Literature DB >> 19269600

Bone regeneration using collagen type I vitrigel with bone morphogenetic protein-2.

Jiyuan Zhao1, Masashige Shinkai, Toshiaki Takezawa, Shinsuke Ohba, Ung-Il Chung, Teruyuki Nagamune.   

Abstract

Bone morphogenetic protein-2 is a very promising candidate for the treatment of bone diseases and defects, but more effective therapeutic methods are required due to its instability in vivo. A controlled and localized delivery system of Bone morphogenetic protein-2 would be appropriate for effective bone regeneration. Here, we report a novel delivery system of bone morphogenetic protein-2 using vitrigel (a novel stable collagen gel membrane prepared from vitrified type I collagen) for in vivo bone regeneration. Scanning electron microscopy revealed that the collagen vitrigel formed a tightly woven network with average pore sizes of about 1-2 microm. The vitrigel scaffold delivery system exhibited sustained release of bone morphogenetic protein-2 and >80% of the total bone morphogenetic protein-2 was still retained in the vitrigel after 15 days in phosphate-buffered saline in vitro. Bone morphogenetic protein-2-containing vitrigel was transplanted into mouse calvarial defects. The enhanced mechanical strength of the vitrigel made it easier to implant into defects without damage. Obvious bone regeneration was observed in the defects of mice treated with as little as 0.19 microg of bone morphogenetic protein-2 at 4 weeks after the transplantation. The local and sustained delivery system for bone morphogenetic protein-2 developed in the present study may represent a powerful modality for bone regeneration.

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Year:  2009        PMID: 19269600     DOI: 10.1016/j.jbiosc.2008.10.007

Source DB:  PubMed          Journal:  J Biosci Bioeng        ISSN: 1347-4421            Impact factor:   2.894


  11 in total

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3.  Natural and Genetically Engineered Proteins for Tissue Engineering.

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5.  Histone-targeted gene transfer of bone morphogenetic protein-2 enhances mesenchymal stem cell chondrogenic differentiation.

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Journal:  Acta Biomater       Date:  2018-03-02       Impact factor: 8.947

6.  The utility of human dedifferentiated fat cells in bone tissue engineering in vitro.

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7.  Newly Designed Human-Like Collagen to Maximize Sensitive Release of BMP-2 for Remarkable Repairing of Bone Defects.

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Review 8.  Applications of Carbon Nanotubes in Bone Regenerative Medicine.

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Journal:  Nanomaterials (Basel)       Date:  2020-04-02       Impact factor: 5.076

9.  Comparing microspheres with different internal phase of polyelectrolyte as local drug delivery system for bone tuberculosis therapy.

Authors:  Gang Wu; Long Chen; Hong Li; Chun-Ling Deng; Xiao-Feng Chen
Journal:  Biomed Res Int       Date:  2014-02-23       Impact factor: 3.411

10.  The osteoblastic differentiation ability of human dedifferentiated fat cells is higher than that of adipose stem cells from the buccal fat pad.

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