Kainthan Rajesh K, Janzen Johan, Kizhakkedathu Jayachandran N, Devine Dana V, Brooks Donald E
Centre for Blood Research, Life Sciences Centre, 2350 Health Sciences Mall, University of British Columbia, Vancouver, BC V6T 1Z3, Canada.
Biomaterials. 2008 Apr;29(11):1693-704. doi: 10.1016/j.biomaterials.2007.11.030. Epub 2008 Jan 14.
There is a huge clinical demand for Human Serum Albumin (HSA), with a world market of approximately $1.5B/year. Concern over prion and viral transmission in the blood supply has led to a need for safer substitutes and offers the opportunity for development of materials with enhanced properties over the presently available plasma expanders. We report here the synthesis and testing of a new synthetic plasma expander that can replace not only the osmotic and volume expansion properties of HSA but, uniquely, its binding and transport properties. We have synthesized several hyperbranched polyglycerols derivatized with hydrophobic groups and short poly(ethylene glycol) (PEG) chains. The hydrophobic groups provide regions for binding fatty acids and other hydrophobic materials while PEG imparts the necessary protection from host defense systems and enhances circulation longevity. These polymers, being hyperbranched, have only a small effect on plasma viscosity. We have shown in vitro that our materials bind 2-3 moles palmitic acid per mole, do not activate the platelet, coagulation or complement systems and do not cause red cell aggregation. In mice these materials are non-toxic with circulation half-lives as high as 34h, controllable by manipulating the molecular weight and the degree of PEG derivatization.
人血清白蛋白(HSA)有着巨大的临床需求,其全球市场规模约为每年15亿美元。对血液供应中朊病毒和病毒传播的担忧导致了对更安全替代品的需求,并为开发性能优于现有血浆扩容剂的材料提供了机会。我们在此报告一种新型合成血浆扩容剂的合成与测试,它不仅可以替代HSA的渗透和扩容特性,而且独特的是,还能替代其结合和运输特性。我们合成了几种用疏水基团和短聚乙二醇(PEG)链衍生化的超支化聚甘油。疏水基团为结合脂肪酸和其他疏水物质提供区域,而PEG则提供免受宿主防御系统影响的必要保护并延长循环寿命。这些聚合物由于是超支化的,对血浆粘度影响很小。我们已在体外证明,我们的材料每摩尔可结合2 - 3摩尔棕榈酸,不会激活血小板、凝血或补体系统,也不会引起红细胞聚集。在小鼠体内,这些材料无毒,循环半衰期高达34小时,可通过控制分子量和PEG衍生化程度来调节。