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Bizonal cardiac engineered tissues with differential maturation features in a mid-throughput multimodal bioreactor.
Pisanu, Alessia; Reid, Gregory; Fusco, Deborah; Sileo, Antonio; Robles Diaz, Diana; Tarhini, Hadi; Putame, Giovanni; Massai, Diana; Isu, Giuseppe; Marsano, Anna.
Afiliação
  • Pisanu A; Department of Biomedicine, University of Basel, Hebelstrasse 20, 4031 Basel, Switzerland.
  • Reid G; Department of Surgery, University Hospital of Basel, Hebelstrasse 20, 4031 Basel, Switzerland.
  • Fusco D; Department of Biomedicine, University of Basel, Hebelstrasse 20, 4031 Basel, Switzerland.
  • Sileo A; Department of Surgery, University Hospital of Basel, Hebelstrasse 20, 4031 Basel, Switzerland.
  • Robles Diaz D; Department of Biomedicine, University of Basel, Hebelstrasse 20, 4031 Basel, Switzerland.
  • Tarhini H; Department of Surgery, University Hospital of Basel, Hebelstrasse 20, 4031 Basel, Switzerland.
  • Putame G; Department of Biomedicine, University of Basel, Hebelstrasse 20, 4031 Basel, Switzerland.
  • Massai D; Department of Surgery, University Hospital of Basel, Hebelstrasse 20, 4031 Basel, Switzerland.
  • Isu G; Department of Biomedicine, University of Basel, Hebelstrasse 20, 4031 Basel, Switzerland.
  • Marsano A; Department of Surgery, University Hospital of Basel, Hebelstrasse 20, 4031 Basel, Switzerland.
iScience ; 25(5): 104297, 2022 May 20.
Article em En | MEDLINE | ID: mdl-35586070
ABSTRACT
Functional three-dimensional (3D) engineered cardiac tissue (ECT) models are essential for effective drug screening and biological studies. Application of physiological cues mimicking those typical of the native myocardium is known to promote the cardiac maturation and functionality in vitro. Commercially available bioreactors can apply one physical force type at a time and often in a restricted loading range. To overcome these limitations, a millimetric-scale microscope-integrated bioreactor was developed to deliver multiple biophysical stimuli to ECTs. In this study, we showed that the single application of auxotonic loading (passive) generated a bizonal ECT with a unique cardiac maturation pattern. Throughout the statically cultured constructs and in the ECT region exposed to high passive loading, cardiomyocytes predominantly displayed a round morphology and poor contractility ability. The ECT region with a low passive mechanical stimulation instead showed both rat- and human-origin cardiac cell maturation and organization, as well as increased ECT functionality.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: IScience Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Suíça

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: IScience Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Suíça