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Osmotic hemolysis is a donor-specific feature of red blood cells under various storage conditions and genetic backgrounds.渗透溶血是各种储存条件和遗传背景下红细胞的供体特异性特征。
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Stored red blood cell susceptibility to in vitro transfusion-associated stress conditions is higher after longer storage and increased by storage in saline-adenine-glucose-mannitol compared to AS-1.与AS-1保存液相比,红细胞在盐腺葡萄糖甘露醇保存液中保存较长时间后,对体外输血相关应激条件的易感性更高。
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Modulation of the allosteric and vasoregulatory arms of erythrocytic oxygen transport.红细胞氧运输的变构和血管调节机制的调节。
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本文引用的文献

1
Storage of red blood cells in alkaline PAGGGM improves metabolism but has no effect on recovery after transfusion.在碱性 PAGGGM 中储存红细胞可改善代谢,但对输血后的恢复没有影响。
Blood Adv. 2022 Jul 12;6(13):3899-3910. doi: 10.1182/bloodadvances.2022006987.
2
A 3D-printed transfusion platform reveals beneficial effects of normoglycemic erythrocyte storage solutions and a novel rejuvenating solution.一种3D打印输血平台揭示了正常血糖水平红细胞保存溶液和一种新型复苏溶液的有益效果。
Lab Chip. 2022 Mar 29;22(7):1310-1320. doi: 10.1039/d2lc00030j.
3
Quantifying dynamic range in red blood cell energetics: Evidence of progressive energy failure during storage.量化红细胞能量动态范围:储存过程中能量衰竭逐渐加剧的证据。
Transfusion. 2021 May;61(5):1586-1599. doi: 10.1111/trf.16395. Epub 2021 Apr 8.
4
Potential Consequences of the Red Blood Cell Storage Lesion on Cardiac Electrophysiology.红细胞储存损伤对心脏电生理学的潜在影响。
J Am Heart Assoc. 2020 Nov 3;9(21):e017748. doi: 10.1161/JAHA.120.017748. Epub 2020 Oct 22.
5
Rejuvenation solution as an adjunct cold storage solution maintains physiological haemoglobin oxygen affinity during early-storage period of red blood cells.复壮液作为附加低温保存液,可在红细胞储存早期维持生理血红蛋白氧亲和力。
Vox Sang. 2020 Jul;115(5):388-394. doi: 10.1111/vox.12910. Epub 2020 Mar 12.
6
Hypoxic storage of red blood cells improves metabolism and post-transfusion recovery.红细胞低氧保存可改善代谢和输血后的恢复。
Transfusion. 2020 Apr;60(4):786-798. doi: 10.1111/trf.15730. Epub 2020 Feb 27.
7
Red blood cell storage lesion: causes and potential clinical consequences.红细胞储存损伤:原因及潜在临床后果。
Blood Transfus. 2019 Jan;17(1):27-52. doi: 10.2450/2019.0217-18.
8
Rapid bedside rejuvenation of red blood cell with an autologous cell salvage device.使用自体血液回收装置在床边快速恢复红细胞活力。
Vox Sang. 2018 Jul 3. doi: 10.1111/vox.12671.
9
pH modulation ameliorates the red blood cell storage lesion in a murine model of transfusion.pH调节改善了输血小鼠模型中的红细胞储存损伤。
J Surg Res. 2017 May 15;212:54-59. doi: 10.1016/j.jss.2016.12.025. Epub 2016 Dec 28.
10
Prevention of red cell storage lesion: a comparison of five different additive solutions.红细胞储存损伤的预防:五种不同添加剂溶液的比较。
Blood Transfus. 2017 Sep;15(5):456-462. doi: 10.2450/2017.0371-16. Epub 2017 Apr 10.

低葡萄糖策略对红细胞储存优化的转化影响

Toward Translational Impact of Low-Glucose Strategies on Red Blood Cell Storage Optimization.

作者信息

Soule Logan D, Skrajewski-Schuler Lauren, Branch Stephen A, McMahon Timothy J, Spence Dana M

机构信息

Department of Biomedical Engineering, Michigan State University, East Lansing, Michigan 48824, United States.

Institute for Quantitative Health Science and Engineering, Michigan State University, East Lansing, Michigan 48824, United States.

出版信息

ACS Pharmacol Transl Sci. 2024 Feb 22;7(3):878-887. doi: 10.1021/acsptsci.4c00018. eCollection 2024 Mar 8.

DOI:10.1021/acsptsci.4c00018
PMID:38481682
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10928890/
Abstract

Transfusion of stored red blood cells (RBCs) to patients is a critical component of human healthcare. Following purification from whole blood, RBCs are stored in one of many media known as additive solutions for up to 42 days. However, during the storage period, the RBCs undergo adverse chemical and physical changes that are often collectively known as the RBC storage lesion. Storage of RBCs in additive solutions modified to contain physiological levels of glucose, as opposed to hyperglycemic levels currently used in most cases, reduces certain markers of the storage lesion, although intermittent doses of glucose are required to maintain normoglycemic conditions. Here, we describe an electrically actuated valving system to dispense small volumes of glucose into 100 mL PVC storage bags containing packed RBCs from human donors. The RBCs were stored in a conventional additive solution (AS-1) or a normoglycemic version of AS-1 (AS-1N) and common markers of stored RBC health were measured at multiple time points throughout storage. The automated feeding device delivered precise and predictable volumes of concentrated glucose to maintain physiological glucose levels for up to 37 days. Hemolysis, lactate accumulation, and pH values of RBCs stored in AS-1N were statistically equivalent to values measured in AS-1, while significant reductions in osmotic fragility and intracellular sorbitol levels were measured in AS-1N. The reduction of osmotic fragility and oxidative stress markers in a closed system may lead to improved transfusion outcomes for an important procedure affecting millions of people each year.

摘要

给患者输注储存的红细胞是人类医疗保健的关键组成部分。从全血中纯化后,红细胞被储存在多种称为添加剂溶液的介质之一中长达42天。然而,在储存期间,红细胞会发生不利的化学和物理变化,这些变化通常统称为红细胞储存损伤。与目前大多数情况下使用的高血糖水平相反,将红细胞储存在经改良以含有生理水平葡萄糖的添加剂溶液中,可减少储存损伤的某些标志物,尽管需要间歇性给予葡萄糖以维持正常血糖水平。在此,我们描述了一种电动阀门系统,用于将少量葡萄糖分配到装有来自人类供体的浓缩红细胞的100 mL聚氯乙烯储存袋中。红细胞被储存在传统的添加剂溶液(AS-1)或AS-1的正常血糖版本(AS-1N)中,并在整个储存过程中的多个时间点测量储存红细胞健康的常见标志物。该自动进料装置输送精确且可预测体积的浓缩葡萄糖,以维持生理葡萄糖水平长达37天。储存在AS-1N中的红细胞的溶血、乳酸积累和pH值在统计学上与在AS-1中测量的值相当,而在AS-1N中测量到渗透脆性和细胞内山梨醇水平显著降低。在一个封闭系统中降低渗透脆性和氧化应激标志物可能会改善每年影响数百万人的一项重要医疗程序的输血效果。