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Impact of Nano-Crystalline Diamond Enhanced Hydrophilicity on Cell Proliferation on Machined and SLA Titanium Surfaces: An In-Vivo Study in Rodents

机译:纳米晶金刚石增强的亲水性对机加工和SLA钛表面细胞增殖的影响:啮齿动物体内研究

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摘要

By coating surfaces with nano-crystalline diamond (NCD) particles, hydrophilicity can be altered via sidechain modifications without affecting surface texture. The present study aimed to assess the impact of NCD hydrophilicity on machined and rough SLA titanium discs on soft tissue integration, using a rodent model simulating submerged healing. Four different titanium discs (machined titanium = M Titanium, NCD-coated hydrophilic machined titanium = M-O-NCD, sand blasted acid etched (SLA Titanium) titanium, and hydrophilic NCD-coated SLA titanium = SLA O-NCD) were inserted in subdermal pockets of 12 Wistar rats. After one and four weeks of healing, the animals were sacrificed. Biopsies were embedded in methyl methacrylate (MMA), and processed for histology. The number of cells located within a region of interest (ROI) of 10 µm around the discs were counted and compared statistically. Signs of inflammation were evaluated descriptively employing immunohistochemistry. At one week, M-O-NCD coated titanium discs showed significantly higher amounts of cells compared to M Titanium, SLA Titanium, and SLA-O-NCD (p < 0.001). At four weeks, significant higher cell counts were noted at SLA-O-NCD surfaces (p < 0.01). Immunohistochemistry revealed decreased inflammatory responses at hydrophilic surfaces. Within the limits of an animal study, M-O-NCD surfaces seem to stimulate cell proliferation in the initial healing phase, whereas SLA-O-NCD surfaces appeared advantageous afterwards.
机译:通过用纳米晶金刚石(NCD)颗粒涂覆表面,可以通过侧链修饰来改变亲水性而不影响表面纹理。本研究旨在使用模拟淹没愈合的啮齿动物模型评估NCD亲水性对机械和粗糙SLA钛圆盘对软组织整合的影响。将四个不同的钛圆片(机加工的钛= M钛,NCD涂层的亲水性机加工的钛= MO-NCD,喷砂酸蚀刻(SLA钛)钛和亲水性NCD涂层的SLA钛= SLA O-NCD)插入皮下袋中12只Wistar大鼠。在愈合一到四个星期后,处死动物。将活组织检查包埋在甲基丙烯酸甲酯(MMA)中,并进行组织学处理。计数并统计比较位于圆盘周围10 µm感兴趣区域(ROI)内的细胞数。使用免疫组织化学描述性地评估炎症迹象。一周后,与M Titanium,SLA Titanium和SLA-O-NCD相比,M-O-NCD涂层的钛圆片显示出明显更高的细胞数量(p <0.001)。在第4周时,在SLA-O-NCD表面发现明显更高的细胞计数(p <0.01)。免疫组织化学显示亲水表面的炎症反应减少。在一项动物研究的范围内,M-O-NCD表面似乎在初始愈合阶段刺激细胞增殖,而SLA-O-NCD表面随后似乎具有优势。

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