Cliff R O, Ligler F, Goins B, Hoffmann P M, Spielberg H, Rudolph A S
Geo-Centers, Inc., Fort Washington, MD.
Biomater Artif Cells Immobilization Biotechnol. 1992;20(2-4):619-26. doi: 10.3109/10731199209119691.
Liposome Encapsulated Hemoglobin (LEH) has been the focus of research and development at the Naval Research Laboratory in an effort to find a viable oxygen-carrying resuscitative fluid. Previous reports from our laboratory have shown that LEH binds and releases oxygen in a manner similar to red blood cells, and that it can sustain life when red cell hematocrits are decreased to critical levels. We have also reported on LEH with regards to preparative methods, scale-up feasibility, toxicity, hemodynamics, hemoglobin P50 modification by coencapsulation of organic phosphates, liposomal surface modification, and storage strategies. In this report, the issue of LEH efficacy following long-term storage in the dry state will be addressed. We have shown that hemoglobin, liposomes, and LEH may be successfully lyophilized and rehydrated to viable states. The modification of the LEH formulation by addition of the carbohydrate trehalose results in the successful lyophilization and storage of LEH. In vitro characterization of LEH stored in the dry state for up to six months includes measurement of oxygen-carrying capacity, liposome size retention, methemoglobin production, and the intraliposomal hemoglobin concentration. The in vivo studies report on physiological parameters such as circulation persistence, blood chemistry, and pathological examination in mice.
脂质体包裹血红蛋白(LEH)一直是海军研究实验室研发的重点,旨在寻找一种可行的携氧复苏液。我们实验室之前的报告表明,LEH结合和释放氧气的方式与红细胞相似,并且当红细胞压积降至临界水平时它能维持生命。我们还报告了LEH在制备方法、放大可行性、毒性、血液动力学、通过共包裹有机磷酸盐对血红蛋白P50的修饰、脂质体表面修饰以及储存策略等方面的情况。在本报告中,将探讨LEH在干燥状态下长期储存后的功效问题。我们已经表明,血红蛋白、脂质体和LEH可以成功冻干并复水至存活状态。通过添加碳水化合物海藻糖对LEH制剂进行修饰,可实现LEH的成功冻干和储存。对在干燥状态下储存长达六个月的LEH进行的体外表征包括测量携氧能力、脂质体大小保持情况、高铁血红蛋白生成以及脂质体内血红蛋白浓度。体内研究报告了小鼠的生理参数,如循环持久性、血液化学和病理检查情况。