An engineered lamellar bone mimicking full-scale hierarchical architecture for bone regeneration  被引量:1

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作  者:Tao Yang Zhichao Hao Zhenzhen Wu Binxin Xu Jiangchen Liu Le Fan Qinmei Wang Yanshan Li Dongying Li Sangzhu Tang Chuanzi Liu Weichang Li Wei Teng 

机构地区:[1]Hospital of Stomatology,Guanghua School of Stomatology,Sun Yat-sen University and Guangdong Provincial Key Laboratory of Stomatology,No.56,Lingyuan West Road,Yuexiu District,Guangzhou,510055,China [2]Department of Periodontology and Implantology,Stomatological Hospital,School of Stomatology,Southern Medical University,Guangzhou,China [3]Laboratory of Biomaterials,Key Laboratory on Assisted Circulation,Ministry of Health,Cardiovascular Division,The First Affiliated Hospital,Sun Yat-sen University,Guangzhou,China

出  处:《Bioactive Materials》2023年第9期181-199,共19页生物活性材料(英文)

基  金:funded by National Natural Science Foundation of China(Grant No.82001094 and 21905094);Guangzhou Science and Technology Program(Grant No.202102020519 and 202201010912);Guangdong Financial Fund for High-Caliber Hospital Construction(Grant No.174-2018-XMZC-0001-03-0125/D-20);Open Funding of Guangdong Provincial Key Laboratory of Stomatology(No.KF2022120104);Guangdong Basic and Applied Basic Research Foundation(Grant No.2019A1515110379 and 2021A1515010782).

摘  要:Lamellar bone,compactly and ingeniously organized in the hierarchical pattern with 6 ordered scales,is the structural motif of mature bone.Each hierarchical scale exerts an essential role in determining physiological behavior and osteogenic bioactivity of bone.Engineering lamellar bone with full-scale hierarchy remains a longstanding challenge.Herein,using bioskiving and mineralization,we attempt to engineer compact constructs resembling full-scale hierarchy of lamellar bone.Through systematically investigating the effect of mineralization on physicochemical properties and bioactivities of multi-sheeted collagen matrix fabricated by bioskiving,the hierarchical mimicry and hierarchy-property relationship are elucidated.With prolongation of mineralization,hierarchical mimicry and osteogenic bioactivity of constructs are performed in a bidirectional manner,i.e.first rising and then descending,which is supposed to be related with transformation of mineralization mechanism from nonclassical to classical crystallization.Construct mineralized 9 days can accurately mimic each hierarchical scale and efficiently promote osteogenesis.Bioinformatic analysis further reveals that this construct potently activates integrinα5-PI3K/AKT signaling pathway through mechanical and biophysical cues,and thereby repairing critical-sized bone defect.The present study provides a bioinspired strategy for completely resembling complex hierarchy of compact mineralized tissue,and offers a critical research model for in-depth studying the structure-function relationship of bone.

关 键 词:Full-scale hierarchy Lamellar bone Bioskiving MINERALIZATION Integrinα5-PI3K/AKT signaling Pathway 

分 类 号:R318[医药卫生—生物医学工程]

 

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