Farmer M C, Johnson S A, Beissinger R L, Gossage J L, Lynn A B, Carter K A
Bio/Molecular Engineering Branch, Naval Research Laboratory, Washington, D.C. 20375-5000.
Adv Exp Med Biol. 1988;238:161-70. doi: 10.1007/978-1-4684-7908-9_13.
Liposome-encapsulated hemoglobin (LEH) is being developed at the Naval Research Laboratory as a universally transfusable oxygen-carrying blood replacement. A chemical engineering scale-up feasibility study has been completed recently. We report here the development of an encapsulation method which produces liters of phospholipid/cholesterol liposomes containing at least 16 g% hemoglobin in a few hours. The 0.2 micron liposomes are produced with a Microfluidizer TM (Microfluidics Corp., Newton, MA) adapted for this purpose, and then washed and sterile filtered using a Pellicon (Millipore, Bedford, MA) tangential flow filtration device. Previously, production limitations and lack of sterility have been serious barriers to toxicity testing for all the researchers engaged in related investigations. The biophysical properties of the LEH thus produced are ideal for use as a blood substitute, resembling those of red blood cells. The oxygen-binding affinity of LEH can be maintained at the level of fresh whole blood for many weeks by co-encapsulation of pyridoxal-5-phosphate. The circulation persistence time of liposomes is a function of the type of phospholipid. We have developed a formulation which has a circulation persistence time of 15-20 hours. The LEH oxygen binding characteristics, circulation half-life and its lipid composition dependence, scale-up preparation method, and a sterilization method are presented.
脂质体包裹血红蛋白(LEH)正在美国海军研究实验室研发,作为一种通用的可输注携氧血液替代品。最近完成了一项化学工程放大可行性研究。我们在此报告一种包封方法的进展,该方法能在数小时内制备出数升含有至少16 g%血红蛋白的磷脂/胆固醇脂质体。0.2微米的脂质体通过为此目的改装的微流体处理器TM(微流体公司,马萨诸塞州牛顿市)制备,然后使用百利康(密理博公司,马萨诸塞州贝德福德市)切向流过滤装置进行洗涤和无菌过滤。此前,生产限制和无菌性问题一直是所有从事相关研究的人员进行毒性测试的严重障碍。如此制备的LEH的生物物理特性非常适合用作血液替代品,类似于红细胞的特性。通过共同包裹磷酸吡哆醛,LEH的氧结合亲和力可以在许多周内维持在新鲜全血的水平。脂质体的循环持续时间是磷脂类型的函数。我们已经开发出一种循环持续时间为15至20小时的制剂。本文介绍了LEH的氧结合特性、循环半衰期及其对脂质组成的依赖性、放大制备方法和灭菌方法。