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Effect of crystalline phases of titania nanotube arrays on adipose derived stem cell adhesion and proliferation

机译:二氧化钛纳米管阵列结晶相对脂肪衍生的干细胞粘附和增殖的影响

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The aim of this work was to evaluate the cellular response to titanium nanotube arrays with variable crystalline structure. Cytotoxicity, viability and the ability of the titania nanotube arrays to stimulate adhesion and proliferation of adipose derived stem cells (ADSCs) was evaluated. Titania nanotube arrays were fabricated by electrochemical anodization of titanium in diethyleneglycol/hydrofluoric acid electrolyte at 60 V for 6 h, then annealed at 300, 530 and 630 degrees C for 5 h. The nanotube arrays were characterized using scanning electron microscopy (SEM), contact angle goniometry, x-ray diffraction (XRD) and protein adsorption. ADSCs were cultured on titania nanotube arrays at a density of 1 x 10(4) cells/ml. The cells were allowed to adhere and to proliferate for 1, 4 and 7 days. Cell viability was characterized by the CellTiter-Blue (R) Cell Viability Assay; and cell morphology was characterized by SEM. Cell adhesion, proliferation and morphology were characterized using fluorescence microscopy by staining the cells with DAPI and rhodamine/phalloidin. The results from this study showed that the annealing at 300 and 530 degrees C formed anatase phase, and annealing at 630 degrees C formed anatase/rutile phase. The results indicated that the modification of the crystalline structure (i.e. anatase/rutile phase) of titania nanotube arrays influenced the ADSC adhesion and proliferation. Future studies are now directed towards evaluating differentiation of this cellular model in osteoblasts.
机译:该工作的目的是评估具有可变晶体结构的钛纳米管阵列的细胞反应。评价细胞毒性,生存度和二氧化钛纳米管阵列刺激脂肪衍生干细胞(ADSCs)粘附和增殖的能力。通过在60V的二乙二醇/氢氟酸电解质中的钛的电化学阳极氧化在6小时,然后在300,530和630℃下退火5小时,通过电化学阳极氧化通过电化学阳极氧化。使用扫描电子显微镜(SEM),接触角焦点,X射线衍射(XRD)和蛋白质吸附来表征纳米管阵列。以1×10(4)个细胞/ mL的密度培养ADSCs培养钛纳米管阵列。使细胞粘附并促进1,4和7天。细胞活力的特征在于细胞基蓝(R)细胞活力测定;细胞形态的特点是SEM。用荧光显微镜通过用DAPI和Rhodamine / Phalloidin染色细胞来表征细胞粘附,增殖和形态。本研究的结果表明,在300和530℃下的退火形成锐钛矿相,并在630℃下进行退火形成锐钛矿/金红石相。结果表明,二氧化钛纳米管阵列的结晶结构(即锐钛矿/金红石相)的修饰影响了ADSC附着力和增殖。现在,未来的研究旨在评估这种细胞模型在成骨细胞中的分化。

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