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Novel single-cell functional analysis of red blood cells using laser tweezers Raman spectroscopy: Application for sickle cell disease

机译:激光镊子拉曼光谱法对红细胞的新型单细胞功能分析:镰状细胞疾病的应用

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Laser tweezers Raman spectroscopy was used to characterize the oxygenation response of single normal adult, sickle, and cord blood red blood cells (RBCs) to an applied mechanical force. Individual cells were subjected to different forces by varying the laser power of a single-beam optical trap, and the intensities of several oxygenation-specific Raman spectral peaks were monitored to determine the oxygenation state of the cells. For all three cell types, an increase in laser power (or mechanical force) induced a greater deoxygenation of the cell. However, sickle RBCs deoxygenated more readily than normal RBCs when subjected to the same optical forces. Conversely, cord blood RBCs were able to maintain their oxygenation better than normal RBCs. These results suggest that differences in the chemical or mechanical properties of fetal, normal, and sickle cells affect the degree to which applied mechanical forces can deoxygenate the cell. Populations of normal, sickle, and cord RBCs were identified and discriminated based on this mechanochemical phenomenon. This study demonstrates the potential application of laser tweezers Raman spectroscopy as a single-cell, label-free analytical tool to characterize the functional (e.g., mechanical deformability, oxygen binding) properties of normal and diseased RBCs.
机译:激光镊子拉曼光谱用于表征单个正常成人,镰刀和脐带血红细胞(RBC)对施加的机械力的氧化反应。通过改变单光束光阱的激光功率,使各个细胞受到不同的力,并监测几个氧合特异性拉曼光谱峰的强度,以确定细胞的氧合状态。对于所有三种电池类型,激光功率(或机械力)的增加会引起电池更大的脱氧。但是,当受到相同的光学力时,镰刀红细胞比普通红细胞更容易脱氧。相反,脐带血红细胞比正常的红细胞能够更好地维持其氧合。这些结果表明,胎儿,正常和镰状细胞的化学或机械性质的差异会影响施加的机械力使细胞脱氧的程度。根据这种机械化学现象,对正常,镰刀和脐带红细胞的种群进行了识别和区分。这项研究证明了激光镊子拉曼光谱法作为单细胞,无标记分析工具的潜在应用,可用于表征正常和患病的RBC的功能(例如,机械可变形性,氧结合)特性。

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