Literature DB >> 27001362

The effects of 22°C and 4°C storage of platelets on vascular endothelial integrity and function.

Gyulnar Baimukanova1, Byron Miyazawa2, Daniel R Potter1, Stuart L Gibb1, Sheila Keating1, Ali Danesh1,3, Ashley Beyer1, Yelena Dayter1, Roberta Bruhn1, Marcus O Muench1, Andrew P Cap4, Philip J Norris1,3, Philip Spinella5, Mitchell Cohen2, Shibani Pati1,3.   

Abstract

BACKGROUND: Although a majority of the studies conducted to date on platelet (PLT) storage have been focused on PLT hemostatic function, the effects of 4°C PLTs on regulation of endothelial barrier permeability are still not known. In this study, we compared the effects of room temperature (22°C) stored and (4°C) stored PLTs on the regulation of vascular endothelial cell (EC) permeability in vitro and in vivo. STUDY DESIGN AND METHODS: Day 1, Day 5, and Day 7 leukoreduced apheresis PLTs stored at 4 or 22°C were studied in vitro and in vivo. In vitro, PLT effects on EC permeability and barrier function, adhesion, and impedance aggregometry were investigated. In vivo, using a mouse model of vascular leak, attenuation of vascular leak and circulating PLT numbers were measured.
RESULTS: Treatment of EC monolayers with Day 5 or Day 7 PLTs, stored at both 22°C and 4°C, resulted in similar decreases in EC permeability on average. However, analysis of individual samples revealed significant variation that was donor dependent. Additional in vitro measurements revealed a decrease in inflammatory mediators, nonspecific PLT-endothelial aggregation and attenuated loss of aggregation over time to TRAP, ASPI, ADP, and collagen with 4°C storage. In mice, while 22°C and 4°C PLTs both demonstrated significant protection against vascular endothelial growth factor A (VEGF-A)-induced vascular leak 22°C PLTs exhibited increased protection compared to 4°C PLTs. Systemic circulating levels of 4°C PLTs were decreased compared to 22°C PLTs.
CONCLUSIONS: In vitro, 4°C-stored PLTs exhibit a greater capacity to inhibit EC permeability than 22°C-stored PLTs. In vivo, 22°C PLTs provide superior control of vascular leak induced by VEGF-A. This discrepancy may be due to increased clearance of 4°C PLTs from the systemic circulation.
© 2015 AABB.

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Year:  2016        PMID: 27001362     DOI: 10.1111/trf.13455

Source DB:  PubMed          Journal:  Transfusion        ISSN: 0041-1132            Impact factor:   3.157


  17 in total

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Review 8.  Quality Assessment of Established and Emerging Blood Components for Transfusion.

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Review 9.  One size doesn't fit all: Should we reconsider the introduction of cold-stored platelets in blood bank inventories?

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10.  A Novel and Convenient Method for the Preparation and Activation of PRP without Any Additives: Temperature Controlled PRP.

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