Literature DB >> 21726066

Osteoinduction by Ca-P biomaterials implanted into the muscles of mice.

Rui-na Yang1, Feng Ye, Li-jia Cheng, Jin-jing Wang, Xiao-feng Lu, Yu-jun Shi, Hong-song Fan, Xing-dong Zhang, Hong Bu.   

Abstract

The osteoinduction of porous biphasic calcium phosphate ceramics (BCP) has been widely reported and documented, but little research has been performed on rodent animals, e.g., mice. In this study, we report osteoinduction in a mouse model. Thirty mice were divided into two groups. BCP materials (Sample A) and control ceramics (Sample B) were implanted into the leg muscle, respectively. Five mice in each group were killed at 15, 30, and 45 d after surgery. Sample A and Sample B were harvested and used for hematoxylin and eosin (HE) staining, immunohistochemistry (IHC) staining, and Alizarin Red S staining to check bone formation in the biomaterials. Histological analysis showed that no bone tissue was formed 15 d after implantation (0/5) in either of the two groups. Newly-formed bone tissues were observed in Sample A at 30 d (5/5) and 45 d (5/5) after implantation; the average amounts of newly-formed bone tissues were approximately 5.2% and 8.6%, respectively. However, we did not see any bone tissue in Sample B until 45 d after implantation. Bone-related molecular makers such as bone morphogenesis protein-2 (BMP-2), collagen type I, and osteopontin were detected by IHC staining in Sample A 30 d after implantation. In addition, the newly-formed bone was also confirmed by Alizarin Red S staining. Because this is the report of osteoinduction in the rodent animal on which all the biotechnologies were available, our results may contribute to further mechanism research.

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Year:  2011        PMID: 21726066      PMCID: PMC3134847          DOI: 10.1631/jzus.B1000204

Source DB:  PubMed          Journal:  J Zhejiang Univ Sci B        ISSN: 1673-1581            Impact factor:   3.066


  38 in total

1.  Bone formation induced by calcium phosphate ceramics in soft tissue of dogs: a comparative study between porous alpha-TCP and beta-TCP.

Authors:  H Yuan; J D De Bruijn; Y Li; J Feng; Z Yang; K De Groot; X Zhang
Journal:  J Mater Sci Mater Med       Date:  2001-01       Impact factor: 3.896

2.  Bone morphogenetic protein and ceramic-induced osteogenesis.

Authors:  H Yuan; P Zou; Z Yang; X Zhang; J D De Bruijn; K De Groot
Journal:  J Mater Sci Mater Med       Date:  1998-12       Impact factor: 3.896

3.  Proliferation and bone-related gene expression of osteoblasts grown on hydroxyapatite ceramics sintered at different temperature.

Authors:  Chaoyuan Wang; Yourong Duan; Boban Markovic; James Barbara; C Rolfe Howlett; Xingdong Zhang; Hala Zreiqat
Journal:  Biomaterials       Date:  2004-07       Impact factor: 12.479

4.  An automatic microspectrophotometric scanning method for the measurement of bone formation rates in vivo.

Authors:  W Sontag
Journal:  Calcif Tissue Int       Date:  1980       Impact factor: 4.333

5.  The morphogenesis of bone in replicas of porous hydroxyapatite obtained from conversion of calcium carbonate exoskeletons of coral.

Authors:  U Ripamonti
Journal:  J Bone Joint Surg Am       Date:  1991-06       Impact factor: 5.284

6.  3D microenvironment as essential element for osteoinduction by biomaterials.

Authors:  Pamela Habibovic; Huipin Yuan; Chantal M van der Valk; Gert Meijer; Clemens A van Blitterswijk; Klaas de Groot
Journal:  Biomaterials       Date:  2005-06       Impact factor: 12.479

7.  The induction of bone formation by coral-derived calcium carbonate/hydroxyapatite constructs.

Authors:  Ugo Ripamonti; Jean Crooks; Lerato Khoali; Laura Roden
Journal:  Biomaterials       Date:  2008-12-09       Impact factor: 12.479

8.  Porosity and pore size of beta-tricalcium phosphate scaffold can influence protein production and osteogenic differentiation of human mesenchymal stem cells: an in vitro and in vivo study.

Authors:  Philip Kasten; Ingo Beyen; Philipp Niemeyer; Reto Luginbühl; Marc Bohner; Wiltrud Richter
Journal:  Acta Biomater       Date:  2008-06-11       Impact factor: 8.947

9.  Osteogenic responses to extraskeletally implanted synthetic porous calcium phosphate ceramics: an early stage histomorphological study in dogs.

Authors:  Z J Yang; H Yuan; P Zou; W Tong; S Qu; X D Zhang
Journal:  J Mater Sci Mater Med       Date:  1997-11       Impact factor: 3.896

10.  Bone tissue formation in sheep muscles induced by a biphasic calcium phosphate ceramic and fibrin glue composite.

Authors:  Damien Le Nihouannen; Afchine Saffarzadeh; Olivier Gauthier; Françoise Moreau; Paul Pilet; Reiner Spaethe; Pierre Layrolle; Guy Daculsi
Journal:  J Mater Sci Mater Med       Date:  2007-07-10       Impact factor: 3.896

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  5 in total

1.  Osteoinductive potential of highly purified porous β-TCP in mice.

Authors:  Masako Tsukanaka; Shunsuke Fujibayashi; Bungo Otsuki; Mitsuru Takemoto; Shuichi Matsuda
Journal:  J Mater Sci Mater Med       Date:  2015-02-20       Impact factor: 3.896

Review 2.  Biological properties of calcium phosphate biomaterials for bone repair: a review.

Authors:  Jingyi Lu; Huijun Yu; Chuanzhong Chen
Journal:  RSC Adv       Date:  2018-01-09       Impact factor: 4.036

3.  Effect of scaffold microarchitecture on osteogenic differentiation of human mesenchymal stem cells.

Authors:  Ameya Phadke; YongSung Hwang; Su Hee Kim; Soo Hyun Kim; Tomonori Yamaguchi; Koichi Masuda; Shyni Varghese
Journal:  Eur Cell Mater       Date:  2013-01-18       Impact factor: 3.942

Review 4.  The material and biological characteristics of osteoinductive calcium phosphate ceramics.

Authors:  Zhurong Tang; Xiangfeng Li; Yanfei Tan; Hongsong Fan; Xingdong Zhang
Journal:  Regen Biomater       Date:  2017-09-08

5.  Bone-Forming Capabilities of a Newly Developed NanoHA Composite Alloplast Infused with Collagen: A Pilot Study in the Sheep Mandible.

Authors:  Charles Marin; Ryo Jimbo; Fabio Cesar Lorenzoni; Lukasz Witek; Hellen Teixeira; Estevam Bonfante; Jose Gil; Rodrigo Granato; Nick Tovar; Paulo G Coelho
Journal:  Int J Dent       Date:  2013-10-27
  5 in total

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