Guo Long, Yang Ying-lai, Yang Tao, Liu Zi-heng, Feng Shi-lan
School ofPharmmacy, Lanzhou University, Lanzhou 730000, China.
Yao Xue Xue Bao. 2013 Nov;48(11):1665-70.
SHG was sulfated by chlorosulfonic acid-pyridine method, and six samples which we got were prepared in different reaction conditions. There is a characteristic absorption peak near 260 nm in UV spectra and there are two characteristic absorption peaks near 1240 cm(-1) and 810 cm(-1) in the FT-IR. Degree of sulfation (DS) was calculated by elemental analysis and turbidimetry. Under the same conditions the absorption peaks become strong with the DS increase. The anticoagulant activity of SHG and sulfated modification samples was evaluated by the classic coagulant assays of prothrombin time (PT), activated partial thrombin time (APTT) live enzymes, and plasma thrombin time (TT). Results show that sulfated SHG has a good anticoagulant activity in vitro, and DS increased activity within a certain range.
采用氯磺酸-吡啶法对SHG进行硫酸化修饰,在不同反应条件下制备了6个样品。紫外光谱在260 nm附近有特征吸收峰,傅里叶变换红外光谱在1240 cm(-1)和810 cm(-1)附近有两个特征吸收峰。通过元素分析和比浊法计算硫酸化程度(DS)。在相同条件下,随着DS增加,吸收峰增强。通过经典的凝血酶原时间(PT)、活化部分凝血活酶时间(APTT)活性酶和血浆凝血酶时间(TT)凝血试验评估SHG和硫酸化修饰样品的抗凝活性。结果表明,硫酸化SHG在体外具有良好的抗凝活性,在一定范围内DS增加活性增强。