Department of Chemistry and Chemical Biology, Rensselaer Polytechnic Institute, Troy, NY 12180, USA.
Curr Opin Chem Biol. 2009 Dec;13(5-6):633-40. doi: 10.1016/j.cbpa.2009.08.017. Epub 2009 Sep 24.
Heparin, the focus of this review, is a crucially important anticoagulant drug produced from animal sources, which was contaminated last year leading to a number of adverse side effects, some resulting in death. Heparin is a highly acidic polysaccharide and a member of a family of biopolymers called glycosaminoglycans. The structure and activities of heparin are detailed along with recent advances in heparin structural analysis and biological evaluation. Current state-of-the-art chemical and chemoenzymatic synthesis of heparin and new approaches for its metabolic engineering are described. New technologies, including microarrays and digital microfluidics, are proposed for high-throughput synthesis and screening of heparin and for the fabrication of an artificial Golgi.
肝素是本次综述的重点,它是一种从动物来源中提取的至关重要的抗凝药物,去年该药物受到污染,导致了一些不良的副作用,其中一些甚至导致了死亡。肝素是一种高度酸性的多糖,也是被称为糖胺聚糖的生物聚合物家族的成员。本文详细介绍了肝素的结构和活性,以及肝素结构分析和生物学评价方面的最新进展。描述了肝素的最新化学和化学酶合成以及代谢工程的新方法。提出了新技术,包括微阵列和数字微流控技术,用于肝素的高通量合成和筛选,以及用于人工高尔基体的制造。