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Propensity of red blood cells to undergo P2X7 receptor-mediated phosphatidylserine exposure does not alter during in vivo or ex vivo aging

机译:在体内或离体衰老过程中,红细胞发生P2X7受体介导的磷脂酰丝氨酸暴露的倾向不会改变

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摘要

Phosphatidylserine (PS) exposure facilitates the removal of red blood cells (RBCs) from the circulation, potentially contributing to the loss of stored RBCs after transfusion, as well as senescent RBCs. Activation of the P2X7 receptor by extracellular adenosine 5′-triphosphate (ATP) can induce PS exposure on freshly isolated human RBCs, but whether this process occurs in stored RBCs or changes during RBC aging is unknown. STUDY DESIGN AND METHODS RBCs were processed and stored according to Australian blood banking guidelines. PS exposure was determined by annexin V binding and flow cytometry. Efficacy of P2X antagonists was assessed by flow cytometric measurements of ATP-induced ethidium+ uptake in RPMI 8226 cells. Osmotic fragility was assessed by lysis in hypotonic saline. RBCs were fractionated by discontinuous density centrifugation. RESULTS ATP (1 mmol/L) induced PS exposure on RBCs stored for less than 1 week. This process was near-completely inhibited by the P2X7 antagonists A438079 and AZ10606120 and the P2X1/P2X7 antagonist MRS2159 but not the P2X1 antagonist NF499. ATP-induced PS exposure on RBCs was not dependent on K+, Na+, or Cl− fluxes. ATP did not alter the osmotic fragility of stored RBCs. ATP-induced PS exposure was similar between RBCs of different densities. ATP-induced PS exposure was also similar between RBCs stored for less than 1 week or for 6 weeks. CONCLUSION The propensity of RBCs to undergo P2X7-mediated PS exposure does not alter during in vivo and ex vivo aging. Thus, P2X7 activation is unlikely to be involved in the removal of senescent RBCs or stored RBCs after transfusion.
机译:磷脂酰丝氨酸(PS)的暴露有助于从循环系统中去除红细胞(RBC),可能导致输血后储存的RBC以及衰老RBC的丢失。细胞外腺苷5'-三磷酸(ATP)激活P2X7受体可诱导新鲜分离的人RBC暴露PS,但尚不清楚此过程是否在储存的RBC中发生或在RBC老化过程中发生变化。研究设计和方法根据澳大利亚血库指南处理和储存RBC。通过膜联蛋白V结合和流式细胞术确定PS暴露。通过流式细胞仪测量RPMI 8226细胞中ATP诱导的乙+摄取来评估P2X拮抗剂的功效。通过在低渗盐水中溶解来评估渗透脆性。通过不连续密度离心分离红细胞。结果ATP(1 mmol / L)诱导了储存少于1周的RBC的PS暴露。 P2X7拮抗剂A438079和AZ10606120和P2X1 / P2X7拮抗剂MRS2159几乎完全抑制了该过程,但P2X1拮抗剂NF499则没有。 ATP诱导的RBC上的PS暴露不依赖于K +,Na +或Cl-通量。 ATP不会改变储存的RBC的渗透脆性。 ATP诱导的PS暴露在不同密度的RBC之间相似。 ATP诱导的PS暴露在少于1周或6周的RBC之间也相似。结论在体内和离体衰老过程中,红细胞的P2X7介导的PS暴露倾向没有改变。因此,P2X7激活不太可能参与输血后衰老RBC或储存RBC的去除。

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