Lenzi E, Dinarelli S, Longo G, Girasole M, Mussi V
Physics Department, University of Rome Tor Vergata, Rome, Italy.
Institute of Structure of Matter, National Research Council, Rome, Italy.
Talanta. 2021 Jan 1;221:121442. doi: 10.1016/j.talanta.2020.121442. Epub 2020 Aug 3.
Ageing of red blood cells (RBC) is a physiological process, fundamental to ensure a proper blood homeostasis that, in vivo, balances the production of new cells and the removal of senescent erythrocytes. A detailed characterization at the cellular level of the progression of the ageing phenomenon can reveal biological, biophysical and biochemical fingerprints for diseases related to misbalances of the cell turnover and for blood pathologies. We applied Principal Components Analysis (PCA) to mean Raman spectra of single cells at different ageing times to rapidly highlight subtle spectral differences associated with conformational and biochemical modifications. Our results demonstrate a two-step ageing process characterized by a first phase in which proteins plays a relevant role, followed by a further cellular evolution driven by alterations in the membrane lipid contribution. Moreover, we used the same approach to directly analyse relevant spectral effects associated to reduction in Haemoglobin oxygenation level and membrane fluidity induced by the ageing. The method is robust and effective, allowing to classify easily the studied cells based on their age and morphology, and consequently to evaluate the biological quality of a blood sample.
红细胞(RBC)的老化是一个生理过程,对于确保适当的血液稳态至关重要,在体内,这种稳态平衡新细胞的产生和衰老红细胞的清除。在细胞水平上对老化现象进展进行详细表征,可以揭示与细胞更新失衡相关疾病以及血液病理学的生物学、生物物理和生化特征。我们将主成分分析(PCA)应用于不同老化时间的单细胞平均拉曼光谱,以快速突出与构象和生化修饰相关的细微光谱差异。我们的结果表明存在一个两步老化过程,其特征在于第一阶段蛋白质发挥相关作用,随后是由膜脂质成分变化驱动的进一步细胞演化。此外,我们使用相同方法直接分析与老化引起的血红蛋白氧合水平降低和膜流动性相关的相关光谱效应。该方法稳健且有效,能够根据细胞的年龄和形态轻松对研究的细胞进行分类,从而评估血液样本的生物学质量。