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            Chapter 8 Hyaluronan-Based Hydrogels as Functional Vectors for Standardised Therapeutics in Tissue Engineering and Regenerative Medicine

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            Author(s)
            Porcello, Alexandre
            Laurent, Alexis
            Hirt-Burri, Nathalie
            Abdel-Sayed, Philippe
            de Buys Roessingh, Anthony
            Raffoul, Wassim
            Jordan, Olivier
            Allémann, Eric
            Applegate, Lee Ann
            Language
            English
            Show full item record
            Abstract
            Hyaluronan-based hydrogels are optimal candidates when developing novel combined advanced therapy medicinal products (cATMP), tissue engineering products (TEP), and medical devices. The key physico-chemical properties of hydrogels may hinder, mediate, or stimulate therapeutic potentials borne by standardised cellular substrates in regenerative medicine. Parallel to delivery system or scaffold development, hydrogel functionalisation may be advantageous in specific musculoskeletal interventions or topical applications (e.g. viscosupplementation, soft tissue volumetric supplementation, rehabilitation topical preparations). Optimised combination product developmental workflows enable pragmatic regulatory classification of cell-based preparations. Such aspects will be discussed, as well as sustainable transposition to industrialised production settings. Hyaluronan benefits from extensive hindsight in numerous human and veterinary applications, providing a highly versatile backbone for quasi-infinite structural modification and physico-chemical property modulation. This chapter provides an overview of critical product design considerations and possible therapeutic applications of versatile hyaluronan-based preparations intended for cell therapy delivery, combined with optimised autologous or allogeneic therapeutic cell sources (e.g. platelet-rich plasma, stem cells, banked primary foetal progenitors). Particular focus was set on specific parameters directly impacting product potential in terms of clinical translation and effectiveness for topical wound healing or sub-critical volumetric defect correction and repair stimulation in musculoskeletal regenerative medicine applications.
            Book
            Nanopharmaceuticals in Regenerative Medicine
            URI
            https://doab-dev.siscern.org/handle/20.500.12854/180476
            Keywords
            Regenerative medicine, Carbon nanotube, Block copolymers, Wound healing, Anticancer therapy, Particles used in imaging
            DOI
            10.1201/9781003153504-8
            ISBN
            9780367721138, 9780367721169
            Publisher
            Taylor & Francis
            Publisher website
            http://www.taylorandfrancis.com/
            Publication date and place
            2022
            Imprint
            CRC Press
            Pages
            31
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              This project received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 871069.

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