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Noninvasive identification of subcellular organization and nuclear morphology features associated with leukemic cells using light-scattering spectroscopy

机译:使用光散射光谱法无创地鉴定与白血病细胞相关的亚细胞组织和核形态特征

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摘要

Leukemia is the most common and deadly cancer among children and one of the most prevalent cancers among adults. Improvements in its diagnosis and monitoring of leukemic patients could have a significant impact in their long-term treatment. We demonstrate that light-scattering spectroscopy (LSS)-based approaches could serve as a tool to achieve this goal. Specifically, we characterize the light scattering properties of leukemic (NALM-6) cells and compare them to those of normal lymphocytes and granulocytes in the 440–710 nm range, over ±4 deg about the exact backscattering direction. We find that the LSS spectra are well described by an inverse power-law wavelength dependence, with a power exponent insensitive to the scattering angle but significantly higher for leukemic cells than for normal leukocytes. This is consistent with differences in the subcellular morphology of these cells, detected in differential interference contrast images. Furthermore, the residual light-scattering signal, extracted after subtracting the inverse power-law fit from the data, can be analyzed assuming a Gaussian distribution of spherical scatterers using Mie theory. This analysis yields scatterer sizes that are consistent with the diameters of cell nuclei and allows the detection of the larger nuclei of NALM-6 cells compared to those of lymphocytes and granulocytes.
机译:白血病是儿童中最常见和致命的癌症,也是成人中最普遍的癌症之一。改善对白血病患者的诊断和监测可能会对他们的长期治疗产生重大影响。我们证明基于光散射光谱(LSS)的方法可以作为实现此目标的工具。具体来说,我们表征了白血病(NALM-6)细胞的光散射特性,并将它们与440-710 nm范围内的正常淋巴细胞和粒细胞的光散射特性进行了比较,确切的反向散射方向为±4度。我们发现,LSS谱很好地描述了逆幂律波长的相关性,其幂指数对散射角不敏感,但对于白血病细胞而言,其显着高于正常白细胞。这与在差分干扰对比图像中检测到的这些细胞的亚细胞形态差异是一致的。此外,可以使用米氏理论,假设球形散射体的高斯分布,可以分析从数据中减去反幂律拟合后提取的残余光散射信号。该分析产生的散射体大小与细胞核的直径一致,并且与淋巴细胞和粒细胞相比,可以检测到更大的NALM-6细胞核。

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