Integrating microfluidic and bioprinting technologies: advanced strategies for tissue vascularization

  • Mei, Xuan; 
  • Yang, Ziyi; 
  • Wang, Xiran; 
  • Shi, Alan; 
  • Blanchard, Joel; 
  • ... Kang, Heemin; 
  • 외 3명
Citations

WEB OF SCIENCE

15
Citations

SCOPUS

17

초록

Tissue engineering offers immense potential for addressing the unmet needs in repairing tissue damage and organ failure. Vascularization, the development of intricate blood vessel networks, is crucial for the survival and functions of engineered tissues. Nevertheless, the persistent challenge of ensuring an ample nutrient supply within implanted tissues remains, primarily due to the inadequate formation of blood vessels. This issue underscores the vital role of the human vascular system in sustaining cellular functions, facilitating nutrient exchange, and removing metabolic waste products. In response to this challenge, new approaches have been explored. Microfluidic devices, emulating natural blood vessels, serve as valuable tools for investigating angiogenesis and allowing the formation of microvascular networks. In parallel, bioprinting technologies enable precise placement of cells and biomaterials, culminating in vascular structures that closely resemble the native vessels. To this end, the synergy of microfluidics and bioprinting has further opened up exciting possibilities in vascularization, encompassing innovations such as microfluidic bioprinting. These advancements hold great promise in regenerative medicine, facilitating the creation of functional tissues for applications ranging from transplantation to disease modeling and drug testing. This review explores the potentially transformative impact of microfluidic and bioprinting technologies on vascularization strategies within the scope of tissue engineering.

키워드

Blood Vessel Prostheses; Fluidic Logic Devices; Regenerative Medicine; Tissue Engineering; Bioprinting; Damage Failures; Engineered Tissues; Human Vascular Systems; Nutrient Supply; Organ Failure; Tissue Damage; Tissues Engineerings; Vascularization; Vessel Networks; Blood Vessels; Biomaterial; Angiogenesis; Bioprinting; Cardiovascular System; Cell Function; Drug Screening; Engineered Tissue; Human; Microfluidic Device; Microfluidics; Microvasculature; Nutrient Supply; Pharmaceutics; Regenerative Medicine; Review; Tissue Engineering; Tissue Injury; Vascularization; Animal; Devices; Microfluidic Analysis; Animals; Humans; Microfluidic Analytical Techniques; Neovascularization, Physiologic; Tissue Engineering; AGE-RELATED-CHANGES; ENDOTHELIAL-CELLS; SOFT LITHOGRAPHY; SCAFFOLD DESIGN; BIOMEDICAL APPLICATIONS; SIGNAL-TRANSDUCTION; SYNTHETIC-POLYMERS; ENGINEERED BONE; 3D; BIOMATERIALS
제목
Integrating microfluidic and bioprinting technologies: advanced strategies for tissue vascularization
저자
Mei, Xuan; Yang, Ziyi; Wang, Xiran; Shi, Alan; Blanchard, Joel; Elahi, Fanny; Kang, Heemin; Orive, Gorka; Zhang, Yu Shrike
DOI
10.1039/d4lc00280f
발행일
2025-01-07
유형
Review; Early Access
저널명
Lab on a Chip
권
25
호
5
페이지
764 ~ 786