Science:
- Biomedical Engineering
- Developmental Biology
- Regenerative Medicine
Background:
- Three-dimensional (3D) organoid cultures increasingly serve as advanced models in biological research.
- Organoids exhibit remarkable resemblance to in vivo tissue organization and functionality.
- Their potential spans basic research to clinical applications, including personalized medicine.
Purpose of the Study:
- To review key findings and applications of organoid technology.
- To discuss the utility of organoids in disease and tumor modeling.
- To explore the role of organoids in genetic mutation correction and gene/cell function studies.
Main Methods:
- Literature review of organoid technology research.
- Analysis of studies utilizing organoids for disease and tumor modeling.
- Examination of research on genetic correction and functional studies using organoids.
Main Results:
- Organoids provide a powerful platform for mimicking physiological conditions and organ functionality.
- Significant advancements have been made in disease and tumor modeling using organoids.
- Organoid technology shows promise for understanding gene and cell functions and correcting genetic defects.
Conclusions:
- Organoid technology is a versatile tool with broad applications in biomedical research.
- Future developments in organoid technology are expected to further enhance their utility in medicine.
- Organoids represent a significant step towards personalized medicine and advanced disease modeling.
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