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Engineered Vascularized Muscle Flap
Published on: January 11, 2016
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Vascularization of tissue-engineered skeletal muscle constructs.
D Gholobova1, L Terrie1, M Gerard1
1Tissue Engineering Lab, Department of Development and Regeneration, KU Leuven, E. Sabbelaan 53, 8500, Kortrijk, Belgium.
Biomaterials
|January 31, 2020
Summary
Tissue engineering creates skeletal muscle constructs called myooids. A key challenge is developing functional vascular structures to overcome size limitations in these in vitro muscle organoids.
Area of Science:
- Biomedical Engineering
- Regenerative Medicine
- Cell Biology
Background:
- Skeletal muscle tissue can be engineered in vitro using muscle stem cells, forming three-dimensional constructs known as myooids.
- Current myooid engineering methods, despite decades of research and diverse cell/scaffold evaluations, result in constructs limited to <1 mm thickness due to diffusion constraints for nutrient supply and waste removal.
Purpose of the Study:
- To provide a concise overview of proposed approaches for developing functional vascular structures within engineered skeletal muscle organoids (myooids).
Main Methods:
- Review of existing literature and proposed strategies for vascularizing in vitro skeletal muscle constructs.
- Analysis of different cell types and scaffold materials used in myooid engineering.
- Evaluation of methods aimed at overcoming diffusion limitations in engineered tissues.
Main Results:
- The lack of integrated vascular networks is a primary limitation in current in vitro skeletal muscle organoid development, restricting construct size.
- Various strategies have been proposed to incorporate vascular structures into myooids.
- This review consolidates and summarizes these vascularization approaches.
Conclusions:
- Developing functional vascularization is crucial for advancing the scale and complexity of engineered skeletal muscle tissue.
- Addressing the vascularization challenge is critical not only for myooids but also for the broader field of organoid systems.
- Future research should focus on implementing and optimizing these vascularization techniques for enhanced skeletal muscle tissue engineering.

