4.2 Article

Titanium surface hydrophilicity enhances platelet activation

期刊

DENTAL MATERIALS JOURNAL
卷 33, 期 6, 页码 749-756

出版社

JAPANESE SOC DENTAL MATERIALS DEVICES
DOI: 10.4012/dmj.2013-221

关键词

Titanium; Hydrophilic; Platelet; Chemokine

资金

  1. King Khalid University, Saudi Arabia
  2. King Khalid University
  3. Griffith University

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Titanium implant surface modification is a key strategy used to enhance osseointegration. Platelets are the first cells that interact with the implant surface whereupon they release a wide array of proteins that influence the subsequent healing process. This study therefore investigated the effect of titanium surface modification on the attachment and activation of human platelets. The surface characteristics of three titanium surfaces: smooth (SMO), micro-rough (SLA) and hydrophilic micro-rough (SLActive) and the subsequent attachment and activation of platelets following exposure to these surfaces were determined. The SLActive surface showed the presence of significant nanoscale topographical features. While attached platelets appeared to be morphologically similar, significantly fewer platelets attached to the SLActive surface compared to both the SMO and SLA surfaces. The SLActive surface however induced the release of the higher levels of chemokines beta-throm boglobulin and platelet factor 4 from platelets. This study shows that titanium surface topography and chemistry have a significant effect on platelet activation and chemokine release.

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