Combining rotary wet-spinning biofabrication and electro-mechanical stimulation for the in vitro production of functional myo-substitutes

Author:

Celikkin NeharORCID,Presutti Dario,Maiullari Fabio,Volpi Marina,Promovych Yurii,Gizynski Konrad,Dolinska Joanna,Wiśniewska AgnieszkaORCID,Opałło Marcin,Paradiso Alessia,Rinoldi ChiaraORCID,Fuoco Claudia,Swieszkowski Wojciech,Bearzi Claudia,Rizzi Roberto,Gargioli Cesare,Costantini MarcoORCID

Abstract

Abstract In this work, we present an innovative, high-throughput rotary wet-spinning biofabrication method for manufacturing cellularized constructs composed of highly-aligned hydrogel fibers. The platform is supported by an innovative microfluidic printing head (MPH) bearing a crosslinking bath microtank with a co-axial nozzle placed at the bottom of it for the immediate gelation of extruded core/shell fibers. After a thorough characterization and optimization of the new MPH and the fiber deposition parameters, we demonstrate the suitability of the proposed system for the in vitro engineering of functional myo-substitutes. The samples produced through the described approach were first characterized in vitro and then used as a substrate to ascertain the effects of electro-mechanical stimulation on myogenic maturation. Of note, we found a characteristic gene expression modulation of fast (MyH1), intermediate (MyH2), and slow (MyH7) twitching myosin heavy chain isoforms, depending on the applied stimulation protocol. This feature should be further investigated in the future to biofabricate engineered myo-substitutes with specific functionalities.

Funder

CNR

Polish National Centre for Research and Development

Narodowe Centrum Nauki

Publisher

IOP Publishing

Subject

Biomedical Engineering,General Medicine,Biomaterials,Biochemistry,Bioengineering,Biotechnology

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