Galanzha Ekaterina I, Shashkov Evgeny V, Tuchin Valery V, Zharov Vladimir P
University of Arkansas for Medical Sciences, Philips Classic Laser Laboratories, Winthrop P. Rockefeller Cancer Institute, Little Rock, Arkansas 72205, USA.
Cytometry A. 2008 Oct;73(10):884-94. doi: 10.1002/cyto.a.20587.
Compared with blood tests, cell assessment in lymphatics is not well-established. The goal of this work was to develop in vivo lymph tests using the principles of flow cytometry. Cells in living animals were counted by laser (420-2,300 nm) generation of photoacoustic (PA) signals in individual cells hydrodynamically focused by lymph valves into a single file flow, and using endogenous absorption as intrinsic cell-specific markers, or gold nanorods, nanoshells, and carbon nanotubes as multicolor probes. PA data were verified by high-speed transmission, photothermal, and fluorescent imaging. Counting of melanoma and immune-related cells in normal, apoptotic, and necrotic states in lymphatics in vivo was demonstrated to have the unprecedented sensitivity as one metastatic cell among millions of white blood cells. The time-resolved PA spectral identification of flowing cells was achieved using multicolor labels and laser pulses of different wavelengths and time delays. Multiparameter, noninvasive, portable flow cytometer can be used for preclinical studies on animals with the potential of translation to humans for in vivo PA mapping of colorless lymph vessels and sentinel nodes with simultaneous single cell detection and metastasis assessment without labeling or use of contrast dyes and/or novel low-toxic multicolor probes with different absorption spectra.
与血液检测相比,淋巴管中的细胞评估尚未得到充分确立。这项工作的目标是利用流式细胞术原理开发体内淋巴检测方法。通过激光(420 - 2300纳米)在由淋巴瓣膜流体动力学聚焦成单列流动的单个细胞中产生光声(PA)信号来对活体动物中的细胞进行计数,并使用内源性吸收作为内在的细胞特异性标记物,或使用金纳米棒、纳米壳和碳纳米管作为多色探针。通过高速透射、光热和荧光成像对PA数据进行了验证。体内淋巴管中处于正常、凋亡和坏死状态的黑色素瘤细胞和免疫相关细胞的计数被证明具有前所未有的灵敏度,能够在数百万白细胞中检测到一个转移细胞。利用多色标记以及不同波长和时间延迟的激光脉冲实现了对流动细胞的时间分辨PA光谱识别。多参数、无创、便携式流式细胞仪可用于动物的临床前研究,具有向人类转化的潜力,用于体内无色淋巴管和前哨淋巴结的PA映射,同时进行单细胞检测和转移评估,无需标记或使用对比染料和/或具有不同吸收光谱的新型低毒多色探针。