IEEE Trans Biomed Eng. 2024 Jul;71(7):2180-2188. doi: 10.1109/TBME.2024.3364386. Epub 2024 Jun 19.
Terahertz (THz) metasurfaces based on high Q-factor electromagnetically induced transparency-like (EIT-like) resonances are promising for biological sensing. Despite this potential, they have not often been investigated for practical differentiation between cancerous and healthy cells. The present methodology relies mainly on refractive index sensing, while factors of transmission magnitude and Q-factor offer significant information about the tumors. To address this limitation and improve sensitivity, we fabricated a THz EIT-like metasurface based on asymmetric resonators on an ultra-thin and flexible dielectric substrate. Bright-dark modes coupling at 1.96 THz was experimentally verified, and numerical results and theoretical analysis were presented. An enhanced theoretical sensitivity of 550 GHz/RIU was achieved for a sample with a thickness of 13 µm due to the ultra-thin substrate and novel design. A two-layer skin model was generated whereby keratinocyte cell lines were cultured on a base of collagen. When NEB1-shPTCH (basal cell carcinoma (BCC)) were switched out for NEB1-shCON cell lines (healthy) and when BCC's density was raised from 1 × 10 to 2.5 × 10, a frequency shift of 40 and 20 GHz were observed, respectively. A combined sensing analysis characterizes different cell lines. The findings may open new opportunities for early cancer detection with a fast, less-complicated, and inexpensive method.
基于高品质因子电磁感应透明(EIT-like)共振的太赫兹(THz)超表面在生物传感方面具有广阔的应用前景。尽管具有这种潜力,但它们在实际区分癌变和健康细胞方面的应用尚未得到广泛研究。目前的方法主要依赖于折射率传感,而传输幅度和品质因数等因素提供了关于肿瘤的重要信息。为了解决这个局限性并提高灵敏度,我们在超轻薄的介电基底上制作了基于非对称谐振器的太赫兹 EIT-like 超表面。在 1.96 THz 处实验验证了亮暗模式耦合,并给出了数值结果和理论分析。由于采用了超轻薄基底和新颖设计,厚度为 13 µm 的样品实现了增强的理论灵敏度 550 GHz/RIU。生成了双层皮肤模型,其中角质形成细胞系在胶原蛋白基底上培养。当用 NEB1-shPTCH(基底细胞癌(BCC))取代 NEB1-shCON 细胞系(健康),并且当 BCC 的密度从 1 × 10 增加到 2.5 × 10 时,分别观察到 40 和 20 GHz 的频率偏移。综合传感分析可表征不同的细胞系。这些发现可能为癌症早期检测提供一种快速、简单、廉价的方法。