Division of Trauma, Surgical Critical Care & Emergency Surgery , Perelman School of Medicine at the University of Pennsylvania , Philadelphia , Pennsylvania 19104 , United States.
Department of Chemical, Biochemical & Environmental Engineering , University of Maryland, Baltimore County , Baltimore , Maryland 21250 , United States.
Bioconjug Chem. 2018 Jul 18;29(7):2150-2160. doi: 10.1021/acs.bioconjchem.8b00271. Epub 2018 Jun 13.
With the development of new biologics and bioconjugates, storage and preservation have become more critical than ever before. Lyophilization is a method of cell and protein preservation by removing a solvent such as water from a substance followed by freezing. This technique has been used in the past and still holds promise for overcoming logistic challenges in safety net hospitals with limited blood banking resources, austere environments such as combat, and mass casualty situations where existing resources may be outstripped. This method allows for long-term storage and transport but requires the bioconjugation of preservatives to prevent cell destabilization. Trehalose is utilized as a bioconjugate in platelet and red blood cell preservation to maintain protein thermodynamics and stabilizing protein formulations in liquid and freeze-dried states. Biomimetic approaches have been explored as alternatives to cryo- and lyopreservation of blood components. Intravascular hemostats such as PLGA nanoparticles functionalized with PEG motifs, topical hemostats utilizing fibrinogen or chitosan, and liposomal encapsulated hemoglobin with surface modifications are effectively stored long-term through bioconjugation. In thinking about the best methods for storage and transport, we are focusing this topical review on blood products that have the longest track record of preservation and looking at how these methods can be applied to synthetic systems.
随着新型生物制剂和生物偶联物的发展,存储和保存比以往任何时候都更加关键。冷冻干燥是一种通过从物质中去除溶剂(如水)然后冷冻来保存细胞和蛋白质的方法。这种技术过去已经使用过,并且仍然有希望克服安全网医院中有限的血液银行资源、严峻环境(如战斗)以及大量人员伤亡情况中存在的物流挑战,在这些情况下,现有资源可能已经耗尽。这种方法允许长期储存和运输,但需要将防腐剂进行生物偶联,以防止细胞失稳。海藻糖被用作血小板和红细胞保存中的生物偶联物,以维持蛋白质热力学并稳定液体和冻干状态下的蛋白质制剂。仿生方法已被探索作为血液成分的低温和冷冻干燥保存的替代方法。血管内止血剂,如聚(乳酸-共-乙醇酸)纳米粒子,用 PEG 基序功能化,利用纤维蛋白原或壳聚糖的局部止血剂,以及表面修饰的脂质体包封血红蛋白,可以通过生物偶联长期有效地储存。在考虑存储和运输的最佳方法时,我们将这个专题评论的重点放在具有最长保存记录的血液制品上,并探讨如何将这些方法应用于合成系统。