The Art of Exploring Diatom Biosilica Biomaterials: From Biofabrication Perspective

Author:

Sun Xiaojie1,Zhang Mengxue1,Liu Jinfeng12,Hui Guangyan3,Chen Xiguang145,Feng Chao14ORCID

Affiliation:

1. College of Marine Life Science Ocean University of China 5# Yushan Road Qingdao Shandong Province 266003 China

2. Department of Stomatology Qingdao Women and Children’s Hospital, Qingdao Qingdao 266034 China

3. Department of Stomatology Qingdao Special Servicemen Recuperation Center of PLA Navy No.18 Yueyang Road Qingdao Shandong Province 266071 China

4. Sanya Oceanographic Institute, Ocean University of China Yazhou Bay Science & Technology City Floor 7, Building 1, Yonyou Industrial Park Sanya Hainan Province 572024 P. R. China

5. Laoshan Laboratory 1# Wenhai Road Qingdao Shandong Province 266000 China

Abstract

AbstractDiatom is a common single‐cell microalgae with large species and huge biomass. Diatom biosilica (DB), the shell of diatom, is a natural inorganic material with a micro‐nanoporous structure. Its unique hierarchical porous structure gives it great application potential in drug delivery, hemostat materials, and biosensors, etc. However, the structural diversity of DB determines its different biological functions. Screening hundreds of thousands of diatom species for structural features of DB that meet application requirements is like looking for a needle in a seaway. And the chemical modification methods lack effective means to control the micro‐nanoporous structure of DB. The formation of DB is a typical biomineralization process, and its structural characteristics are affected by external environmental conditions, genes, and other factors. This allows to manipulate the micro‐nanostructure of DB through biological regulation method, thereby transforming the screening mode of the structure function of DB from a needle in a seaway to biofabrication mode. This review focuses on the formation, biological modification, functional activity of DB structure, and its application in biomaterials field, providing regulatory strategies and research idea of DB from the perspective of biofabrication. It will also maximize the possibility of using DB as biological materials.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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