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Updated: May 13, 2026

Micropatterning and Assembly of 3D Microvessels
Published on: September 9, 2016
Self-Organized Vascularized Microtissue Based on the Human Microvascular Unit for Tissue Repair and Regeneration
Yu Gao1, Cheng Liang1, Bingqian Yang1
1State Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, and Engineering Research Center of Oral Translational Medicine, Ministry of Education and National Engineering Laboratory for Oral Regenerative Medicine, West China Hospital of Stomatology, Sichuan University, Chengdu 610000, China.
None:
Insufficient blood circulation in injured regions is a critical challenge that hinders the application of engineered tissue in the regeneration of tissue defects or losses. Here, we developed a three-dimensional culture system that enables human microvascular units (MVUs) to expand and self-organize into vascularized microtissues containing well-formed microvascular structures and stem-cell-derived functional stroma. Moreover, the vascularized microtissue is customizable in both shape and size. The functionality of vascularized microtissues was evaluated in various tissue defect models including spinal cord injury, skin defects, and femoral bone defects. In vivo evidence confirmed that transplantation of customized vascularized microtissues efficiently enhanced nerve function and motor recovery in the spinal cord injury model, accelerated wound closure, facilitated skin appendage regeneration in the skin defect model, and boosted bone regeneration in the femoral defect model. These findings highlight the potential of vascularized microtissues as an efficient platform for repairing and regenerating diverse tissues.
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