Injectable Biodegradable Hydrogels

Инъекционные биоразлагаемые гидрогели
Minh Khanh Nguyen, Doo Sung Lee
2010-03-01

drug deliveryinjectable biodegradable hydrogelspH/temperature-sensitive polymerssol-gel phase transitiontemperature-sensitive polymers
Injectable biodegradable copolymer hydrogels, which exhibit a sol-gel phase transition in response to external stimuli, such as temperature changes or both pH and temperature (pH/temperature) alterations, have found a number of uses in biomedical and pharmaceutical applications, such as drug delivery, cell growth, and tissue engineering. These hydrogels can be used in simple pharmaceutical formulations that can be prepared by mixing the hydrogel with drugs, proteins, or cells. Such formulations are administered in a straightforward manner, through site-specific control of release behavior, and the hydrogels are compatible with biological systems. This review will provide a summary of recent progress in biodegradable temperature-sensitive polymers including polyesters, polyphosphazenes, polypeptides, and chitosan, and pH/temperature-sensitive polymers such as sulfamethazine-, poly(beta-amino ester)-, poly(amino urethane)-, and poly(amidoamine)-based polymers. The advantages of pH/temperature-sensitive polymers over simple temperature-sensitive polymers are also discussed. A perspective on the future of injectable biodegradable hydrogels is offered.
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Injectable biodegradable copolymer hydrogels undergo sol-gel transitions triggered by temperature or combined pH and temperature changes.
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It also covers pH/temperature-sensitive sulfamethazine-, poly(beta-amino ester)-, poly(amino urethane)-, and poly(amidoamine)-based polymers, emphasizing their advantages over solely temperature-sensitive systems.
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The review summarizes biodegradable temperature-sensitive polymers, including polyesters, polyphosphazenes, polypeptides, and chitosan.
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Their biomedical advantages include controlled release behavior and compatibility with biological systems.
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These hydrogels enable site-specific drug, protein, and cell delivery through simple formulations prepared by direct mixing.

Injectable biodegradable copolymer hydrogels with temperature- or pH/temperature-responsive sol-gel transitions

Recent progress, biomedical and pharmaceutical applications, and comparative advantages of stimulus-responsive biodegradable hydrogels, particularly their site-specific release behavior and compatibility with biological systems

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2010-03-01
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Minh Khanh Nguyen
Doo Sung Lee
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