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Laser Raman tweezer spectroscopy to explore the bisphenol A-induced changes in human erythrocytes

机译:激光拉曼钳光谱研究双酚A诱导的人类红细胞变化

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The dermal penetration of bisphenol-A (BPA) from thermal papers into the human skin is a matter of major health concern due to its extensive use in developing countries like India, one of its largest users in the world. Bisphenol A is widely used in the manufacture of many consumer goods like polycarbonate water bottles, baby bottles, food containers, home appliances, thermal papers used in billing and tickets, the inner lining of food cans, etc. BPA can be easily adsorbed into the blood rapidly. The integration of optical tweezers with Raman spectroscopic techniques has realized avenues for interpreting single cell investigations. In the present work, the impact of BPA from thermal papers on individual human erythrocytes (red blood cells) has been investigated using micro-Raman spectroscopy. Significant intensity variations were noticed for hemoglobin oxygenation markers in the Raman spectra of red blood cells (RBCs). Raman spectral variations supporting RBC hemoglobin depletion were also found in the presence of BPA. Evident morphological changes are also observed in RBCs due to BPA in vitro exposures, which ultimately lead to cell bursting at higher concentrations.
机译:双酚A(BPA)从热敏纸向人体皮肤的皮肤渗透是一个重大的健康问题,因为它在世界上最大用户之一的印度等发展中国家得到了广泛的使用。双酚A被广泛用于制造许多消费品,例如聚碳酸酯水瓶,婴儿奶瓶,食品容器,家用电器,账单和票证中使用的热敏纸,食品罐的内衬等。双酚A可以很容易地吸附到血液迅速。光镊与拉曼光谱技术的集成已经为解释单细胞研究提供了途径。在当前的工作中,已经使用微拉曼光谱法研究了热敏纸中的BPA对单个人红细胞(红细胞)的影响。在红细胞(RBC)的拉曼光谱中,血红蛋白氧合标记物的强度明显变化。在BPA存在下,还发现了支持RBC血红蛋白消耗的拉曼光谱变化。由于BPA的体外暴露,在RBC中也观察到明显的形态学变化,最终导致较高浓度的细胞破裂。

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