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Three-Dimensional Printable Conductive Semi-Interpenetrating Polymer Network Hydrogel for Neural Tissue Applications.
Rinoldi, Chiara; Lanzi, Massimiliano; Fiorelli, Roberto; Nakielski, Pawel; Zembrzycki, Krzysztof; Kowalewski, Tomasz; Urbanek, Olga; Grippo, Valentina; Jezierska-Wozniak, Katarzyna; Maksymowicz, Wojciech; Camposeo, Andrea; Bilewicz, Renata; Pisignano, Dario; Sanai, Nader; Pierini, Filippo.
Afiliação
  • Rinoldi C; Department of Biosystems and Soft Matter, Institute of Fundamental Technological Research, Polish Academy of Sciences, Warsaw 02-106, Poland.
  • Lanzi M; Department of Industrial Chemistry "Toso Montanari", Alma Mater Studiorum University of Bologna, Bologna 40136, Italy.
  • Fiorelli R; Ivy Brain Tumor Center, Barrow Neurological Institute, Phoenix, Arizona 85013, United States.
  • Nakielski P; Department of Biosystems and Soft Matter, Institute of Fundamental Technological Research, Polish Academy of Sciences, Warsaw 02-106, Poland.
  • Zembrzycki K; Department of Biosystems and Soft Matter, Institute of Fundamental Technological Research, Polish Academy of Sciences, Warsaw 02-106, Poland.
  • Kowalewski T; Department of Biosystems and Soft Matter, Institute of Fundamental Technological Research, Polish Academy of Sciences, Warsaw 02-106, Poland.
  • Urbanek O; Laboratory of Polymers and Biomaterials, Institute of Fundamental Technological Research, Polish Academy of Sciences, Warsaw 02-106, Poland.
  • Grippo V; Faculty of Chemistry, University of Warsaw, Warsaw 02-093, Poland.
  • Jezierska-Wozniak K; Department of Neurology and Neurosurgery, University of Warmia and Mazury in Olsztyn, Olsztyn 11-041, Poland.
  • Maksymowicz W; Department of Neurology and Neurosurgery, University of Warmia and Mazury in Olsztyn, Olsztyn 11-041, Poland.
  • Camposeo A; NEST, Istituto Nanoscienze CNR and Scuola Normale Superiore, Pisa 56127, Italy.
  • Bilewicz R; Faculty of Chemistry, University of Warsaw, Warsaw 02-093, Poland.
  • Pisignano D; NEST, Istituto Nanoscienze CNR and Scuola Normale Superiore, Pisa 56127, Italy.
  • Sanai N; Dipartimento di Fisica, Università di Pisa, Largo B. Pontecorvo 3, I-56127 Pisa, Italy.
  • Pierini F; Ivy Brain Tumor Center, Barrow Neurological Institute, Phoenix, Arizona 85013, United States.
Biomacromolecules ; 22(7): 3084-3098, 2021 07 12.
Article em En | MEDLINE | ID: mdl-34151565
Intrinsically conducting polymers (ICPs) are widely used to fabricate biomaterials; their application in neural tissue engineering, however, is severely limited because of their hydrophobicity and insufficient mechanical properties. For these reasons, soft conductive polymer hydrogels (CPHs) are recently developed, resulting in a water-based system with tissue-like mechanical, biological, and electrical properties. The strategy of incorporating ICPs as a conductive component into CPHs is recently explored by synthesizing the hydrogel around ICP chains, thus forming a semi-interpenetrating polymer network (semi-IPN). In this work, a novel conductive semi-IPN hydrogel is designed and synthesized. The hybrid hydrogel is based on a poly(N-isopropylacrylamide-co-N-isopropylmethacrylamide) hydrogel where polythiophene is introduced as an ICP to provide the system with good electrical properties. The fabrication of the hybrid hydrogel in an aqueous medium is made possible by modifying and synthesizing the monomers of polythiophene to ensure water solubility. The morphological, chemical, thermal, electrical, electrochemical, and mechanical properties of semi-IPNs were fully investigated. Additionally, the biological response of neural progenitor cells and mesenchymal stem cells in contact with the conductive semi-IPN was evaluated in terms of neural differentiation and proliferation. Lastly, the potential of the hydrogel solution as a 3D printing ink was evaluated through the 3D laser printing method. The presented results revealed that the proposed 3D printable conductive semi-IPN system is a good candidate as a scaffold for neural tissue applications.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Hidrogéis / Tecido Nervoso Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Hidrogéis / Tecido Nervoso Idioma: En Ano de publicação: 2021 Tipo de documento: Article