4.7 Review

Emerging Role of Hydrogels in Drug Delivery Systems, Tissue Engineering and Wound Management

期刊

PHARMACEUTICS
卷 13, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/pharmaceutics13030357

关键词

hydrogel; stimuli responsive; polymeric hydrogel nanoparticles; drug delivery systems; wound dressing materials; tissue engineering scaffolds; modified contact lens

资金

  1. Gulf Medical University, Ajman, United Arab Emirates

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Hydrogels are popular biomaterials known for their tunable physical properties, encapsulation capabilities, water holding capacity, and degradability. This review extensively discusses functionalization strategies and applications, covering different cross-linking techniques, materials, advantages, and disadvantages of hydrogels in drug delivery systems and wound dressing materials. Their unique features make hydrogels promising in the fields of drug delivery systems and applied biomedicine.
The popularity of hydrogels as biomaterials lies in their tunable physical properties, ability to encapsulate small molecules and macromolecular drugs, water holding capacity, flexibility, and controllable degradability. Functionalization strategies to overcome the deficiencies of conventional hydrogels and expand the role of advanced hydrogels such as DNA hydrogels are extensively discussed in this review. Different types of cross-linking techniques, materials utilized, procedures, advantages, and disadvantages covering hydrogels are tabulated. The application of hydrogels, particularly in buccal, oral, vaginal, and transdermal drug delivery systems, are described. The review also focuses on composite hydrogels with enhanced properties that are being developed to meet the diverse demand of wound dressing materials. The unique advantages of hydrogel nanoparticles in targeted and intracellular delivery of various therapeutic agents are explained. Furthermore, different types of hydrogel-based materials utilized for tissue engineering applications and fabrication of contact lens are discussed. The article also provides an overview of selected examples of commercial products launched particularly in the area of oral and ocular drug delivery systems and wound dressing materials. Hydrogels can be prepared with a wide variety of properties, achieving biostable, bioresorbable, and biodegradable polymer matrices, whose mechanical properties and degree of swelling are tailored with a specific application. These unique features give them a promising future in the fields of drug delivery systems and applied biomedicine.

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