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Results 1-10 of 11
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Issue DateTitleAuthor(s)
1-Aug-2015Endothelial derivatives of human pluripotent stem cells show antiplatelet effects in 3D culture -steps towards vascular tissue engineeringGara, E; Merkely, B; Skopal, J; Polos, M; Hartyanszky, I, et al
29-May-20173D culture conditioning modulates arterial specification of human pluripotent stem cells-derived endothelial cellsFoldes, G; Gara, E; Husveth-Toth, M; Nemes, A; Merkely, B, et al
1-Apr-2018Toxicity profiling of cardiac transcription factor-targeted compounds in various cardiac and stem cell types reveals cell type-and compound-dependent toxicityKarhu, ST; Valimaki, M; Jumppanen, M; Pohjolainen, L; Leigh, R, et al
1-Mar-2018Low levels of the A3243G MTDNA mutation in human induced pluripotent stem cellcardiomyocytes do not cause functional or metabolic disturbances but increase with further passagingRicardo, CP; Hellen, N; Foldes, G; Kodagoda, T; Terracciano, CM, et al
23-Apr-2018Human pluripotent stem cell-derived endothelial cells are vasoactive in vitro and capable of engineering 3D vascular graftsHusveth-Toth, M; Gara, E; Nemes, A; Molnar, AA; Csepi, K, et al
23-Apr-2018Cardiomyocytes derived from induced pluripotent stem cells of patient with DiGeorge syndrome show slower beating frequency and higher irregularityBerecz, T; Molnar, A; Haltrich, I; Homolya, L; Harding, S, et al
23-Apr-2018STAT3 mediates differentiation and maintenance of human pluripotent stem-derived endothelial cellsFoldes, G; Lawlor, K; Harding, SE; Randi, AM; British Heart Foundation
1-Jul-2016Hippo signalling modulates survival of human induced pluripotent stem cell-derived cardiomyocytesFoldes, G; Hellen, N; Vittay, O; Harding, SE; British Heart Foundation
1-Dec-2017Characterisation of iPSCs from a patient with transposition of the great arteriesOntoria-Oviedo, I; Dorronsoro, A; Cervera, AM; Foldes, G; Tejedor, S, et al
24-Aug-2016FOXO1A modifies arterial and venous endothelial development from human pluripotent stem cells; they establish 3D vascular structures in vitro and quantifiable vascular networks in vivoGara, E; Kiraly, SZ; Kiszler, G; Skopal, J; Polos, M, et al