College of Engineering, University of Texas at San Antonio, San Antonio, TX, USA.
Electromagn Biol Med. 2020 Apr 2;39(2):89-96. doi: 10.1080/15368378.2020.1737804. Epub 2020 Mar 5.
Active research is invested in early diagnosis of malignant cells in order to allow scope for effective treatment. The electrical impedance measurements and the modeling techniques used to perform the calculation for dielectric permittivity, conductivity and relaxation frequency aids in the differentiation of malignant and healthy cells. The literature showed a general trend in data with malignant cells having higher electrical conductivity and lower dielectric permittivity than its surrounding healthier cells. However, the relaxation frequency that correlates with the dielectric loss factor was found twice in magnitude for cancer cells than healthy cells. The water content of a cancer cell is found higher and hence correlates with the shift in the relaxation time. The intracellular sodium ion concentration is also realized to be higher for malignant cells than normal cells and accounts for the depolarized transmembrane potential. Hence, this paper forms the framework for future technological innovation that can be taken into account to actively diagnose cancer cell.
目前,研究人员积极致力于恶性细胞的早期诊断,以便为有效治疗提供可能。通过使用电阻抗测量和建模技术来计算介电常数、电导率和弛豫频率,有助于区分恶性细胞和健康细胞。文献表明,恶性细胞的电导率通常高于其周围健康细胞,而介电常数则较低。然而,与介电损耗因子相关的弛豫频率是健康细胞的两倍。癌细胞的含水量较高,因此与弛豫时间的变化相关。也发现恶性细胞的细胞内钠离子浓度高于正常细胞,这解释了去极化的跨膜电位。因此,本文为未来的技术创新提供了框架,可以考虑将其用于积极诊断癌细胞。