Removal of Cancer Cells Using Thin Layers of Cadmium Oxide (CdO)�?DNA/RNA Sandwiched Complex Composite Plasmonic Nanostructure under Synchrotron Radiation

A. Heidari
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引用次数: 11

Abstract

The current study is aimed to use Polysorbate 80 as surfactant for investigating the effectiveness of permeate TBA on the Polyether Ether Ketone (PEEK) anti–cancer protective membrane and the effect of loading DNA/RNA–CdO sandwiched complex on hydrophilicity and anti–cancer properties. The results showed decreasing surface pore size from 227 to 176 and increasing porosity from 101 to 111 with loading DNA/RNA–CdO sandwiched complex, and the permeate of anti–cancer protective membrane increased from 80 to 220 (L/m2.hr.bar) with loading DNA/RNA–CdO sandwiched complex. In addition, the results of current study showed that by increasing DNA/RNA–CdO sandwiched complex nanohybrides to 0.09Wt% to polymer matrix contact angle decreased from 84.4 to 23 degree. Moreover, the results of current study showed that by increasing DNA/RNA–CdO sandwiched complex nanohybrides to 0.09Wt% to hydrophilicity of anti–cancer protective membranes increased. All of the above results mentioned fouling of hybride anti–cancer protective membrane decreased than usual form. Therefore, hybride anti–cancer protective membranes of (DNA/RNA–CdO sandwiched complex) with the help of Polysorbate 80 as surfactant may be considered as a suitable anti�?cancer protective membrane for treatment of TBA.
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利用氧化镉(CdO)去除癌细胞同步辐射下DNA/RNA夹层复合等离子体纳米结构研究
本研究以聚山梨酯80为表面活性剂,研究渗透TBA在聚醚醚酮(PEEK)抗癌保护膜上的作用,以及负载DNA/ RNA-CdO夹层复合物对其亲水性和抗癌性能的影响。结果表明,加载DNA/ RNA-CdO夹层复合物后,表面孔径由227减小到176,孔隙度由101增大到111,抗癌保护膜的渗透率由80 (L/m2.hr.bar)增加到220 (L/m2.hr.bar)。此外,本研究结果表明,通过将DNA/ RNA-CdO夹层复合纳米杂化物增加到0.09Wt%,与聚合物基体的接触角从84.4度降低到23度。此外,目前的研究结果表明,将DNA/ RNA-CdO夹层复合纳米杂交物增加到0.09Wt%,可提高抗癌保护膜的亲水性。上述结果均表明,混合抗癌保护膜的污染较常规形式有所减少。因此,以聚山梨酯80为表面活性剂的(DNA/ RNA-CdO夹层复合物)杂化抗癌保护膜可被认为是一种合适的抗癌保护膜。肿瘤保护膜治疗TBA。
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