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用于再生牙科的不断发展的海洋生物仿生学。

Evolving marine biomimetics for regenerative dentistry.

作者信息

Green David W, Lai Wing-Fu, Jung Han-Sung

机构信息

Oral Biosciences, Faculty of Dentistry, The University of Hong Kong, Hong Kong, China.

Division in Anatomy and Developmental Biology, Department of Oral Biology, Oral Science Research Center, BK21 PLUS Project, Yonsei University College of Dentistry, Seoul 120-752, Korea.

出版信息

Mar Drugs. 2014 May 13;12(5):2877-912. doi: 10.3390/md12052877.

Abstract

New products that help make human tissue and organ regeneration more effective are in high demand and include materials, structures and substrates that drive cell-to-tissue transformations, orchestrate anatomical assembly and tissue integration with biology. Marine organisms are exemplary bioresources that have extensive possibilities in supporting and facilitating development of human tissue substitutes. Such organisms represent a deep and diverse reserve of materials, substrates and structures that can facilitate tissue reconstruction within lab-based cultures. The reason is that they possess sophisticated structures, architectures and biomaterial designs that are still difficult to replicate using synthetic processes, so far. These products offer tantalizing pre-made options that are versatile, adaptable and have many functions for current tissue engineers seeking fresh solutions to the deficiencies in existing dental biomaterials, which lack the intrinsic elements of biofunctioning, structural and mechanical design to regenerate anatomically correct dental tissues both in the culture dish and in vivo.

摘要

有助于提高人体组织和器官再生效率的新产品需求旺盛,这些产品包括驱动细胞向组织转化、协调解剖组装以及组织与生物学整合的材料、结构和基质。海洋生物是典型的生物资源,在支持和促进人体组织替代品的开发方面具有广泛的可能性。这类生物代表了丰富多样的材料、基质和结构储备,能够在基于实验室的培养中促进组织重建。原因在于它们拥有复杂的结构、构造和生物材料设计,而这些目前仍难以通过合成工艺复制。这些产品为当前的组织工程师提供了诱人的预制选项,这些选项用途广泛、适应性强且具备多种功能,可解决现有牙科生物材料的不足,现有牙科生物材料缺乏在培养皿和体内再生解剖结构正确的牙齿组织所需的生物功能、结构和机械设计等内在要素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1583/4052322/f89f1f3c0e3d/marinedrugs-12-02877-g001.jpg

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