Satpathy Gyana R, Török Zsolt, Bali Rachna, Dwyre Denis M, Little Erika, Walker Naomi J, Tablin Fern, Crowe John H, Tsvetkova Nelly M
Center for Biostabilization, University of California Davis, CA 95616, USA.
Cryobiology. 2004 Oct;49(2):123-36. doi: 10.1016/j.cryobiol.2004.06.001.
A method for freeze-drying red blood cells (RBCs) while maintaining a high degree of viability has important implications in blood transfusion and clinical medicine. The disaccharide trehalose, found in animals capable of surviving dehydration can aid in this process. As a first step toward RBC preservation, we present a method for loading RBCs with trehalose. The method is based on the thermal properties of the RBC plasma membranes and provides efficient uptake of the sugar at 37 degrees C in a time span of 7 h. The data show that RBCs can be loaded with trehalose from the extracellular medium through a combination of osmotic imbalance and the phospholipid phase transition, resulting in intracellular trehalose concentrations of about 40 mM. During the loading period, the levels of ATP and 2,3-DPG are maintained close to the levels of fresh RBCs. Increasing the membrane fluidity through the use of a benzyl alcohol results in a higher concentration of intracellular trehalose, suggesting the importance of the membrane physical state for the uptake of the sugar. Osmotic fragility data show that trehalose exerts osmotic protection on RBCs. Flow cytometry data demonstrate that incubation of RBCs in a hypertonic trehalose solution results in a fraction of cells with different complexity and that it can be removed by washing and resuspending the RBCs in an iso-osmotic medium. The data provide an important first step in long-term preservation of RBCs.
一种在保持高度活力的同时冻干红细胞(RBCs)的方法在输血和临床医学中具有重要意义。在能够在脱水状态下存活的动物体内发现的二糖海藻糖有助于这一过程。作为红细胞保存的第一步,我们提出了一种用海藻糖加载红细胞的方法。该方法基于红细胞质膜的热特性,能在37摄氏度下7小时的时间跨度内实现糖的高效摄取。数据表明,红细胞可以通过渗透失衡和磷脂相变的组合从细胞外介质中加载海藻糖,从而使细胞内海藻糖浓度达到约40 mM。在加载期间,ATP和2,3 - DPG的水平保持接近新鲜红细胞的水平。通过使用苯甲醇增加膜流动性会导致细胞内海藻糖浓度更高,这表明膜的物理状态对糖的摄取很重要。渗透脆性数据表明海藻糖对红细胞具有渗透保护作用。流式细胞术数据表明,将红细胞置于高渗海藻糖溶液中孵育会导致一部分细胞具有不同的复杂性,并且可以通过将红细胞洗涤并重悬于等渗介质中来去除。这些数据为红细胞的长期保存提供了重要的第一步。