Salamanca Eisner, Pan Yu-Hwa, Tsai Aileen I, Lin Pei-Ying, Lin Ching-Kai, Huang Haw-Ming, Teng Nai-Chia, Wang Peter D, Chang Wei-Jen
School of Dentistry, College of Oral Medicine, Taipei Medical University, Taipei 110, Taiwan.
Department of Dentistry, Chang Gung Memorial Hospital, Taipei 105, Taiwan.
Materials (Basel). 2017 Nov 23;10(12):1347. doi: 10.3390/ma10121347.
Glow discharge plasma (GDP) treatments of biomaterials, such as hydroxyapatite/β-tricalcium phosphate (HA/β-TCP) composites, produce surfaces with fewer contaminants and may facilitate cell attachment and enhance bone regeneration. Thus, in this study we used argon glow discharge plasma (Ar-GDP) treatments to modify HA/β-TCP particle surfaces and investigated the physical and chemical properties of the resulting particles (HA/β-TCP + Ar-GDP). The HA/β-TCP particles were treated with GDP for 15 min in argon gas at room temperature under the following conditions: power: 80 W; frequency: 13.56 MHz; pressure: 100 mTorr. Scanning electron microscope (SEM) observations showed similar rough surfaces of HA/β-TCP + Ar-GDP HA/β-TCP particles, and energy dispersive spectrometry analyses showed that HA/β-TCP surfaces had more contaminants than HA/β-TCP + Ar-GDP surfaces. Ca/P mole ratios in HA/β-TCP and HA/β-TCP + Ar-GDP were 1.34 and 1.58, respectively. Both biomaterials presented maximal intensities of X-ray diffraction patterns at 27° with 600 a.u. At 25° and 40°, HA/β-TCP + Ar-GDP and HA/β-TCP particles had peaks of 200 a.u., which are similar to XRD intensities of human bone. In subsequent comparisons, MG-63 cell viability and differentiation into osteoblast-like cells were assessed on HA/β-TCP and HA/β-TCP + Ar-GDP surfaces, and Ar-GDP treatments led to improved cell growth and alkaline phosphatase activities. The present data indicate that GDP surface treatment modified HA/β-TCP surfaces by eliminating contaminants, and the resulting graft material enhanced bone regeneration.
对生物材料(如羟基磷灰石/β-磷酸三钙(HA/β-TCP)复合材料)进行辉光放电等离子体(GDP)处理,可使材料表面的污染物减少,并可能促进细胞附着,增强骨再生。因此,在本研究中,我们使用氩辉光放电等离子体(Ar-GDP)处理来修饰HA/β-TCP颗粒表面,并研究所得颗粒(HA/β-TCP + Ar-GDP)的物理和化学性质。将HA/β-TCP颗粒在室温下于氩气中进行GDP处理15分钟,条件如下:功率:80瓦;频率:13.56兆赫兹;压力:100毫托。扫描电子显微镜(SEM)观察显示,HA/β-TCP + Ar-GDP的HA/β-TCP颗粒表面粗糙度相似,能量色散光谱分析表明,HA/β-TCP表面的污染物比HA/β-TCP + Ar-GDP表面更多。HA/β-TCP和HA/β-TCP + Ar-GDP中的钙/磷摩尔比分别为1.34和1.58。两种生物材料在27°时的X射线衍射图谱强度最大,为600任意单位。在25°和40°时,HA/β-TCP + Ar-GDP和HA/β-TCP颗粒的峰值为200任意单位,这与人骨的XRD强度相似。在随后的比较中,评估了MG-63细胞在HA/β-TCP和HA/β-TCP + Ar-GDP表面的活力以及向成骨样细胞的分化情况,Ar-GDP处理导致细胞生长和碱性磷酸酶活性提高。目前的数据表明,GDP表面处理通过去除污染物修饰了HA/β-TCP表面,所得移植材料增强了骨再生。