Department of Pharmacology, Jessenius faculty of Medicine, Comenius University, Sklabinská 26, SK-036 01 Martin, Slovakia.
Int J Biol Macromol. 2011 Dec 1;49(5):1046-50. doi: 10.1016/j.ijbiomac.2011.08.029. Epub 2011 Sep 1.
An algal extracellular biopolymer (over 8.5 × 10(5)Da) composed of carbohydrates (52%) and protein (∼13%) has been isolated from a red alga Rhodella grisea growing in natural conditions by concentration of water medium, alcohol precipitation, dialysis and freeze-drying. This mucilagineous biopolymer contained xylose and its 3-O- and 4-O-methyl derivatives (∼63%), galactose (∼12%), glucuronic acid (11-12%), glucose (∼5%), rhamnose (∼4%), fucose (∼3-4%) and low content of others accompaning sugars. When tested on the citric acid-induced cough and reactivity of airways smooth muscle in vivo in the test system guinea pigs, this biopolymer assigned a significant cough suppressing effect. The reactivity of airways smooth muscle was not affected indicating that expectoration effect was not suppressed by biopolymer application, which is important from the pharmacological point of view.
一种由碳水化合物(52%)和蛋白质(13%)组成的藻类细胞外生物聚合物(超过 8.5×10(5)Da),已从在自然条件下生长的红藻 Rhodella grisea 通过浓缩水介质、酒精沉淀、透析和冷冻干燥分离得到。这种黏多糖生物聚合物含有木糖及其 3-O-和 4-O-甲基衍生物(63%)、半乳糖(12%)、葡萄糖醛酸(11-12%)、葡萄糖(5%)、鼠李糖(4%)、岩藻糖(3-4%)和其他伴随糖的低含量。当在体内柠檬酸诱导咳嗽和气道平滑肌反应的豚鼠测试系统中进行测试时,该生物聚合物具有显著的镇咳作用。气道平滑肌的反应没有受到影响,表明生物聚合物的应用没有抑制排痰作用,这从药理学角度来看是很重要的。