Kadarwati Lutvi Vitria, Lin I-Hsin, Huang Yu-Shan, Lee Yu-Yang, Chen Shin-Cyuan, Chung Chia-Lin, Chen I-Jan, Wang Jia-Yeh, Yougbaré Sibidou, Cheng Tsai-Mu, Kuo Tsung-Rong
Graduate Institute of Biomedical Optomechatronics, College of Biomedical Engineering, Taipei Medical University, Taipei 11031, Taiwan.
School of Biomedical Engineering, College of Biomedical Engineering, Taipei Medical University, Taipei 11031, Taiwan.
ACS Omega. 2024 Aug 28;9(36):37882-37890. doi: 10.1021/acsomega.4c04154. eCollection 2024 Sep 10.
A single breast cancer is a prevalent form of cancer, affecting over 2.3 million women worldwide, as reported by the World Health Organization. Recently, researchers have extensively explored the utilization of biomaterials in breast cancer theranostics. One notable biomaterial being investigated is various structures of copper sulfide (CuS). In this work, a microsphere (MS) structure composed of CuS was employed for label-free imaging of MCF-7 breast cancer cells and normal Vero cells, respectively. Various label-free imaging techniques, such as bright field, dark field, phase contrast (PC), and differential interference contrast (DIC), were employed to capture images of CuS MSs, cell, and intact CuS MSs within a cell. The study compared the outcomes of each imaging technique and determined that DIC imaging provided the highest resolution for cells incubated with CuS MSs. Furthermore, the combination of PC and DIC techniques proved to be effective for imaging breast cancer cells in conjunction with CuS MSs. This research underscores the potential of CuS MSs for label-free cell detection and emphasizes the significance of selecting appropriate imaging techniques to attain high-quality images in the field of cell observation.
据世界卫生组织报告,乳腺癌是一种常见的癌症形式,全球有超过230万女性受其影响。最近,研究人员广泛探索了生物材料在乳腺癌诊疗中的应用。一种正在研究的著名生物材料是硫化铜(CuS)的各种结构。在这项工作中,由CuS组成的微球(MS)结构分别用于MCF-7乳腺癌细胞和正常Vero细胞的无标记成像。采用了各种无标记成像技术,如明场、暗场、相差(PC)和微分干涉对比(DIC),来捕捉CuS微球、细胞以及细胞内完整CuS微球的图像。该研究比较了每种成像技术的结果,确定DIC成像为与CuS微球孵育的细胞提供了最高分辨率。此外,PC和DIC技术的结合被证明对于结合CuS微球对乳腺癌细胞成像有效。这项研究强调了CuS微球在无标记细胞检测方面的潜力,并强调了选择合适的成像技术以在细胞观察领域获得高质量图像的重要性。