推进口腔和颅面组织再生的胶原基生物材料

Bo Zhang, Yunxiang He, Jialing Liu, Jiaojiao Shang, Chider Chen, Tianyi Wang, Mei Chen, Yifei Li, Guidong Gong, Jie Fang, Zhihe Zhao, Junling Guo
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引用次数: 2

摘要

口腔和颅面区由各种类型的软组织和硬组织组成,组织复杂。由于这一特定区域组织缺陷的高发性,通过开发和使用工程生物材料来增强组织再生是非常可取的。胶原蛋白作为组织细胞外基质的主要组成部分,在再生医学领域受到广泛关注。尽管胶原蛋白因其低免疫原性、高生物相容性和方便的提取程序而被广泛用作生物材料工程的重要成分,但关于这一特定临床领域的综述数量有限。对机械增强和功能工程的需求推动了基于胶原蛋白的生物材料在口腔和颅面组织再生中的治疗效果和临床转化的密集努力。本文重点介绍了胶原基生物材料在口腔和颅面组织重建中的设计和应用现状。讨论扩展了从皮革鞣制过程中对胶原基生物材料改性的启发,以及在这种特殊的动态微环境中多组织重建的前景。这些发现将为今后优化现有的胶原基生物材料用于口腔和颅面组织的重建奠定新的基础。图形抽象
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Advancing collagen-based biomaterials for oral and craniofacial tissue regeneration

The oral and craniofacial region consists of various types of hard and soft tissues with the intricate organization. With the high prevalence of tissue defects in this specific region, it is highly desirable to enhance tissue regeneration through the development and use of engineered biomaterials. Collagen, the major component of tissue extracellular matrix, has come into the limelight in regenerative medicine. Although collagen has been widely used as an essential component in biomaterial engineering owing to its low immunogenicity, high biocompatibility, and convenient extraction procedures, there is a limited number of reviews on this specific clinic sector. The need for mechanical enhancement and functional engineering drives intensive efforts in collagen-based biomaterials concentrating on therapeutical outcomes and clinical translation in oral and craniofacial tissue regeneration. Herein, we highlighted the status quo of the design and applications of collagen-based biomaterials in oral and craniofacial tissue reconstruction. The discussion expanded on the inspiration from the leather tanning process on modifications of collagen-based biomaterials and the prospects of multi-tissue reconstruction in this particular dynamic microenvironment. The existing findings will lay a new foundation for the optimization of current collagen-based biomaterials for rebuilding oral and craniofacial tissues in the future.

Graphical Abstract

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来源期刊
Journal of Leather Science and Engineering
Journal of Leather Science and Engineering 工程技术-材料科学:综合
CiteScore
12.80
自引率
0.00%
发文量
29
期刊最新文献
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