Sacrificial Biofabrication for Vascularization: Concept, Materials, Technologies, and Applications

J Jiezhong Shi (Engineering Research Center of Advanced Rare Earth Materials (Ministry of Education) Department of Chemistry Tsinghua University Beijing 100084 P.R. China) C Chunyao Wang (SINOPEC Key Laboratory of Research and Application of Medical and Hygienic Materials SINOPEC Beijing Research Institute of Chemical Industry Co., Ltd. Beijing 100013 P. R. China) X Xuan Mei (Division of Engineering in Medicine Department of Medicine Brigham and Women's Hospital Harvard Medical School Cambridge MA 02139 USA) B Ben Zhang (Department of Chemistry, Engineering Research Center of Advanced Rare Earth Materials (Ministry of Education)) J Junxi Wu R Rylie A. Green (Department of Bioengineering Imperial College London London SW7 2BX UK) Y Yu Shrike Zhang W Wenmiao Shu (Department of Biomedical Engineering University of Strathclyde Glasgow G4 0NW UK)

Abstract

Abstract Vasculature plays a crucial role in tissue engineering since it is essential for maintaining tissue viability by efficient nutrient and oxygen exchange as well as waste removal. The creation of biomimetic vascular networks is therefore critical for the development of functional tissue constructs. Sacrificial biofabrication has emerged as an effective method for engineering vascular structures by creating temporary templates that are subsequently removed to form well‐defined vascular channels. In this review, the concept of sacrificial biofabrication is introduced and defined, with a focus on vascularization. Then, a comprehensive overview of the commonly used sacrificial materials based on different types of external stimuli is provided, and the classification and design principles of surrounding materials are briefly introduced. Additionally, various fabrication technologies employed to process sacrificial materials are summarized, and the diverse applications of sacrificial biofabrication in disease models and regenerative medicine are discussed. Finally, the current challenges are highlighted, and the future perspectives for advancing sacrificial biofabrication are explored to address the demand for vasculature manufacturing.

Article Details

Volume / Issue Vol. 38, Issue 2
Published January 01, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (8)

J

Jiezhong Shi

Engineering Research Center of Advanced Rare Earth Materials (Ministry of Education) Department of Chemistry Tsinghua University Beijing 100084 P.R. China

C

Chunyao Wang

SINOPEC Key Laboratory of Research and Application of Medical and Hygienic Materials SINOPEC Beijing Research Institute of Chemical Industry Co., Ltd. Beijing 100013 P. R. China

X

Xuan Mei

Division of Engineering in Medicine Department of Medicine Brigham and Women's Hospital Harvard Medical School Cambridge MA 02139 USA

B

Ben Zhang

Department of Chemistry, Engineering Research Center of Advanced Rare Earth Materials (Ministry of Education)

J

Junxi Wu

R

Rylie A. Green

Department of Bioengineering Imperial College London London SW7 2BX UK

Y

Yu Shrike Zhang

W

Wenmiao Shu

Department of Biomedical Engineering University of Strathclyde Glasgow G4 0NW UK