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Modified gum arabic cross-linked gelatin scaffold for biomedical applications.

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TLDR
Modified gum arabic cross-linked gelatin scaffold with swelling properties, degree of cross-linking, in vitro degradation and scanning electron microscopy (SEM) confirmed non-cytotoxic and non-adherent nature of the scaffold.
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This article is published in Materials Science and Engineering: C.The article was published on 2014-10-01. It has received 59 citations till now. The article focuses on the topics: Gum arabic & Gelatin.

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Graphene oxide-based hydrogels as a nanocarrier for anticancer drug delivery

TL;DR: It is anticipated that this review can stimulate a new research gateway to facilitate the development of anticancer drug delivery by harnessing the unique properties of GO based hydrogels, such as large surface area, chemical purity, high loading capacity of drug, chemical stability, and the nature of lipophilic for cell membrane penetration.
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Designing bio-mimetic moxifloxacin loaded hydrogel wound dressing to improve antioxidant and pharmacology properties

TL;DR: Overall, these dressings will not only enhance the wound curing process but also take care of the other aspects of wound health and skin regeneration.
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Synthesis, characterization and antimicrobial applications of zinc oxide nanoparticles loaded gum acacia/poly(SA) hydrogels.

TL;DR: In this work, zinc oxide nanoparticles were synthesized in-situ within the gum acacia/poly (acrylate) hydrogel network using hydrothermal approach and the antimicrobial action of nanocomposites was studied using E. coli as model bacteria.
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Natural gum polysaccharides as efficient tissue engineering and drug delivery biopolymers

TL;DR: The gum polysaccharides have the potential to improve the physical, mechanical and biological properties of the fabricated scaffold when used as composites with other biomaterials.
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Noncovalent functionalization of reduced graphene oxide with pluronic F127 and its nanocomposites with gum arabic

TL;DR: In this paper, a nanocomposites of pluronic F127 modified reduced graphene oxide (PF127-rGO) with polyethylene glycol plasticize gum arabic (PGA) was prepared by evaporating an aqueous solution mixture of PF127 and PGA.
References
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Journal ArticleDOI

Scaffolds in tissue engineering bone and cartilage.

TL;DR: Research on the tissue engineering of bone and cartilage from the polymeric scaffold point of view is reviews from a biodegradable and bioresorbable perspective.
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Porous scaffold design for tissue engineering

TL;DR: The integration of CTD with SFF to build designer tissue-engineering scaffolds is reviewed and the mechanical properties and tissue regeneration achieved using designer scaffolds are details.
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Recent advances in three-dimensional multicellular spheroid culture for biomedical research

TL;DR: The current understanding of multicellular spheroid formation mechanisms, their biomedical applications, and recent advances in sp heroid culture, manipulation, and analysis techniques are reviewed.
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Injectable In Situ Forming Biodegradable Chitosan-Hyaluronic acid Based Hydrogels for Cartilage Tissue Engineering

TL;DR: A new class of biocompatible and biodegradable composite hydrogels derived from water-soluble chitosan and oxidized hyaluronic acid upon mixing, without the addition of a chemical crosslinking agent is reported.
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