Department of Physics, Drexel University, Philadelphia, Pennsylvania.
Department of Physics, Drexel University, Philadelphia, Pennsylvania.
Biophys J. 2024 Nov 5;123(21):3750-3758. doi: 10.1016/j.bpj.2024.09.024. Epub 2024 Sep 26.
In sickle cell anemia, deoxygenation causes erythrocytes to distort, while reoxygenation permits them to recover a normal biconcave disk shape. Irreversibly sickled cells (ISCs) remain distorted when reoxygenated and have been thought to have among the highest intracellular hemoglobin concentrations of the sickle red cell population and therefore the greatest vulnerability to vasoocclusion. Using a new optical method, which we describe, we have made precise measurements of the intracellular hemoglobin concentration, and intracellular O saturation, of ISCs, as well as oxygenated sickle cells with a normal biconcave disc shape, and cells with shapes distorted by the sickle fibers they contain. This method also provides good estimates of cell volumes, and hemoglobin per red cell. The concentration distribution of the ISCs is found to be similar to normal, discoid cells. Average ISC volumes exceed their discoid counterparts, with a much broader distribution, arguing against dehydration as their origin. The concentration distribution of the polymer-laden sickled cells is significantly higher in mean value, and their volume distributions indicate some dehydration. Previous assumptions about ISCs may have thus been colored by the presence of sickle cells that did contain polymer, and true ISCs may be much more benign than once thought, which underscores the importance of accurate measurement on individual cells. This method could be used to follow changes in individual cell properties under various specific perturbations, and where characterization by flow cytometry is infeasible.
在镰状细胞贫血中,脱氧会导致红细胞变形,而再氧合则允许它们恢复正常的双凹盘形。不可逆转的镰状细胞(ISCs)在再氧合时仍然保持变形,并且被认为具有镰状红细胞群体中最高的细胞内血红蛋白浓度,因此对血管阻塞的易感性最高。使用我们描述的一种新的光学方法,我们对 ISCs 的细胞内血红蛋白浓度和细胞内 O 饱和度进行了精确测量,以及具有正常双凹盘形的氧合镰状细胞和被其所含镰状纤维扭曲的细胞。该方法还可以很好地估计细胞体积和每个红细胞中的血红蛋白。发现 ISCs 的浓度分布与正常盘状细胞相似。ISC 的平均体积超过其盘状对应物,分布范围更广,这表明它们不是由于脱水而变形。聚合物负载的镰状细胞的浓度分布平均值明显更高,其体积分布表明存在一定程度的脱水。因此,以前对 ISCs 的假设可能受到含有聚合物的镰状细胞的影响,真正的 ISCs 可能比以前认为的要良性得多,这强调了对单个细胞进行准确测量的重要性。该方法可用于在各种特定干扰下跟踪单个细胞特性的变化,并且在流式细胞术不可行的情况下。