Cost-effective mechanical aggregation of cardiac progenitors and encapsulation in matrigel support self-organization in a dynamic culture environment

HIGHLIGHTS

  • who: Tiago P. Dias et al. from the Universidade de Lisboa, AvRovisco Pais, Lisbon, Portugal have published the research work: Cost-Effective Mechanical Aggregation of Cardiac Progenitors and Encapsulation in Matrigel Support Self-Organization in a Dynamic Culture Environment, in the Journal: (JOURNAL)
  • what: This study shows that the explored culture parameters support the self-organization of hiPSC-derived cardiac microtissues containing multiple cardiac cell types. The aim of this work was the development of an integrated process for the production of cardiac microtissues from hiPSCs including a reliable method of aggregation followed by a . . .

     

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