Special Feature

User Panel

My Panel

My Panel

Bookmark Science Articles

Recent News
Bookmark / Share This Science Site

Segmental bone tissue engineering by seeding osteoblast precursor cells into titanium mesh-coral composite scaffolds.

Segmental bone tissue engineering by seeding osteoblast precursor cells into titanium mesh-coral composite scaffolds. Research Abstract Details 

Research Abstract Table of Contents

Jump to the:

  • Abstract Text of This Paper
  • Journal Published
  • MeSH Keywords of This Abstract
  • Chemicals and Substances Used in this Paper
  • Grants and Granting Agency of this Research
  • Database Accession Numbers Used in this Paper
  • Related Papers
  • Related Research Tags
  • Rate this Research Paper
  • Segmental bone tissue engineering by seeding osteoblast precursor cells into titanium mesh-coral composite scaffolds. Abstract Text:

    f chenF Chen,x fengX Feng,w wuW Wu,h ouyangH Ouyang,z gaoZ Gao,x chengX Cheng,r houR Hou,t maoT Mao,f chenF Chen,x fengX Feng,w wuW Wu,h ouyangH Ouyang,z gaoZ Gao,x chengX Cheng,r houR Hou,t maoT Mao,

    The size and specific shape of bone grafts are important for jaw reconstruction. In this experiment, segmental bone grafts were engineered in a predetermined shape via seeding osteoblast precursor cells into titanium mesh-coral composite scaffolds. Titanium meshes were moulded into the shape of a column with length 12 mm and diameter 8mm. The column was filled with natural coral granules and the complex acted as a cell-seeding scaffold. About 4 x 10(7) osteoblast precursor cells in 200 microl cell-culture medium were seeded into each of six scaffolds and incubated in vitro for 2 days. Then, the composites were implanted subcutaneously into the backs of nude mice and incubated in vivo. Two months after implantation, the animals were killed and new bone formed in the scaffolds was investigated by gross inspection, X-ray examination, histological observation and mechanical testing. The results showed that newly formed tissue was red and presented the gross appearance of bone, and kept the original shape of the column. Titanium mesh was situated on the surface of the bone graft. An X-ray blocking shadow was observed in and around the titanium scaffolds; most of the coral granules had been absorbed. Histological observation demonstrated a large amount of new bone formed and integrated well with titanium mesh. Mechanical testing showed that new bone improved the mechanical property of the graft significantly. In conclusion, a titanium mesh-coral composite scaffold with osteoblast precursor cells is an efficient means to engineer segmental bone, possessing the desired shape and mechanical strength.

    Segmental bone tissue engineering by seeding osteoblast precursor cells into titanium mesh-coral composite scaffolds. Publishing Authors By Initials

    f chenF Chen,x fengX Feng,w wuW Wu,h ouyangH Ouyang,z gaoZ Gao,x chengX Cheng,r houR Hou,t maoT Mao,f chenF Chen,x fengX Feng,w wuW Wu,h ouyangH Ouyang,z gaoZ Gao,x chengX Cheng,r houR Hou,t maoT Mao,

    For similar abstracts research abstracts see: abstracts research

    PUBMED ID PMID:

    MEDLINE DATE:

    Segmental bone tissue engineering by seeding osteoblast precursor cells into titanium mesh-coral composite scaffolds. Journal Published:

    PUBLICATION TYPE: Research Support, Non-U.S. Gov

    Journal: International journal of oral and maxillofacial su

    VOLUME: 36

    Page Numbers: 822-7

    Journal Abbreviation:

    ISSN: 0901-5027

    DAY: 4

    MONTH: 09

    YEAR: 2007

    Segmental bone tissue engineering by seeding osteoblast precursor cells into titanium mesh-coral composite scaffolds. Information

    Number of References:

    LANGUAGE: eng

    NlmUniqueID: 8605826

    Segmental bone tissue engineering by seeding osteoblast precursor cells into titanium mesh-coral composite scaffolds. Keywords Mesh Terms:

    KEYWORDS:

    MESH TERMS:

    Chemical & Substance for Abstract: Segmental bone tissue engineering by seeding osteoblast precursor cells into titanium mesh-coral composite scaffolds. Information

    Substance Name:

    Registry Number:

    Grant and Affiliation Information for Segmental bone tissue engineering by seeding osteoblast precursor cells into titanium mesh-coral composite scaffolds.

    AFFILIATION: Xi'da-RegeMed Lab of Tissue Engineering, Faculty of Life Science, Northwest University, Xi'an 710069, PR China. cflfx@163.net

    Country: Denmark

    Denmark Research PublicationDenmark Research Publication

    AGENCY:

    GRANT:

    ACRONYM:

    MEDLINETA: Int J Oral Maxillofac Surg

    REFSOURCE:

    DATABASENAME:

    ACCESSION NUMBER:

    Number Hits: 0

    Segmental bone tissue engineering by seeding osteoblast precursor cells into titanium mesh-coral composite scaffolds Related Publications

     

    Molecular Station USER Menu

    Welcome to Molecular Station!

    You have to register before you can post on our forums or use our advanced features. Register Now! Its Free and Fast!

    Already registered? Login now below.

    User Name:

    Password:

    Already registered and Forgot your password? Click below to recover it.

    Recover Lost Password

    Join now - it's fast and free!

    Molecular Station is THE largest network of researchers, scientists and science lovers anywhere!

    Research Terms of Usage and Disclaimer
    Home
    Features

    Protocols

    DNA Forum

    Science Forum

    DNA Forum
    Biology Forum

    Science News


    [CaRP] XML error: Invalid document end at line 2

    For more click here:Science News