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The modulation of osteogenesis in vitro by calcium titanium phosphate coatings.

机译:磷酸钙钛涂层体外调节成骨作用。

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Calcium phosphate coated titanium and titanium alloy are widely used as dental and orthopaedic implants. This study examines the effect of novel calcium titanium and calcium titanium zirconium phosphates suitable for plasma-spraying onto titanium substrata on the expression of bone-related genes and proteins by human bone-derived cells (HBDC) and compares this behavior to that on native titanium and hydroxyapatite-coated titanium. Test materials were an acid etched and sand-blasted titanium surface (Ti-DPS), a plasma-sprayed hydroxyapatite coating (HA), and five materials which were created from CaTi(4)(PO(4))(6) (CTP) and CaZr(4)(PO(4))(6) (CZP): sintered CaTi(4)(PO(4))(6) (CTP-S1), sintered 46CaO.23TiO(2).31P(2)O(5) (CTP-S2), sintered CaTiZr(3)(PO(4))(6), (CTZP-S1), sintered 46CaO.23ZrO(2).31P(2)O(5) (CTZP-S2) and sintered 55CaO.20TiO(2).31P(2)O(5) (CTP-S3). HBDC were grown on the substrata for 3, 7, 14 and 21d, counted and probed for various mRNAs and proteins (type I collagen, osteocalcin, osteopontin, osteonectin, alkaline phosphatase and bone sialoprotein). All substrates significantly affected cellular growth and the temporal expression of an array of bone-related genes and proteins. At 14 and 21d, cells on CTP-S3 displayed significantly enhanced expression of all osteogenic mRNAs. Surfaces of CTP-S1 and CTP-S3 had the most effect on osteoblastic differentiation inducing a greater expression of an array of osteogenic markers than recorded for cells grown on Ti-DPS and HA, suggesting that these novel materials may possess a higher potency to enhance osteogenesis.
机译:磷酸钙涂层的钛和钛合金被广泛用作牙科和整形外科植入物。这项研究检查了适用于等离子喷涂到钛基质上的新型钙钛和钙钛磷酸锆对人骨源细胞(HBDC)的骨相关基因和蛋白质表达的影响,并将这种行为与天然钛的行为进行了比较和羟基磷灰石涂层的钛。测试材料是酸蚀和喷砂的钛表面(Ti-DPS),等离子喷涂的羟基磷灰石涂层(HA)以及由CaTi(4)(PO(4))(6)(CTP)制成的五种材料)和CaZr(4)(PO(4))(6)(CZP):烧结的CaTi(4)(PO(4))(6)(CTP-S1),烧结的46CaO.23TiO(2).31P(2 )O(5)(CTP-S2),烧结的CaTiZr(3)(PO(4))(6),(CTZP-S1),烧结的46CaO.23ZrO(2).31P(2)O(5)(CTZP -S2)和55CaO.20TiO(2).31P(2)O(5)(CTP-S3)烧结。 HBDC在基质上生长3、7、14和21d,计数并探测各种mRNA和蛋白(I型胶原蛋白,骨钙蛋白,骨桥蛋白,骨连接蛋白,碱性磷酸酶和骨唾液蛋白)。所有底物均显着影响细胞生长以及一系列骨相关基因和蛋白质的时间表达。在第14天和第21天,CTP-S3上的细胞显示出所有成骨mRNA的表达均显着增强。与在Ti-DPS和HA上生长的细胞相比,CTP-S1和CTP-S3的表面对成骨细胞分化的影响最大,诱导了一系列成骨标记物的表达更高,表明这些新型材料可能具有更高的增强能力。成骨作用。

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