Calcium-binding phospholipids as a coating material for implant osteointegration

Calcium-binding phospholipids as a coating material for implant osteointegration
复制标题

DOI:
10.1098/rsif.2005.0088
复制
发表时间:
2006-04
影响因子:
3.9
通讯作者:
M. Santin;W. Rhys-Williams;J. O’Reilly;M. Davies;K. Shakesheff;W. Love;A. Lloyd;S. Denyer
M. Santin;W. Rhys-Williams;J. O’Reilly;M. Davies;K. Shakesheff;W. Love;A. Lloyd;S. Denyer
中科院分区:
综合性期刊2区
文献类型:
--
作者:
M. Santin;W. Rhys-Williams;J. O’Reilly;M. Davies;K. Shakesheff;W. Love;A. Lloyd;S. Denyer

文献摘要

被引文献

相似文献

Among the many biomolecules involved in the bone mineralization processes, anionic phospholipids play an important role because of their ability to bind calcium. In particular, phosphatidylserine is a natural component of the plasmalemma and of the matrix vesicles generated from the osteoblast membrane to create nucleation centres for calcium phosphate crystal precipitation. In the present work, we demonstrate that calcium-binding phospholipids can be used as biomimetic coating materials for improving the osteointegration of metal implants. Relatively thick phosphatidylserine-based coatings were deposited on titanium coupons by dip-coating. Upon dehydration in a simulated body fluid phospholipids were quickly crosslinked by calcium and re-arranged into a three-dimensional matrix able to induce rapid formation of a calcium phosphate mineral phase. The rate of mineralization was shown to be dependent on the adopted coating formulation. In the attempt to closely mimic the cell membrane composition, heterogeneous formulations based on the mixing of anionic phospholipids (either phosphatidylserine or phosphatidylinositol) with phosphatidylcholine and cholesterol were synthesized. However, surface plasmon resonance studies as well as scanning electron microscopy and elemental analysis demonstrated that the homogeneous phosphatidylserine coating was a more effective calcification environment than the heterogeneous formulations.