海藻糖:血小板浓缩物的添加剂溶液在4°C储存期间保护血小板免于凋亡和清除

Vahid Baghdadi, R. Ranjbaran, F. Yari, M. Rafiee
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引用次数: 2

摘要

目的冷冻保存血小板虽然能降低细菌滋生的风险,但会影响血小板活力和止血功能。在低温下,海藻糖可以代替水,抑制PLT膜的固液过渡相,阻止糖蛋白Ibα (GPIbα)的聚合。在这项研究中,我们评估了海藻糖在减少冷藏对细胞凋亡的负面影响和长期冷藏后plt清除率方面的潜力。材料与方法在实验研究中,PLT浓缩液(PCs)在不同环境下维持5天。随后使用自动血液学分析仪计数血小板。同时采用水溶性四氮唑盐(WST-1)测定plt的生存能力。用生化分析仪测定乳酸脱氢酶(LDH)活性。采用酶联免疫吸附法(ELISA)检测人活性caspase-3水平。同时应用流式细胞术技术。结果与其他两组相比,海藻糖处理的plt数量和活力更高,LDH含量更低(P=0.03)。在4°C时观察到plt中caspase-3水平的最高增加。然而,海藻糖处理的plt和4°C的plt相比,活性caspase-3的含量较低。海藻糖处理的plt细胞中PS的表达水平低于其他两组(P=0.03)。在4°c储存的plt中,HepG2细胞对plt的摄取增强。然而,海藻糖处理的plt在储存第5天的摄食率显著降低(P=0.03)。结论海藻糖可调节低温对plt细胞凋亡、细胞活力及存活率的影响。它还可以降低体外冷藏plt的摄食率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Trehalose An Additive Solution for Platelet Concentrate to Protect Platelets from Apoptosis and Clearance during Their Storage at 4°C
Objective Although cold storage of platelets (PLTs) could decrease the risk of bacterial growth, it could affect on the PLTs viability and hemostatic function. At cold temperatures, trehalose can be used to substitute water, inhibit the solid-liquid transition phase of the PLT membrane, and stop Glycoprotein Ibα (GPIbα) polymerization. In this study, we evaluated the potential of trehalose for reducing the negative effects of cold storage on the apoptosis and the clearance rates of PLTs after long-term storage at cold. Materials and Methods In this experimental study, PLT concentrates (PCs) were maintained for five days in the different circumstances. PLTs were subsequently counted by using an automated hematology analyzer. Also water-soluble tetrazolium salt (WST-1) assay was performed to estimate the viability of PLTs. The activity of lactate dehydrogenase enzyme (LDH) was determined by a biochemical analyzer. And human active caspase-3 levels were measured by using enzyme-linked immunosorbent assay (ELISA) method. Also, we applied flow cytometry technique. Results PLTs count and viability were higher, while LDH amount was lower in trehalose-treated PLTs when compared with two other groups (P=0.03). The highest increase in the amount of caspase-3 levels in the PLTs was observed at 4°C. However, trehalose-treated and 4°C PLTs had a lower amount of active caspase-3 in comparison with 4°C PLTs. The level of PS expression on PLTs was lower in the trehalose-treated PLTs in compared with the two other groups (P=0.03). PLTs ingestion by HepG2 cells was enhanced in the 4°C-stored PLTs. However, the ingestion rate was significantly reduced in the trehalose-treated PLTs on day 5 of storage (P=0.03). Conclusion Trehalose can moderate the effects of cold temperature on the apoptosis, viability, and the survival rate of PLTs. It also decreases the ingestion rate of refrigerated PLTs in vitro.
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