Mangini Maria, Ferrara Maria Antonietta, Zito Gianluigi, Managò Stefano, Luini Alberto, De Luca Anna Chiara, Coppola Giuseppe
Laboratory of Biophotonics and Advanced Microscopy, Institute of Experimental Endocrinology and Oncology "G. Salvatore", Second Unit, National Research Council, Naples, Italy.
Laboratory of Optics and Photonics, Institute of Applied Sciences and Intelligent Systems, Unit of Naples, National Research Council, Naples, Italy.
Front Bioeng Biotechnol. 2023 Feb 1;11:1057216. doi: 10.3389/fbioe.2023.1057216. eCollection 2023.
Circulating tumor cells (CTCs) are tumor cells that have penetrated the circulatory system preserving tumor properties and heterogeneity. Detection and characterization of CTCs has high potential clinical values and many technologies have been developed for CTC identification. These approaches remain challenged by the extraordinary rarity of CTCs and the difficulty of efficiently distinguishing cancer from the much larger number of white blood cells in the bloodstream. Consequently, there is still a need for efficient and rapid methods to capture the broad spectrum of tumor cells circulating in the blood. Herein, we exploit the peculiarities of cancer metabolism for discriminating cancer from WBCs. Using deuterated glucose and Raman microscopy we show that a) the known ability of cancer cells to take up glucose at greatly increased rates compared to non-cancer cells results in the lipid generation and accumulation into lipid droplets and, b) by contrast, leukocytes do not appear to generate visible LDs. The difference in LD abundance is such that it provides a reliable parameter for distinguishing cancer from blood cells. For LD sensitive detections in a cell at rates suitable for screening purposes, we test a polarization-sensitive digital holographic imaging (PSDHI) technique that detects the birefringent properties of the LDs. By using polarization-sensitive digital holographic imaging, cancer cells (prostate cancer, PC3 and hepatocarcinoma cells, HepG2) can be rapidly discriminated from leukocytes with reliability close to 100%. The combined Raman and PSDHI microscopy platform lays the foundations for the future development of a new label-free, simple and universally applicable cancer cells' isolation method.
循环肿瘤细胞(CTCs)是穿透循环系统并保留肿瘤特性和异质性的肿瘤细胞。CTCs的检测和表征具有很高的临床潜在价值,并且已经开发了许多用于CTCs识别的技术。这些方法仍然面临挑战,因为CTCs极其罕见,且难以有效地将癌细胞与血液中数量多得多的白细胞区分开来。因此,仍然需要高效快速的方法来捕获血液中循环的广谱肿瘤细胞。在此,我们利用癌症代谢的特性来区分癌细胞与白细胞。使用氘代葡萄糖和拉曼显微镜,我们发现:a)与非癌细胞相比,癌细胞以大大增加的速率摄取葡萄糖的已知能力导致脂质生成并积累到脂滴中;b)相比之下,白细胞似乎不会产生可见的脂滴。脂滴丰度的差异足以提供一个可靠的参数来区分癌细胞与血细胞。为了在细胞中以适合筛选目的的速率进行脂滴敏感检测,我们测试了一种检测脂滴双折射特性的偏振敏感数字全息成像(PSDHI)技术。通过使用偏振敏感数字全息成像,癌细胞(前列腺癌PC3细胞和肝癌HepG2细胞)可以快速与白细胞区分开来,可靠性接近100%。拉曼显微镜和PSDHI显微镜的联合平台为未来开发一种新的无标记、简单且普遍适用的癌细胞分离方法奠定了基础。