Department of Biomedical Engineering, Fitzpatrick Institute for Photonics, Duke University, Durham, NC 27708, USA.
Anal Cell Pathol (Amst). 2011;34(5):207-22. doi: 10.3233/ACP-2011-0017.
The study of intact, living cells using non-invasive optical spectroscopic methods offers the opportunity to assess cellular structure and organization in a way that is not possible with commonly used cell biology imaging techniques. We have developed a novel spectroscopic technique for diagnosing disease at the cellular level based on using low-coherence interferometry (LCI) to detect the angular distribution of scattered light. Angle-resolved LCI (a/LCI) combines the ability of LCI to isolate scattering from sub-surface tissue layers with the ability of light scattering spectroscopy to obtain structural information on sub-wavelength scales. In application to examining cellular structure, a/LCI enables quantitative measurements of changes in the size and texture of cell nuclei. These quantitative measurements are characteristic of different pathological states. The capabilities of a/LCI were demonstrated using a clinical system that can be applied in endoscopic surveillance of esophageal tissue, producing high sensitivity and specificity for detecting dysplastic tissues in vivo. Experiments with in vitro cell samples also show the utility of a/LCI in observing structural changes due to environmental stimuli as well as detecting apoptosis due to chemotherapeutic agents.
利用非侵入性的光学光谱方法研究完整的活细胞,为评估细胞结构和组织提供了一种可能,这是常用的细胞生物学成像技术无法实现的。我们开发了一种基于低相干干涉测量(LCI)检测散射光角分布的新型光谱技术,用于在细胞水平上诊断疾病。角度分辨 LCI(a/LCI)结合了 LCI 隔离来自亚表面组织层的散射的能力和光散射光谱获得亚波长尺度结构信息的能力。在用于检查细胞结构的应用中,a/LCI 可以定量测量细胞核大小和纹理的变化。这些定量测量是不同病理状态的特征。临床系统的应用证明了 a/LCI 的功能,该系统可用于食管组织的内窥镜监测,在体内检测发育不良组织具有高灵敏度和特异性。体外细胞样本的实验也表明,a/LCI 可用于观察环境刺激引起的结构变化以及检测化疗药物引起的细胞凋亡。