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Manipulation of cellular spheroid composition and the effects on vascular tissue fusion
ArticleAbstract: Cellular spheroids were investigated as tissue-engineered building blocks that can be fused to formPalabras claves:Magnetic nanoparticles, Magnetic patterning, spheroids, Tissue engineering, Tissue fusionAutores:Casco M., Frank Alexis, Herbst A., Mattix B.M., Olsen T.R., Simionescu D.T., Tarasidis A., Visconti R.P., Williams C.Fuentes:scopusLongitudinal stretching for maturation of vascular tissues using magnetic forces
ArticleAbstract: Cellular spheroids were studied to determine their use as “bioinks” in the biofabrication of tissuePalabras claves:Magnetic forces, Magnetic nanoparticles, spheroids, Tissue engineering, Tissue fusion, Tissue maturationAutores:Barry K., Casco M., Evans G., Frank Alexis, Herbst A., Jaeggli M.P., Olsen T.R., Pruett L., Reid J., Rothermel T., Simionescu D.T., Visconti R.P.Fuentes:scopusJanus magnetic cellular spheroids for vascular tissue engineering
ArticleAbstract: Cell aggregates, or spheroids, have been used as building blocks to fabricate scaffold-free tissuesPalabras claves:Iron oxide, Magnetic nanoparticles, spheroids, Tissue engineering, Tissue fusionAutores:Casco M., Frank Alexis, Mattix B.M., Olsen T.R., Poole J.T., Reese L., Simionescu A., Simionescu D.T., Visconti R.P., Zhang J.Fuentes:scopus