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Assessment of Cell Line Models of Primary Human Cells by Raman Spectral Phenotyping

机译:通过拉曼光谱表型评估人类原代细胞的细胞系模型

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摘要

Researchers have previously questioned the suitability of cell lines as models for primary cells. In this study, we used Raman microspectroscopy to characterize live A549 cells from a unique molecular biochemical perspective to shed light on their suitability as a model for primary human pulmonary alveolar type II (ATII) cells. We also investigated a recently developed transduced type I (TT1) cell line as a model for alveolar type I (ATI) cells. Single-cell Raman spectra provide unique biomolecular fingerprints that can be used to characterize cellular phenotypes. A multivariate statistical analysis of Raman spectra indicated that the spectra of A549 and TT1 cells are characterized by significantly lower phospholipid content compared to ATII and ATI spectra because their cytoplasm contains fewer surfactant lamellar bodies. Furthermore, we found that A549 spectra are statistically more similar to ATI spectra than to ATII spectra. The spectral variation permitted phenotypic classification of cells based on Raman spectral signatures with >99% accuracy. These results suggest that A549 cells are not a good model for ATII cells, but TT1 cells do provide a reasonable model for ATI cells. The findings have far-reaching implications for the assessment of cell lines as suitable primary cellular models in live cultures.
机译:研究人员此前曾质疑细胞系作为原代细胞模型的适用性。在这项研究中,我们使用拉曼光谱法从独特的分子生化角度表征了A549活细胞,以阐明它们是否适合作为人类原发性肺泡II型(ATII)细胞模型的模型。我们还研究了最近开发的转导的I型(TT1)细胞系,作为I型肺泡(ATI)细胞的模型。单细胞拉曼光谱提供了独特的生物分子指纹,可用于表征细胞表型。拉曼光谱的多变量统计分析表明,与ATII和ATI光谱相比,A549和TT1细胞的光谱具有明显较低的磷脂含量的特征,因为它们的细胞质包含较少的表面活性剂层状体。此外,我们发现A549光谱在统计上与ATI光谱比与ATII光谱更相似。光谱变化允许基于拉曼光谱特征的细胞表型分类,准确度> 99%。这些结果表明,A549细胞不是ATII细胞的良好模型,但是TT1细胞确实为ATI细胞提供了合理的模型。这些发现对于活细胞培养中合适的原代细胞模型的细胞系评估具有深远的意义。

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