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新鲜采集的镰状红细胞在静脉氧压下且不暴露于空气中时的滤过性。

Filterability of freshly-collected sickle erythrocytes under venous oxygen pressure without exposure to air.

作者信息

Shah Siddharth, Acholonu Rhonda Graves, Ohene-Frempong Kwaku, Asakura Toshio

机构信息

Division of Hematology, The Children's Hospital of Philadelphia, Philadelphia, PA, USA.

Division of Hematology, The Children's Hospital of Philadelphia, Philadelphia, PA, USA.

出版信息

Blood Cells Mol Dis. 2015 Dec;55(4):328-35. doi: 10.1016/j.bcmd.2015.06.012. Epub 2015 Jun 23.

Abstract

We previously found that blood samples collected from steady-state patients with sickle cell disease (SCD) without exposure to air contain a new type of reversibly sickled cells (RSCs) with blunt edges at a level of as high as 78%. Since partial oxygenation of once-deoxygenated sickled cells with pointy edges to near venous oxygen pressure generates similar sickled cells with blunt edges in vitro, we named them as partially oxygenated sickled cells (POSCs). On the other hand, partial deoxygenation of once-oxygenated SS cells to venous oxygen pressure generates partially deoxygenated sickled cells (PDSCs) with pointy edges. In this study, we obtained blood samples from 6 steady-state patients with SCD under venous oxygen pressure without exposure to air, subjected them to various oxygenation/deoxygenation/reoxygenation cycles, and studied their filterability through a membrane filter with pore diameter of 3μm, the theoretical minimum diameter of a capillary. Our results indicated that discocytes, POSCs with blunt edges, and irreversibly sickled cells could deform and pass through the filter, while PDSCs with pointy edges were rigid and could not. The filterability of SS cells seems to be related to the length and amount of deoxy-hemoglobin S fibers in the cells.

摘要

我们先前发现,从稳态镰状细胞病(SCD)患者采集的未暴露于空气中的血样中,含有一种新型的边缘钝圆的可逆性镰状细胞(RSCs),其比例高达78%。由于将曾经边缘尖锐的脱饱和镰状细胞部分氧合至接近静脉氧压时,在体外会产生类似的边缘钝圆的镰状细胞,我们将其命名为部分氧合镰状细胞(POSCs)。另一方面,将曾经氧合的SS细胞部分脱饱和至静脉氧压会产生边缘尖锐的部分脱饱和镰状细胞(PDSCs)。在本研究中,我们在未暴露于空气中的静脉氧压下,从6名稳态SCD患者获取血样,使其经历各种氧合/脱饱和/再氧合循环,并通过孔径为3μm(毛细血管的理论最小直径)的膜滤器研究其滤过性。我们的结果表明,盘状红细胞、边缘钝圆的POSCs和不可逆性镰状细胞能够变形并通过滤器,而边缘尖锐的PDSCs则僵硬且无法通过。SS细胞的滤过性似乎与细胞内脱氧血红蛋白S纤维的长度和数量有关。

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