首页> 外文期刊>Transfusion: The Journal of the American Association of Blood Banks >Platelet storage lesion of WBC-reduced, pooled, buffy coat-derived platelet concentrates prepared in three in-process filter/storage bag combinations.
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Platelet storage lesion of WBC-reduced, pooled, buffy coat-derived platelet concentrates prepared in three in-process filter/storage bag combinations.

机译:WBC减少的,合并的,血沉棕黄层的血小板浓缩血小板浓缩液的血小板储存损伤,可通过三种过程中的过滤器/储存袋组合制备。

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BACKGROUND: With the implementation of universal WBC reduction in the United Kingdom, in-process WBC-reduction filters for pooled buffy coat (BC)-derived platelet concentrates (PCs) are used in routine production. The effects of three filter/storage bag combinations on platelet activation and microvesiculation and on the activation of coagulation were investigated. STUDY DESIGN AND METHODS: Using pooled BCs from the same donors, three filter/storage bag combinations (Autostop BC/CLX, Pall Biomedical; Sepacell PLX5/PL2410, Asahi Medical; and Imugard III-PL 4P/Teruflex, Terumo) were compared with unfiltered controls for their effects on microvesiculation and other storage-induced changes in platelets. Process efficiency was measured by platelet yield and residual WBC count. The storage changes were assessed: pH, activation of platelets measured by CD62P on the platelet surface and in supernatant plasma, quantitation of platelet-derived and RBC-derived microvesicles, cellular injury measured by annexin V in the supernatant plasma, and activation of the coagulation system measured by kallikrein-like and thrombin-like activities, prothrombin fragment 1+2, and thrombin-antithrombin complex. RESULTS: All three filters were comparable in terms of platelet recovery and WBC removal, and none induced immediate platelet activation or microvesiculation. With storage, platelet activation or microvesiculation increased in platelets prepared by all three filters and in unfiltered controls, but these effects were significantly less in the Imugard PCs than in controls. These findings were consistent with those for annexin V in the supernatant plasma, which were lower in Imugard PCs than in other products. Sepacell and Imugard filters reduced RBC-derived microvesicles to 50 percent of control levels, but the Autostop filter had no effect. On storage, levels of RBC-derived microvesicles in filtered products remained static, but levels in the unfiltered control doubled. Kallikrein- and thrombin-like activities were generated only by the Autostop filter without any further increment on storage. CONCLUSION: WBC-reduced pooled BC-PCs prepared by various filter/bag combinations were equivalent on Day 1 but differed during storage in terms of platelet activation or microvesiculation.
机译:背景:随着英国普遍实施WBC减少,常规生产中使用了用于合并血沉棕黄层(BC)的血小板浓缩液(PC)的过程WBC减少过滤器。研究了三种滤袋/储物袋组合对血小板活化和微囊化以及凝血活化的影响。研究设计和方法:使用来自相同供体的合并BC,将三种过滤器/存储袋组合(Autostop BC / CLX,颇尔生物医学公司; Sepacell PLX5 / PL2410,Asahi Medical;以及Imugard III-PL 4P / Teruflex,Terumo)与未经过滤的对照对微囊泡和其他储存诱导的血小板变化的影响。通过血小板产量和残余白细胞计数来测量过程效率。评估存储变化:pH,血小板表面和上清液血浆中CD62P测量的血小板活化,血小板衍生和RBC衍生的微泡的定量,上清液血浆中Annexin V测定的细胞损伤以及凝血活化系统通过激肽释放酶样和凝血酶样活性,凝血酶原片段1 + 2和凝血酶-抗凝血酶复合物测量。结果:在血小板恢复和白细胞去除方面,所有三种滤膜均具有可比性,并且均未引起立即的血小板活化或微囊化。通过储存,在所有三个过滤器和未过滤的对照中制备的血小板中的血小板活化或微囊化都增加了,但是在Imugard PC中,这些作用明显小于对照。这些发现与上清血浆中膜联蛋白V的发现一致,在Imugard PC中比在其他产品中低。 Sepacell和Imugard过滤器将RBC衍生的微囊泡降低到对照水平的50%,但Autostop过滤器没有作用。储存时,过滤产品中来自RBC的微囊泡水平保持静态,但未过滤对照中的水平翻了一番。激肽释放酶和类似凝血酶的活性仅由自动停止过滤器产生,没有进一步增加的存储量。结论:通过各种滤袋/滤袋组合制备的减少WBC的合并BC-PC在第1天是等效的,但在储存过程中就血小板活化或微囊化而言有所不同。

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