Osanloo Nahid, Ahmadi Vahid, Naser-Moghaddasi Mohammad, Darabi Elham
Faculty of Engineering, Science and Research Branch, Islamic Azad University Tehran Iran.
Department of Electrical and Computer Engineering, Tarbiat Modares University Tehran Iran
RSC Adv. 2023 Aug 1;13(33):23244-23253. doi: 10.1039/d3ra03338d. eCollection 2023 Jul 26.
The cloaking characteristics of biocells can be considered as a factor to determine drug absorption by the tissues. The metal-organic core-shell structure can act as a cloak around the molecules of tissue and can be used as a nanomachine for drug delivery. Thus, we define a ratio of drug absorption based on frequency red-shift and the effective permittivity in the optical spectrum. Here, a cylinder of molecules coated by plasmonic nano core-shells is proposed for measuring the cloaking characteristics of biocells. The overall bandwidth of the proposed cloak for reflectance less than -10 dB is 36%. We check the effect of the filling factors of nanoparticles on the reflection and the frequency response of the tissue. Besides the frequency red-shift and change in the level of reflection, the phase and impedance are extracted. We could obtain the normalized scattering cross-section of 5 dB lower than the cylinder without cloak for the cylinder with a gold-DNA core-shell cloak. Here, we modify the Maxwell-Garnett equation for a cylindrical structure to obtain the effective value of the permittivity for cancer and normal tissues. The results show that obtained permittivity from the simulation has a good match with the calculated permittivity from the Maxwell-Garnet equation. Therefore, this approach can be considered as an efficient method for drug absorption and diagnosis of cancer cells from normal cells.
生物细胞的隐形特性可被视为决定组织药物吸收的一个因素。金属有机核壳结构可充当围绕组织分子的隐形衣,并可作为药物递送的纳米机器。因此,我们基于频移和光谱中的有效介电常数定义了药物吸收比率。在此,提出了一种由等离子体纳米核壳包覆的分子圆柱体,用于测量生物细胞的隐形特性。所提出的隐形衣在反射率小于 -10 dB 时的整体带宽为 36%。我们研究了纳米颗粒填充因子对组织反射和频率响应的影响。除了频移和反射水平的变化外,还提取了相位和阻抗。对于具有金 - DNA 核壳隐形衣的圆柱体,我们可以获得比没有隐形衣的圆柱体低 5 dB 的归一化散射截面。在此,我们针对圆柱形结构修改了麦克斯韦 - 加尼特方程,以获得癌症组织和正常组织的介电常数有效值。结果表明,模拟得到的介电常数与麦克斯韦 - 加尼特方程计算得到的介电常数匹配良好。因此,这种方法可被视为一种从正常细胞中吸收药物和诊断癌细胞的有效方法。