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Zeolites: A series of promising biomaterials in bone tissue engineering

Journal

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fbioe.2022.1066552

Keywords

zeolites; bone tissue engineering; biomaterials; biomedical applications; scaffold

Funding

  1. National Natural Science Foundation of China [22178140, 81901036]
  2. Jilin Province Science and Technology Development Plan Project [20200201358JC]
  3. Bethune Plan of Jilin University [2022B30]
  4. Chinese Stomatological Association Youth Clinical Research Foundation for Orthodontics [COS-B2021-06]

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Bone defect has significant physical and psychological consequences, and bone tissue engineering using biomaterials such as zeolites has emerged as an effective solution. Zeolite-based materials exhibit excellent osteo-inductivity and provide ideal substrates for cell adhesion and proliferation.
As an important worldwide medical issue, bone defect exhibits a variety of physical and psychological consequences on sufferers. Some features of clinical treatments including bone grafting and limb shortening are not satisfactory. Recently, bone tissue engineering has been considered as the most effective approach to dealing with the issue of bone deformities. Meanwhile, a variety of biomaterials have been rationally designed and created for the bone regeneration and tissue repairing. Among all these admirable biomaterials for bone remodeling, zeolite-based materials can serve as efficient scaffold candidates with excellent osteo-inductivity. In addition, the porous nature and high biocompatibility of zeolites endow them with the ability as ideal substrates for cell adhesion and proliferation. More importantly, zeolites are investigated as potential coating materials for implants because they have been proven to increase osteo-conductivity and aid in local elastic modeling. Last but not least, zeolites can also be used to treat bone disorders and act as dietary supplements during the practical applications. Accordingly, numerous benefits of zeolite prompt us to summarize their recent biomedical progress including but not limited to the distinguishing characteristics, broad classifications, as well as promising usages in bone tissue engineering.

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