Variation of the bone forming ability with the physicochemical properties of calcium phosphate bone substitutes

Author:

Duan Rongquan12345ORCID,Barbieri Davide675,Luo Xiaoman675,Weng Jie89101112,Bao Chongyun1314151617,de Bruijn Joost D.12345,Yuan Huipin6751819

Affiliation:

1. Biomaterials Science and Technology

2. MIRA Institute

3. University of Twente

4. Enschede

5. the Netherlands

6. Kuros Biosciences BV

7. Bilthoven

8. Key Laboratory of Advanced Technologies of Materials

9. Ministry of Education

10. School of Materials Science and Engineering

11. Southwest Jiaotong University

12. Chengdu 610031

13. State Key Laboratory of Oral Diseases

14. West China School of Stomatology

15. Sichuan University

16. Chengdu 610041

17. China

18. Complex Tissue Regeneration department

19. MERLN Institute for Technology Inspired Regenerative Medicine

Abstract

The submicron-scaled surface structure triggers osteoinduction in CaPs via mechanotransduction, rather than protein adsorption, surface mineralization and calcium ion release.

Publisher

Royal Society of Chemistry (RSC)

Subject

General Materials Science,Biomedical Engineering

Reference53 articles.

1. Calcium phosphate ceramics in bone tissue engineering: A review of properties and their influence on cell behavior

2. Heterotopic bone formation around porous hydroxyapatite ceramics in the subcutis of dogs.

3. X. Zhang , P.Zhou , J.Zhang , W.Chen and C.Wu , in Bioceramics and the Human Body , ed. A. Ravaglioli and A. Krajewski , Elsevier Applied Science , London and New York , 1991 , pp. 408–415

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