Heimann Robert B
Am Stadtpark 2A, D-02826 Goerlitz, Germany.
Materials (Basel). 2019 Jun 27;12(13):2059. doi: 10.3390/ma12132059.
Calcium (titanium, zirconium) hexaorthophosphates with a [NZP] (sodium zirconium phosphate) structure belonging to the NaSiCon ( uperonic ductor) family were deposited by atmospheric plasma spraying onto the surfaces of Ti6Al4V substrates. (NaSiCon refers to solids with the chemical formula NaZrSiPO, 0 < x < 3. In a broader sense, it is also used for similar compounds where Na, Zr and/or Si are replaced by isovalent elements). The microstructure of the coatings revealed the incongruent melting of the precursor material as ascertained by electron probe microanalysis (EPMA). The adhesion of the coatings to the substrate surface was within the limits specified for biomedical coatings. The solubility of the coatings was tested by immersion in 0.2 molar tris-hydroxymethyl-amino-methane-HCl (TRIS-HCl) buffer and found to be at least one order of magnitude lower than that of conventional hydroxylapatite coatings deposited under comparable conditions. biocompatibility tests with primary rat bone marrow cells (BMCs) showed a substantial cell proliferation in the presence of fetal bovine serum. Animal tests confirmed that coatings based on calcium (titanium, zirconium) hexaorthophosphates applied to Ti6Al4V rods implanted in the femoral medulla of sheep led to the strong neoformation of dense bone at a stable interface implant-bioceramic coating without coating delamination. Hence, based on their multifarious advantageous properties in the biomedical context, CaTiZr(PO) ceramics may be considered the 'Sleeping Beauty' of osseoconductive coatings for the stem of hip endoprostheses and dental root implants, osteosynthetic fixation devices, and bioelectric devices including bone growth stimulators.
具有[NZP](磷酸锆钠)结构、属于NaSiCon(超离子导体)家族的六正磷酸钙(钛、锆)通过大气等离子喷涂沉积在Ti6Al4V基体表面。(NaSiCon是指化学式为NaZrSiPO、0 < x < 3的固体。从广义上讲,它也用于Na、Zr和/或Si被等价元素取代的类似化合物)。涂层的微观结构显示,通过电子探针微分析(EPMA)确定前驱体材料发生了不一致熔化。涂层与基体表面的附着力在生物医学涂层规定的范围内。通过将涂层浸泡在0.2摩尔的三羟甲基氨基甲烷 - 盐酸(TRIS - HCl)缓冲液中来测试涂层的溶解度,发现其溶解度比在类似条件下沉积的传统羟基磷灰石涂层至少低一个数量级。用原代大鼠骨髓细胞(BMC)进行的生物相容性测试表明,在胎牛血清存在下细胞大量增殖。动物试验证实,应用于植入绵羊股骨髓腔的Ti6Al4V棒上的基于六正磷酸钙(钛、锆)的涂层,在植入体 - 生物陶瓷涂层稳定界面处导致致密骨的强烈新生,且无涂层分层。因此,基于其在生物医学领域的多种有利特性,CaTiZr(PO)陶瓷可被视为用于髋关节假体柄、牙根植入物、骨固定装置以及包括骨生长刺激器在内的生物电装置的骨传导涂层中的“睡美人”。