Amsterdam UMC location University of Amsterdam, Department of Intensive Care and Laboratory of Experimental Intensive Care and Anesthesiology, Meibergdreef 9, Amsterdam, the Netherlands.
Division Vital Functions, Department of Anesthesiology, University Medical Center Utrecht, University of Utrecht, Utrecht, The Netherlands.
Transfus Med Rev. 2023 Apr;37(2):150719. doi: 10.1016/j.tmrv.2023.01.001. Epub 2023 Jan 13.
Labeling of platelets (PLTs) is essential for research purposes, in order to measure the recovery and survival of transfused PLTs in vivo. Biotinylation is a promising new alternative to the gold standard of radioactive labeling. This review highlights 4 key publications that provide significant insights into biotin-labeled PLTs (bioPLTs). Stohlawetz et al. established that transfusion of bioPLTs in human recipients is possible. De Bruin et al. developed a standardized, reproducible protocol for biotinylation of PLTs as a promising method to trace and isolate transfused PLTs in vivo, with reduced levels of PLT activation markers. Muret et al. developed a nonwashing biotin labeling method to implement in a blood bank environment. Finally, in a preclinical study, Ravanat et al. showed that different densities of biotin can be used to concurrently monitor multiple populations of human PLTs in the circulation of the same subject. These studies have made major contributions to the development of bioPLTs as a viable option for use in human research, and indicate that bioPLTs can be safely administered, preferably at a low density of biotin.
血小板(PLTs)的标记对于研究目的至关重要,因为这可以测量输注的 PLTs 在体内的恢复和存活情况。生物素化是一种有前途的新方法,可以替代放射性标记的金标准。这篇综述重点介绍了 4 篇重要的文献,它们为生物素标记的 PLTs(bioPLTs)提供了重要的见解。Stohlawetz 等人证明了在人类受者中输注 bioPLTs 是可行的。De Bruin 等人开发了一种标准化、可重复的 PLT 生物素化方案,作为一种有前途的方法,可以在体内追踪和分离输注的 PLTs,同时减少 PLT 激活标志物的水平。Muret 等人开发了一种非洗涤生物素标记方法,以便在血库环境中实施。最后,在一项临床前研究中,Ravanat 等人表明,可以使用不同密度的生物素同时监测同一受者循环中多种人群的人 PLTs。这些研究为 bioPLTs 作为人类研究中一种可行的选择做出了重大贡献,并表明 bioPLTs 可以安全地给予,最好是低密度的生物素。