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商业纯钛板上血小板的体外黏附III:磷酸钙喷砂处理对钛板生物相容性的影响

Platelet adhesion on commercially pure titanium plates in vitro III: effects of calcium phosphate-blasting on titanium plate biocompatibility.

作者信息

Nakamura Masayuki, Aizawa Hachidai, Kawabata Hideo, Sato Atsushi, Watanabe Taisuke, Isobe Kazushige, Kitamura Yutaka, Tanaka Takaaki, Kawase Tomoyuki

机构信息

Tokyo Plastic Dental Society, Kita-ku, Tokyo, Japan.

Department of Materials Science and Technology, Niigata University, Niigata, Japan.

出版信息

Int J Implant Dent. 2020 Nov 20;6(1):74. doi: 10.1186/s40729-020-00270-2.

Abstract

BACKGROUND

Platelet-rich plasma (PRP) is often used to improve surface biocompatibility. We previously found that platelets rapidly adhere to plain commercially pure titanium (cp-Ti) plates in the absence, but not in the presence, of plasma proteins. To further expand on these findings, in the present study, we switched titanium plates from a plain surface to a rough surface that is blasted with calcium phosphate (CaP) powder and then examined platelet adhesion and activation.

METHODS

Elemental distribution in CaP-blasted cp-Ti plates was analyzed using energy-dispersive X-ray spectroscopy. PRP samples prepared from anticoagulated blood samples of six healthy, non-smoking adult male donors were loaded on CaP-blasted cp-Ti plates for 1 h and fixed for examination of platelet morphology and visualization of PDGF-B and platelet surface markers (CD62P, CD63) using scanning electron microscopy and fluorescence microscopy. Plain SUS316L stainless steel plates used in injection needles were also examined for comparison.

RESULTS

Significant amounts of calcium and phosphate were detected on the CaP-blasted cp-Ti surface. Platelets rapidly adhered to this surface, leading to higher activation. Platelets also adhered to the plain stainless surface; however, the levels of adhesion and activation were much lower than those observed on the CaP-blasted cp-Ti plate.

CONCLUSIONS

The CaP-blasted cp-Ti surface efficiently entraps and activates platelets. Biomolecules released from the activated platelets could be retained by the fibrin matrix on the surface to facilitate regeneration of the surrounding tissues. Thus, PRP immersion could not only eliminate surface air bubbles but also improve the biocompatibility of the implant surface.

摘要

背景

富血小板血浆(PRP)常用于改善表面生物相容性。我们之前发现,在不存在血浆蛋白的情况下,血小板能迅速黏附于普通商用纯钛(cp-Ti)板,但在有血浆蛋白存在时则不然。为进一步拓展这些发现,在本研究中,我们将钛板从光滑表面改为用磷酸钙(CaP)粉末喷砂处理后的粗糙表面,然后检测血小板的黏附与活化情况。

方法

采用能量色散X射线光谱法分析经CaP喷砂处理的cp-Ti板中的元素分布。从6名健康、不吸烟成年男性供体的抗凝血液样本中制备的PRP样本,加载到经CaP喷砂处理的cp-Ti板上1小时,然后固定,通过扫描电子显微镜和荧光显微镜检查血小板形态以及血小板衍生生长因子-B(PDGF-B)和血小板表面标志物(CD62P、CD63)的可视化情况。还检测了注射针中使用的普通SUS316L不锈钢板以作比较。

结果

在经CaP喷砂处理的cp-Ti表面检测到大量钙和磷。血小板迅速黏附于该表面,导致更高程度的活化。血小板也黏附于普通不锈钢表面;然而,其黏附与活化水平远低于在经CaP喷砂处理的cp-Ti板上观察到的水平。

结论

经CaP喷砂处理的cp-Ti表面能有效捕获并激活血小板。从活化血小板释放的生物分子可被表面的纤维蛋白基质保留,以促进周围组织的再生。因此,PRP浸泡不仅可以消除表面气泡,还能改善植入物表面的生物相容性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a5f/7677422/19294f5ef74d/40729_2020_270_Fig1_HTML.jpg

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