Suspended particles for omnidirectional template sacrifice
Intervention1 paper3 findings
One human-cell study reports that suspended particles for omnidirectional template sacrifice improves viability and hepatocyte phenotype and function in engineered constructs with vascular networks, while increasing degradation of sacrificial materials and vascular templates.
- Cells1
Outcomes
3Hepatocyte phenotype and function
upin human cells1Very low certainty
1 study
Hepatocyte phenotype and function
upin human cells1Very low certainty
Suspended particles for omnidirectional template sacrifice improves hepatocyte phenotype and function in human cells.
Cellssurrounding matrix of constructs with SPOTS-produced vascular networkshepatocyte
Suspended particles for omnidirectional template sacrifice for rapid vascular patterning within engineered tissues · Science advances · 2 Oct 2026
Cell viability
upin human cells1Very low certainty
1 study
Cell viability
upin human cells1Very low certainty
Suspended particles for omnidirectional template sacrifice increases cell viability in human cells.
Cellscells embedded in constructs with SPOTS-produced vascular networksengineered tissue construct
Suspended particles for omnidirectional template sacrifice for rapid vascular patterning within engineered tissues · Science advances · 2 Oct 2026
Degradation of sacrificial materials and vascular templates
upin human cells1Very low certainty
1 study
Degradation of sacrificial materials and vascular templates
upin human cells1Very low certainty
Suspended particles for omnidirectional template sacrifice increases degradation of sacrificial materials and vascular templates in human cells.
Cellsengineered tissue construct
Suspended particles for omnidirectional template sacrifice for rapid vascular patterning within engineered tissues · Science advances · 2 Oct 2026