Eumelanin‐Coated Aligned PLA Electrospun Microfibers to Guide SH‐SY5YCells Spreading, Alignment, And Maturation

Author:

Mariano Anna1ORCID,Fasolino Ines2,Dinger Nikita Bhupesh13,Latte Bovio Claudia13,Bonadies Irene4,Pezzella Alessandro456,Ambrosio Luigi2,Raucci Maria Grazia2,Santoro Francesca178ORCID

Affiliation:

1. Tissue Electronics Istituto Italiano di Tecnologia 80125 Naples Italy

2. Institute of Polymers Composites and Biomaterials (IPCB) − CNR Viale J. F. Kennedy 54, Mostra D'Oltremare Pad 20 Naples 80125 Italy

3. Dipartimento di Ingegneria Chimica dei Materiali e delle Produzioni Industriali DICMAPI Università ‘Federico II' 80125 Naples Italy

4. Institute of Polymers Composites and Biomaterials (IPCB) − CNR Via Campi Flegrei 34 80078 Pozzuoli Italy

5. Department of Physics “Ettore Pancini” University of Naples “Federico II” Via Cintia 4 IT‐80126 Naples Italy

6. Bioelectronics Task Force University of Naples Federico II 80126 Naples Italy

7. Faculty of Electrical Engineering and Information Technology RWTH Aachen 52074 North Rhine‐Westphalia Germany

8. Institute for Biological Information Processing‐ Bioelectronics IBI‐3 Forschungszentrum Juelich 52428 Jülich Germany

Abstract

AbstractDuring the development of the nervous system, neurons sense and respond to topographical and biochemical cues found in the brain's native environment. Such niche‐specific cues are pivotal for neural tissue formation and development and have been now widely exploited in neural tissue engineering to develop biologically‐inspired scaffolds able to trigger a desired neuronal behavior. In particular, anisotropic aligned fibers, recapitulating the design of extending axonal tracts or aligned fibers found in the extracellular environment, have emerged as ideal candidates to guide cell alignment and elongation along the substrate main axis as well as promote neuronal differentiation. Among natural polymers used for coatings, melanins, including eumelanin, have been shown to possess antioxidant, anti‐inflammatory, immunomodulatory, and photo‐protective properties. Here, aligned poly(lactic acid) (PLA) fibers are fabricated via electrospinning and then coated with eumelanin via spin coating. Eumelanin‐coated aligned PLA fibers are highly biocompatible and greatly influenced the adhesion, morphology, and spreading of SH‐SY5Y neuroblastoma cells. Furthermore, the eumelanin coating is crucial in promoting cell alignment at the cell‐material interface and SH‐SY5Y cell maturation towards a more mature neuronal phenotype.

Funder

European Research Council

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials

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