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Titlebook: Biomaterial-based Hydrogels; Therapeutics Carrier Sougata Jana Book 2024 The Editor(s) (if applicable) and The Author(s), under exclusive l

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Alginate-Based Hydrogels as Drug Carriers,lity. Instead of two-dimensional (2D) cell culture, alginate-based hydrogels can be used for three-dimensional (3D) in vitro models to better understand the in vitro mechanisms of drug delivery systems. As a result of recent advancements, alginate-based systems have expanded their applicability and
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Hyaluronic Acid Hydrogel in Therapeutics Delivery and Biomedical Applications,classified as physical and chemical hydrogel, and on the basis of the polymeric composition classified as homopolymeric hydrogel, copolymeric hydrogel, and multipolymeric hydrogel. HA-hydrogels can generally be formulated by dissolving a specified quantity of HA in water followed by stirring; howeve
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Chitosan/Gold Nanoparticle Hydrogels for Drug Delivery and Tissue Engineering Applications,biological molecules. Multiple options have been explored to improve the physicochemical, biological, and mechanical properties of chitosan hydrogels. Different polymers and inorganic nanoparticles from chemical and physical modifications can be added to chitosan hydrogels. In the case of inorganic
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Collagen Hydrogel in Drug Delivery and Tissue Engineering,esis and fabrications, cross-linking methods, improvement of microstructural properties and binding abilities to bioactive molecules, modification on its tunable swelling, degradation, and release properties, as well as its valorization and translation to clinics. .In the field of controlled release
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