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UV-Photofunctionalization of Titanium Promotes Mechanical Anchorage in A Rat Osteoporosis Model

机译:钛的紫外线光功能化促进大鼠骨质疏松症模型中的机械锚固。

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摘要

Effects of UV-photofunctionalization on bone-to-titanium integration under challenging systemic conditions remain unclear. We examined the behavior and response of osteoblasts from sham-operated and ovariectomized (OVX) rats on titanium surfaces with or without UV light pre-treatment and the strength of bone-implant integration. Osteoblasts from OVX rats showed significantly lower alkaline phosphatase, osteogenic gene expression, and mineralization activities than those from sham rats. Bone density variables in the spine were consistently lower in OVX rats. UV-treated titanium was superhydrophilic and the contact angle of ddH O was ≤5°. Titanium without UV treatment was hydrophobic with a contact angle of ≥80°. Initial attachment to titanium, proliferation, alkaline phosphatase activity, and gene expression were significantly increased on UV-treated titanium compared to that on control titanium in osteoblasts from sham and OVX rats. Osteoblastic functions compromised by OVX were elevated to levels equivalent to or higher than those of sham-operated osteoblasts following culture on UV-treated titanium. The strength of in vivo bone-implant integration for UV-treated titanium was 80% higher than that of control titanium in OVX rats and even higher than that of control implants in sham-operated rats. Thus, UV-photofunctionalization effectively enhanced bone-implant integration in OVX rats to overcome post-menopausal osteoporosis-like conditions.
机译:在具有挑战性的全身条件下,紫外线光功能化对骨-钛整合的影响尚不清楚。我们检查了假手术和去卵巢(OVX)大鼠在有或没有紫外线预处理的钛表面上的成骨细胞的行为和反应以及骨植入物整合的强度。与假手术大鼠相比,OVX大鼠的成骨细胞显示出明显较低的碱性磷酸酶,成骨基因表达和矿化活性。 OVX大鼠的脊柱骨密度变量始终较低。经紫外线处理的钛具有超亲水性,ddH O的接触角≤5°。未经紫外线处理的钛是疏水的,接触角≥80°。与假对照和OVX大鼠成骨细胞中的钛相比,经紫外线处理的钛与钛的初始附着,增殖,碱性磷酸酶活性和基因表达显着增加。在经过紫外线处理的钛上培养后,OVX损害的成骨细胞功能提高到与假手术成骨细胞相同或更高的水平。经紫外线处理的钛的体内骨植入物整合强度比OVX大鼠的对照钛强度高80%,甚至比假手术大鼠的对照植入物强度高。因此,紫外线光功能化有效地增强了OVX大鼠的骨-植入整合,从而克服了绝经后的骨质疏松样症状。

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