International audienceVascularization plays a crucial role in bone formation and regeneration process. Development of a functional vasculature to improve survival and integration of tissue-engineered bone substitutes remains a major challenge. Biofabrication technologies, such as bioprinting, have been introduced as promising alternatives to overcome issues related to lack of prevascularization and poor organization of vascular networks within the bone substitutes. In this context, this study aimed at organizing endothelial cells in situ, in a mouse calvaria bone defect, to generate a prevascularization with a defined architecture, and promote in vivo bone regeneration. Laser-assisted bioprinting (LAB) was used to pattern Red Fluorescent Pr...
International audienceA major challenge during the engineering of voluminous bone tissues is to main...
A major challenge during the engineering of voluminous bone tissues is to maintain cell viability in...
A major challenge during the engineering of voluminous bone tissues is to maintain cell viability in...
International audienceVascularization plays a crucial role in bone formation and regeneration proces...
In order to solve the issue of poorly vascularized bone substitutes, development of a microvasculatu...
Afin de résoudre la problématique des substituts osseux faiblement vascularisés, un des challenges m...
International audienceBioprinting has emerged as a novel technological approach with the potential t...
Bioprinting has emerged as a novel technological approach with the potential to address unsolved que...
International audienceBioprinting has emerged as a novel technological approach with the potential t...
International audienceBioprinting has emerged as a novel technological approach with the potential t...
International audienceDevelopment of a microvasculature into tissue-engineered bone substitutes repr...
International audienceDevelopment of a microvasculature into tissue-engineered bone substitutes repr...
International audienceDevelopment of a microvasculature into tissue-engineered bone substitutes repr...
Development of a microvasculature into tissue-engineered bone substitutes represents a current chall...
International audienceA major challenge during the engineering of voluminous bone tissues is to main...
International audienceA major challenge during the engineering of voluminous bone tissues is to main...
A major challenge during the engineering of voluminous bone tissues is to maintain cell viability in...
A major challenge during the engineering of voluminous bone tissues is to maintain cell viability in...
International audienceVascularization plays a crucial role in bone formation and regeneration proces...
In order to solve the issue of poorly vascularized bone substitutes, development of a microvasculatu...
Afin de résoudre la problématique des substituts osseux faiblement vascularisés, un des challenges m...
International audienceBioprinting has emerged as a novel technological approach with the potential t...
Bioprinting has emerged as a novel technological approach with the potential to address unsolved que...
International audienceBioprinting has emerged as a novel technological approach with the potential t...
International audienceBioprinting has emerged as a novel technological approach with the potential t...
International audienceDevelopment of a microvasculature into tissue-engineered bone substitutes repr...
International audienceDevelopment of a microvasculature into tissue-engineered bone substitutes repr...
International audienceDevelopment of a microvasculature into tissue-engineered bone substitutes repr...
Development of a microvasculature into tissue-engineered bone substitutes represents a current chall...
International audienceA major challenge during the engineering of voluminous bone tissues is to main...
International audienceA major challenge during the engineering of voluminous bone tissues is to main...
A major challenge during the engineering of voluminous bone tissues is to maintain cell viability in...
A major challenge during the engineering of voluminous bone tissues is to maintain cell viability in...