33
TITLE: Scaling up a chemically-defined aggregate-based suspension culture system for neural commitment of human pluripotent stem cells
AUTHORS: Miranda, CC; Fernandes, TG; Diogo, MM ; Cabral, JMS;
PUBLISHED: 2016, SOURCE: BIOTECHNOLOGY JOURNAL, VOLUME: 11, ISSUE: 12
INDEXED IN: Scopus WOS CrossRef: 15
34
TITLE: Stem Cell Manufacturing
AUTHORS: Cabral, JMS; De Silva, CL ; Chase, LG; Diogo, MM ;
PUBLISHED: 2016, SOURCE: Stem Cell Manufacturing
INDEXED IN: Scopus
37
TITLE: Neural commitment of human pluripotent stem cells under defined conditions recapitulates neural development and generates patient-specific neural cells  Full Text
AUTHORS: Fernandes, TG; Duarte, ST; Ghazvini, M; Gaspar, C; Santos, DC; Porteira, AR; Rodrigues, GMC; Haupt, S; Rombo, DM; Armstrong, J; Sebastião, AM ; Gribnau, J; Garcia Cazorla, A; Brüstle, O; Henrique, D ; Cabral, JMS; Diogo, MM ;
PUBLISHED: 2015, SOURCE: Biotechnology Journal, VOLUME: 10, ISSUE: 10
INDEXED IN: Scopus CrossRef
39
TITLE: Scalable expansion of human-induced pluripotent stem cells in xeno-free microcarriers
AUTHORS: Badenes, SM; Fernandes, TG; Rodrigues, CAV ; Diogo, MM ; Cabral, JMS;
PUBLISHED: 2015, SOURCE: Methods in Molecular Biology, VOLUME: 1283
INDEXED IN: Scopus CrossRef
40
TITLE: Spatial and temporal control of cell aggregation efficiently directs human pluripotent stem cells towards neural commitment  Full Text
AUTHORS: Miranda, CC; Fernandes, TG; Pascoal, JF; Haupt, S; Brüstle, O; Cabral, JMS; Diogo, MM ;
PUBLISHED: 2015, SOURCE: Biotechnology Journal, VOLUME: 10, ISSUE: 10
INDEXED IN: Scopus CrossRef
Page 4 of 9. Total results: 88.