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Design Strategies and Application Potential of Multifunctional Hydrogels for Promoting Angiogenesis

Menglei Wang, Jiawen Chen, Yawen Luo, Meixin Feng, Qianwen Yang, Yingmei Tang, Ziyi Tang, Wu Xiao, Yue Zheng, Li Li

2024International Journal of Nanomedicine14 citationsDOIOpen Access PDF

Abstract

Hydrogels can be rationally designed as multifunctional platforms with structures and functions for various biomedical applications. Because of their excellent biochemical and mechanical properties, hydrogels have shown great potential for promoting angiogenesis, and an increasing amount of research has been devoted to designing and developing new hydrogels. However, a systematic and detailed review of hydrogels that promote angiogenesis is lacking. This paper comprehensively summarizes the design strategies of different kinds of functional hydrogels that promote angiogenesis, with anti-oxidant, substance-delivery, stimulus-responsive, self-healing, conductive, and wound-monitoring properties. The applications of hydrogels in wound healing, bone regeneration, and treatment of myocardial ischemia are discussed. Finally, future development directions of functional hydrogels promoting angiogenesis are proposed along with new strategies for the treatment of related diseases.

Topics & Concepts

Self-healing hydrogelsAngiogenesisMaterials scienceNanotechnologyBiomedical engineeringComputer scienceMedicineCancer researchPolymer chemistryElectrospun Nanofibers in Biomedical ApplicationsAngiogenesis and VEGF in CancerWound Healing and Treatments
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