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首页> 外文期刊>African Journal of Biotechnology >Effects of nacre-coated titanium surfaces on cell proliferation and osteocalcin expression in MG-63 osteoblast-like cells
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Effects of nacre-coated titanium surfaces on cell proliferation and osteocalcin expression in MG-63 osteoblast-like cells

机译:涂层钛表面对Mg-63骨细胞样细胞细胞增殖和骨钙素表达的影响

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Titanium is widely used for dental implants because of its superior mechanical properties, low modulus, excellent corrosion resistance, and good biocompatibility. However, even when they are used in combination with a protective coating, such as hydroxyapatite (HA), titanium implants have been reported to have several disadvantages. These implants are unable to bond directly with the bone, and this impairs the anchorage of dental implants within the bone itself. In this study, a novel implant was obtained by implanting titanium implants into the epithelial mantle pearl sacs of a fresh water bivalve (Hyriopsis cumingii?Lea), which has been used previously in a proof-of-concept study for the natural induction nacre coating.?In vitrocell responses to the nacre-coated surface were evaluated by seeding MG-63 osteoblast-like cells onto the implant surfaces, and then assessing cell morphology, cell proliferation and markers of differentiation (alkaline phosphatase [ALP] activity and osteocalcin expression levels). Among all of the specimens tested, including multiple control surfaces, the nacre coatings had a stronger stimulatory on the MG-63 cells by altering cell morphology, and promoting proliferation and differentiation. These results indicate the bone-bonding capacities of nacreous coatings. However, further?in vivo?animal experiments are required to provide conclusive evidence for the bioactivity of nacreous coatings.
机译:由于其优越的机械性能,低模量,优异的耐腐蚀性和良好的生物相容性,钛被广泛用于牙科植入物。然而,即使它们与保护涂层组合使用,例如羟基磷灰石(HA),据报道钛植入物具有若干缺点。这些植入物不能直接与骨骼粘合,这损害了骨骼本身内的牙科植入物的锚定。在这项研究中,通过将钛植入物植入新鲜水分枝(Hyriopsis Cumpingii'ea)的上皮型珍珠囊中来获得新的植入物,这已经在概念上使用的自然感应陈腐涂层。α在植入物表面上播种Mg-63成骨细胞,然后评估细胞形态,细胞增殖和分化的标志物(碱性磷酸酶[ALP]活性和骨钙素表达水平的细胞形态,细胞增殖和标志物评估对NaCRE涂覆表面的蒸煮。 )。在测试的所有标本中,包括多种控制表面,通过改变细胞形态并促进增殖和分化,褐煤涂层在Mg-63细胞上具有更强的刺激性。这些结果表明了棕褐色涂料的骨粘合能力。然而,进一步?在体内?动物实验需要为珍珠涂层的生物活性提供确凿的证据。

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