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Updated: May 11, 2025

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A High-Throughput Platform for Culture and 3D Imaging of Organoids
Published on: October 14, 2022
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Organoids in Dynamic Culture: Microfluidics and 3D Printing Technologies
Xin Su1, Mingqi Wang1, Ruqiang Yuan1,2
1College of Basic Medical Sciences, Dalian Medical University, Dalian, China 116044.
ACS Biomaterials Science & Engineering
|April 18, 2025
Summary
Organoid research is advancing rapidly with new 3D and dynamic cultivation methods. Technologies like 3D printing and microfluidics are enhancing applications in medicine and drug discovery.
Area of Science:
- Biomaterials and Tissue Engineering
- Regenerative Medicine
- Pharmacology
Background:
- Organoid research has significantly advanced due to progress in biomaterials and tissue engineering.
- Organoids are crucial tools in pharmacology, regenerative medicine, and precision clinical medicine.
- Emerging trends focus on multifunctional composite 3D and dynamic cultivation strategies.
Purpose of the Study:
- To provide a systematic overview of emerging trends in organoid research.
- To discuss the strengths and limitations of key enabling technologies.
- To offer insights and future research directions for the organoid field.
Main Methods:
- Review of current literature on organoid research trends.
- Analysis of enabling technologies such as 3D printing and microfluidics.
- Discussion of multifunctional composite and dynamic cultivation strategies.
Main Results:
- Organoid applications are expanding in pharmacology, regenerative medicine, and precision medicine.
- 3D printing and microfluidics are key technologies driving organoid evolution.
- Multifunctional composite and dynamic cultivation represent the forefront of organoid development.
Conclusions:
- Organoid technology is rapidly evolving with significant potential in clinical applications.
- Advanced cultivation strategies and technologies are critical for future progress.
- Continued research is needed to overcome limitations and fully realize organoid potential.

