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首页> 外文期刊>The journal of physiological sciences >Premature Red Blood Cells Have Decreased Aggregation and Enhanced Aggregability
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Premature Red Blood Cells Have Decreased Aggregation and Enhanced Aggregability

机译:过早的红细胞聚集减少,聚集能力增强

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References(25) Preterm infants are highly susceptible to ischemic damage. This damage is most obvious in the brain, retina, and gastrointestinal tract. Studies focusing on the rheological properties of premature red blood cells (pRBCs) have consistently shown minimal or no RBC aggregation. Previously, measurements of pRBC aggregation kinetics indicated that specific plasma properties are responsible for the decreased RBC aggregation observed in the neonates, but that their specific RBC properties do not affect it. However, the strength of interaction in the pRBC aggregates as a function of medium composition has not been tested. In our previous research, we described clinically relevant parameters, that is, the aggregate resistance to disaggregation by flow. With the help of a cell flow property analyzer (CFA), we can monitor RBC aggregation by direct visualization of its dynamics during flow. We used the CFA to examine pRBC (from 9 premature babies) in the natural plasma and in PBS buffer supplemented with dextran (500 kDa) to distinguish between RBC intrinsic-cellular and plasma factors. pRBCs suspended in the native plasma showed minimal or no aggregation in comparison to normal adult RBC. When we transferred pRBCs from the same sample to the dextran solution, enhanced resistance to disaggregation by flow was apparent.
机译:参考文献(25)早产儿高度易受缺血性损伤。这种损害在大脑,视网膜和胃肠道中最为明显。专注于过早的红细胞(pRBCs)流变特性的研究始终显示出极少或没有RBC聚集。以前,对pRBC聚集动力学的测量表明,特定的血浆特性是导致新生儿中观察到的RBC聚集减少的原因,但是它们的特定RBC特性对此没有影响。但是,尚未测试pRBC聚集体中相互作用强度与培养基组成的关系。在我们以前的研究中,我们描述了临床相关的参数,即聚合体对流动分解的抵抗力。借助于细胞流动特性分析仪(CFA),我们可以通过直接观察其在流动过程中的动力学来监测RBC聚集。我们使用CFA检查了自然血浆和补充了右旋糖酐(500 kDa)的PBS缓冲液中的pRBC(来自9个早产儿),以区分RBC固有细胞因子和血浆因子。与正常成人RBC相比,悬浮在天然血浆中的pRBC显示出极少或没有聚集。当我们将pRBCs从同一样品转移到葡聚糖溶液中时,明显增强了抗流动性的能力。

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