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Cell-cell affinity of senescent human erythrocytes.衰老人类红细胞的细胞间亲和力。
Biophys J. 2003 Jul;85(1):75-84. doi: 10.1016/S0006-3495(03)74456-7.
2
Aggregation behavior and electrophoretic mobility of red blood cells in various mammalian species.不同哺乳动物物种中红细胞的聚集行为和电泳迁移率。
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Cell partitioning in two-polymer aqueous phase systems and cell electrophoresis in aqueous polymer solutions. Human and rat young and old red blood cells.双聚合物水相体系中的细胞分配以及聚合物水溶液中的细胞电泳。人类和大鼠的年轻及衰老红细胞。
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本文引用的文献

1
Depletion-mediated red blood cell aggregation in polymer solutions.聚合物溶液中耗竭介导的红细胞聚集
Biophys J. 2002 Nov;83(5):2482-90. doi: 10.1016/S0006-3495(02)75259-4.
2
Electrophoretic mobility of human red blood cells coated with poly(ethylene glycol).涂有聚乙二醇的人类红细胞的电泳迁移率。
Biorheology. 2001;38(5-6):389-403.
3
Receptors involved in the phagocytosis of senescent and diamide-oxidized human RBCs.参与衰老和二酰胺氧化的人红细胞吞噬作用的受体。
Transfusion. 2000 Dec;40(12):1494-502. doi: 10.1046/j.1537-2995.2000.40121494.x.
4
Cell electrophoresis studies relevant to red blood cell aggregation.与红细胞聚集相关的细胞电泳研究。
Biorheology. 1999;36(5-6):427-32.
5
Cellular and molecular mechanisms of senescent erythrocyte phagocytosis by macrophages. A review.巨噬细胞吞噬衰老红细胞的细胞和分子机制。综述
Biochimie. 1998 Feb;80(2):173-95. doi: 10.1016/s0300-9084(98)80024-2.
6
Electrophoresis of human red blood cells and platelets. Evidence for depletion of dextran.人类红细胞和血小板的电泳。右旋糖酐消耗的证据。
Biorheology. 1996 Jul-Oct;33(4-5):333-51. doi: 10.1016/0006-355x(96)00026-1.
7
Cell partitioning in two-polymer aqueous phase systems and cell electrophoresis in aqueous polymer solutions. Human and rat young and old red blood cells.双聚合物水相体系中的细胞分配以及聚合物水溶液中的细胞电泳。人类和大鼠的年轻及衰老红细胞。
Biochim Biophys Acta. 1994 Aug 24;1194(1):131-7. doi: 10.1016/0005-2736(94)90211-9.
8
Red cell and ghost viscoelasticity. Effects of hemoglobin concentration and in vivo aging.红细胞与血影的粘弹性。血红蛋白浓度及体内老化的影响。
Biophys J. 1983 Jul;43(1):63-73. doi: 10.1016/S0006-3495(83)84324-0.
9
Theory of the electrokinetic behavior of human erythrocytes.人类红细胞的电动行为理论
Biophys J. 1983 May;42(2):127-35. doi: 10.1016/S0006-3495(83)84378-1.
10
Geometry of neonatal and adult red blood cells.新生儿和成人红细胞的几何形状。
Pediatr Res. 1983 Apr;17(4):250-3. doi: 10.1203/00006450-198304000-00003.

衰老人类红细胞的细胞间亲和力。

Cell-cell affinity of senescent human erythrocytes.

作者信息

Neu Björn, Sowemimo-Coker Samuel O, Meiselman Herbert J

机构信息

Department of Physiology and Biophysics, Keck School of Medicine, University of Southern California, Los Angeles, California 90033, USA.

出版信息

Biophys J. 2003 Jul;85(1):75-84. doi: 10.1016/S0006-3495(03)74456-7.

DOI:10.1016/S0006-3495(03)74456-7
PMID:12829466
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1303067/
Abstract

During their 120-day life span, human red blood cells (RBC) undergo several physicochemical changes, including an increased tendency to aggregate in plasma or polymer solutions. This study was designed to examine potential associations between age-related differences in RBC mobility, aggregation, and membrane glycocalyx properties for cells suspended in buffer and in 3 g/dl solutions of 70.3 kDa dextran. A recent model for depletion-mediated RBC aggregation was employed to calculate the changes of glycocalyx properties that were consistent with experimental electrophoretic mobility (EPM) and aggregation data. Young and old cells were obtained by density separation, after which aggregation and EPM were determined versus ionic strength; old cells exhibited a two- to threefold greater aggregation in dextran. EPM of old cells was identical to young cells in polymer-free media yet was 4% greater in dextran. The greater EPM for old RBC indicates a larger polymer depletion layer, which could be explained either by a 10-15% decrease of their glycocalyx thickness or a similar percentage decrease of polymer penetration into their glycocalyx. The larger depletion layer leads to markedly elevated cell-cell affinities for old cells, with the computed affinity increases consistent with enhanced old RBC aggregation. These results provide a rational explanation for the aggregation and EPM behavior of old RBC, and raise the possibility of depletion-mediated interactions contributing to senescent cell removal from the circulation.

摘要

在其120天的生命周期内,人类红细胞(RBC)会经历多种物理化学变化,包括在血浆或聚合物溶液中聚集倾向增加。本研究旨在探讨悬浮于缓冲液和3 g/dl 70.3 kDa葡聚糖溶液中的细胞,其红细胞流动性、聚集性和膜糖萼特性的年龄相关差异之间的潜在关联。采用最近的一种耗尽介导的红细胞聚集模型来计算与实验电泳迁移率(EPM)和聚集数据一致的糖萼特性变化。通过密度分离获得年轻和年老的细胞,然后测定其聚集性和EPM与离子强度的关系;年老细胞在葡聚糖中的聚集程度比年轻细胞大两到三倍。在无聚合物培养基中,年老细胞的EPM与年轻细胞相同,但在葡聚糖中则高出4%。年老红细胞的EPM更高表明聚合物耗尽层更大,这可以通过其糖萼厚度降低10 - 15%,或者聚合物渗透到其糖萼中的比例类似降低来解释。更大的耗尽层导致年老细胞的细胞间亲和力显著升高,计算得出的亲和力增加与年老红细胞聚集增强一致。这些结果为年老红细胞的聚集和EPM行为提供了合理的解释,并提出了耗尽介导的相互作用有助于从循环中清除衰老细胞的可能性。