Zadeh Mehrizi Tahereh, Shafiee Ardestani Mehdi
Blood Transfusion Research Center, High Institute for Research and Education in Transfusion Medicine, Tehran, Iran.
Department of Radiopharmacy, Faculty of Pharmacy, Tehran University of Medical Sciences, Tehran, Iran.
Prog Biomater. 2022 Jun;11(2):137-161. doi: 10.1007/s40204-022-00188-5. Epub 2022 May 10.
Despite the importance of the proper quality of blood products for safe transfusion, conventional methods for preparation and their preservation, they lack significant stability. Non-metal nanoparticles with particular features may overcome these challenges. This review study for the first time provided a comprehensive vision of the interaction of non-metal nanoparticles with each blood product (red blood cells, platelets and plasma proteins). The findings of this review on the most effective nanoparticle for improving the stability of RBCs indicate that graphene quantum dots and nanodiamonds show compatibility with RBCs. For increasing the stability of platelet products, silica nanoparticles exhibited a suppressive impact on platelet aggregation. Pristine graphene also shows compatibility with platelets. For better stability of plasma products, graphene oxide was indicated to preserve free human serum albumin from thermal shocks at low ionic strength. For increased stability of Factor VIII, mesoporous silica nanoparticles with large pores exhibit the superb quality of recovered proteins. Furthermore, 3.2 nm quantum dots exhibited anticoagulant effects. As the best promising nanoparticles for immunoglobulin stability, graphene quantum dots showed compatibility with γ-globulins. Overall, this review recommends further research on the mentioned nanoparticles as the most potential candidates for enhancing the stability and storage of blood components.
尽管血液制品的适当质量对于安全输血很重要,但传统的制备方法及其保存方式缺乏显著的稳定性。具有特殊特性的非金属纳米颗粒可能会克服这些挑战。本综述研究首次全面阐述了非金属纳米颗粒与每种血液制品(红细胞、血小板和血浆蛋白)之间的相互作用。本综述关于提高红细胞稳定性的最有效纳米颗粒的研究结果表明,石墨烯量子点和纳米金刚石与红细胞具有相容性。为提高血小板制品的稳定性,二氧化硅纳米颗粒对血小板聚集有抑制作用。原始石墨烯也与血小板具有相容性。为使血浆制品具有更好的稳定性,氧化石墨烯被证明能在低离子强度下保护游离人血清白蛋白免受热冲击。对于提高凝血因子VIII的稳定性,具有大孔的介孔二氧化硅纳米颗粒展现出回收蛋白的卓越品质。此外,3.2纳米量子点具有抗凝作用。作为免疫球蛋白稳定性最有前景的纳米颗粒,石墨烯量子点与γ球蛋白具有相容性。总体而言,本综述建议对上述纳米颗粒进行进一步研究,它们是增强血液成分稳定性和储存的最具潜力的候选者。