Biomimetic mineralization using matrix vesicle nanofragments

被引:20
作者
Kunitomi, Yosuke [1 ,2 ]
Hara, Emilio Satoshi [1 ]
Okada, Masahiro [1 ]
Nagaoka, Noriyuki [3 ]
Kuboki, Takuo [4 ]
Nakano, Takayoshi [5 ]
Kamioka, Hiroshi [2 ]
Matsumoto, Takuya [1 ]
机构
[1] Okayama Univ, Dept Biomat, Grad Sch Med Dent & Pharmaceut Sci, Okayama, Japan
[2] Okayama Univ, Dept Orthodont, Grad Sch Med Dent & Pharmaceut Sci, Okayama, Japan
[3] Okayama Univ, Adv Res Ctr Oral & Craniofacial Sci, Grad Sch Med Dent & Pharmaceut Sci, Okayama, Japan
[4] Okayama Univ, Dept Oral Rehabil & Regenerat Med, Grad Sch Med Dent & Pharmaceut Sci, Okayama, Japan
[5] Osaka Univ, Grad Sch Engn, Div Mat & Mfg Sci, Osaka, Japan
关键词
bioinspired mineralization; matrix vesicle nanofragments; hydrogel; apatite; bone; BONE; CALCIUM; CARTILAGE; BINDING; A6; A5;
D O I
10.1002/jbm.a.36618
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
In vitro synthesis of bone tissue has been paid attention in recent years; however, current methods to fabricate bone tissue are still ineffective due to some remaining gaps in the understanding of real in vivo bone formation process, and application of the knowledge in bone synthesis. Therefore, the objectives of this study were first, to perform a systematic and ultrastructural investigation of the initial mineral formation during intramembranous ossification of mouse calvaria from a material scientists' viewpoint, and to develop novel mineralization methods based on the in vivo findings. First, the very initial mineral deposition was found to occur at embryonic day E14.0 in mouse calvaria. Analysis of the initial bone formation process showed that it involved the following distinct steps: collagen secretion, matrix vesicle (MV) release, MV mineralization, MV rupture, and collagen fiber mineralization. Next, we performed in vitro mineralization experiments using MVs and hydrogel scaffolds. Intact MVs embedded in collagen gel did not mineralize, whereas, interestingly, MV nanofragments obtained by ultrasonication could promote rapid mineralization. These results indicate that mechanically ruptured MV membrane can be a promising material for in vitro bone tissue synthesis. (c) 2019 The Authors. journal Of Biomedical Materials Research Part A Published By Wiley Periodicals, Inc. J Biomed Mater Res Part A: 107A: 1021-1030, 2019.
引用
收藏
页码:1021 / 1030
页数:10
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