人血小板的生物素化与病原体灭活治疗和临床研究的冷藏是相容的。

IF 2.5 3区 医学 Q2 HEMATOLOGY Transfusion Pub Date : 2024-12-17 DOI:10.1111/trf.18102
Charlotte Muret, David Crettaz, Agathe Martin, Alessandro Aliotta, Debora Bertaggia Calderara, Lorenzo Alberio, Michel Prudent
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引用次数: 0

摘要

背景:血小板浓缩物(PCs)的生产涉及多个步骤,这些步骤会对血小板的行为产生重大影响。为了深入了解储存条件如何影响供体血小板的再循环和输血后的功能,体内外血小板标记是一种可行的方法。然而,在对人体血小板再循环和功能进行临床研究之前,我们旨在确定病原体灭活技术(PIT)和储存条件(4°C 与室温 [RT])对生物素化血小板表型和功能的影响,并与用于输血的传统 PIT PCs 进行比较:用 61% 的添加剂溶液从 45 个水样(每个水样 5 个)中制备出 9 个 PC。用三个单位的集合拆分法制备三个等量的 PC:两个用生物素标记并在 RT 或 4°C 下保存,另一个未标记并在 RT 下保存。然后用 PIT(amotosalen/UVA)处理所有 PC,并保存 14 天。对基础阶段和刺激(ADP 或 TRAP-6)时的标记效率、血小板浓度、代谢参数、聚集反应(ADP、胶原蛋白、与肾上腺素共同聚集)和血小板表型(CD42b、CD62-P、磷脂酰丝氨酸)进行了测定:结果:PIT 和 4°C PCs 的标记效率在储存 14 天后保持稳定。血小板功能和表型的差异主要是储存温度造成的,而不是生物素化过程造成的。生物素阳性和生物素阴性血小板在基线或刺激后的表型相同:结论:生物素标记血小板可有效地调查 PIT 和储存温度对临床研究的影响。这种方法在提高血小板输注知识方面显示出巨大潜力。
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Biotinylation of human platelets is compatible with pathogen inactivation treatment and cold storage for clinical studies.

Background: Production of platelet concentrates (PCs) involves several steps that significantly affect platelet behavior. To gain a deeper understanding of how storage conditions impact donor platelet recirculation and functionality post-transfusion, ex vivo platelet labeling is a feasible approach. However, before pursuing clinical investigations of platelet recirculation and function in humans, we aimed to determine the effects of pathogen inactivation technology (PIT) and storage conditions (4°C vs. room temperature [RT]) on phenotype and function of biotinylated platelets compared to conventional PIT PCs for transfusion.

Methods: Nine PCs were prepared in 61% additive solution from 45 buffy coats (five buffy coats each). A pool-and-split of three units was used to prepare three equivalent PCs: two labeled with biotin and stored at RT or 4°C, and one without labeling and stored at RT. All PCs were then treated by PIT (amotosalen/UVA) and stored for 14 days. Labeling efficiency, platelet concentration, metabolic parameters, aggregation response (ADP, collagen, co-aggregation with epinephrine), and platelet phenotype (CD42b, CD62-P, phosphatidylserine) at the basal stage and upon stimulation (ADP or TRAP-6) were performed.

Results: Labeling efficiency of PIT and 4°C PCs was stable over 14 days of storage. Differences in platelet function and phenotype were mainly due to the storage temperature and not the biotinylation process. Phenotypes at baseline or after stimulation were equivalent in biotin-positive and biotin-negative platelets.

Conclusion: Biotin-labeled platelets can effectively enable investigation of the effects of PIT and storage temperature for clinical studies. This method shows great potential for improving platelet transfusion knowledge.

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来源期刊
Transfusion
Transfusion 医学-血液学
CiteScore
4.70
自引率
20.70%
发文量
426
审稿时长
1 months
期刊介绍: TRANSFUSION is the foremost publication in the world for new information regarding transfusion medicine. Written by and for members of AABB and other health-care workers, TRANSFUSION reports on the latest technical advances, discusses opposing viewpoints regarding controversial issues, and presents key conference proceedings. In addition to blood banking and transfusion medicine topics, TRANSFUSION presents submissions concerning patient blood management, tissue transplantation and hematopoietic, cellular, and gene therapies.
期刊最新文献
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