Program of Glycobiology, Institute of Medical Biochemistry, and University Hospital Clementino Fraga Filho, Federal University of Rio de Janeiro, Rio de Janeiro, RJ, 21941-590, Brazil.
Mar Drugs. 2012 Apr;10(4):793-811. doi: 10.3390/md10040793. Epub 2012 Mar 29.
Glycomics turned out to be a very extensive project where its subdivision is consequently emerging. This is seen by the growing number of terminologies used to define subprojects concerning particular classes of bioactive carbohydrates. Sulfated fucans (SFs) and sulfated galactans (SGs) are relatively new classes of sulfated polysaccharides (SPs) that occur mostly in marine organisms, and exhibit a broad range of medicinal effects. Their structures are taxonomically dependent, and their therapeutic actions include benefits in inflammation, coagulation, thrombosis, angiogenesis, cancer, oxidation, and infections. Some red algae, marine angiosperm and invertebrates express SPs of unique structures composed of regular repeating oligomeric units of well-defined sulfation patterns. This fine pattern of structural regularity is quite rare among any naturally occurring long SPs, and enables accurate structure-biofunction correlations. Seeing that, fucanomics and galactanomics may comprise distinguished glycomics subprojects. We hereby discuss the relevance that justifies the international recognition of these subprojects in the current glycomics age associated with the beneficial outcomes that these glycans may offer in drug development.
糖组学是一个非常广泛的项目,其分支学科也随之不断涌现。这可以从越来越多的术语中看出,这些术语用于定义与特定类别的生物活性碳水化合物有关的子项目。硫酸化岩藻聚糖(SFs)和硫酸化半乳聚糖(SGs)是相对较新的硫酸化多糖(SPs)类别,主要存在于海洋生物中,具有广泛的药用功效。它们的结构具有分类依赖性,其治疗作用包括在炎症、凝血、血栓形成、血管生成、癌症、氧化和感染方面的益处。一些红藻、海洋被子植物和无脊椎动物表达由规则重复的寡聚单元组成的具有独特结构的 SP,这些寡聚单元具有明确的硫酸化模式。这种结构规律性的精细模式在任何天然存在的长 SP 中都非常罕见,能够实现准确的结构-生物功能相关性。因此,岩藻糖组学和半乳聚糖组学可能构成独特的糖组学子项目。在此,我们讨论了这些子项目在与这些聚糖在药物开发中可能带来的有益结果相关的当前糖组学时代获得国际认可的合理性。