Hydrogels for Biomedical Applications: Their Characteristics and the Mechanisms behind Them

Гидрогели для биомедицинских применений: их характеристики и лежащие в их основе механизмы
Qinyuan Chai, Yang Jiao, Xinjun Yu
2017-01-24

Drug deliveryHydrogelsStimuli-responsive hydrogelsSwelling mechanismsTissue engineering
Hydrogels are hydrophilic, three-dimensional networks that are able to absorb large quantities of water or biological fluids, and thus have the potential to be used as prime candidates for biosensors, drug delivery vectors, and carriers or matrices for cells in tissue engineering. In this critical review article, advantages of the hydrogels that overcome the limitations from other types of biomaterials will be discussed. Hydrogels, depending on their chemical composition, are responsive to various stimuli including heating, pH, light, and chemicals. Two swelling mechanisms will be discussed to give a detailed understanding of how the structure parameters affect swelling properties, followed by the gelation mechanism and mesh size calculation. Hydrogels prepared from natural materials such as polysaccharides and polypeptides, along with different types of synthetic hydrogels from the recent reported literature, will be discussed in detail. Finally, attention will be given to biomedical applications of different kinds of hydrogels including cell culture, self-healing, and drug delivery.
1
Hydrogels are hydrophilic three-dimensional networks capable of absorbing large quantities of water or biological fluids, supporting diverse biomedical uses.
2
Hydrogels offer applications in biosensors, drug delivery, cell culture, tissue engineering, and self-healing biomaterials, potentially overcoming limitations of other biomaterials.
3
Swelling behavior depends on structural parameters, which can be understood through two swelling mechanisms and related mesh-size calculations.
4
The review explains hydrogel gelation mechanisms and discusses both natural-material hydrogels, including polysaccharides and polypeptides, and synthetic formulations.
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Their chemical composition enables responsiveness to stimuli including temperature, pH, light, and chemicals.

Hydrogels for biomedical applications

Their characteristics and underlying mechanisms, including stimulus responsiveness, swelling and gelation behavior, mesh size, and biomedical functionality

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2017-01-24
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Qinyuan Chai
Yang Jiao
Xinjun Yu
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