Maksimenko Alexander V, Golubykh Vladimir L, Tischenko Elena G
Laboratory of Biochemical Engineering, Department of Biotechnology, Institute of Experimental Cardiology, Russian Cardiology Research Center, 3rd Cherepkovskaya Street 15a, 121 552 Moscow, Russia.
Metab Eng. 2003 Jul;5(3):177-82. doi: 10.1016/s1096-7176(03)00026-0.
Antithrombotic activity of catalase (CAT) and chondroitin sulfate (CHS) preparations was studied in a rat model of arterial injury induced by ferrous chloride. Equal doses (according to catalytically active CAT) were used to examine the effect of native CAT, CAT-CHS covalent conjugate and mixture of native CAT and free CHS in a ratio corresponding to their contents in the conjugate. The antithrombotic activity of the derivatives was determined by the time during which arterial occlusion developed (occlusion time) and by the mass of the formed thrombus. The antithrombotic activities of the conjugate and mixture were similar and markedly higher than that of native CAT. The conjugate was more effective with respect to deceleration and prevention of arterial occlusion. Small doses of the preparations altered the structure of the formed thrombus, promoting sustained blood flow. Further investigations of the antithrombotic activity of CAT, superoxide dismutase and CHS derivatives have been outlined.
在氯化亚铁诱导的大鼠动脉损伤模型中,研究了过氧化氢酶(CAT)和硫酸软骨素(CHS)制剂的抗血栓活性。使用等量剂量(根据具有催化活性的CAT)来检测天然CAT、CAT-CHS共价缀合物以及天然CAT与游离CHS按其在缀合物中的含量比例混合后的效果。通过动脉闭塞形成的时间(闭塞时间)和形成血栓的质量来测定衍生物的抗血栓活性。缀合物和混合物的抗血栓活性相似,且明显高于天然CAT。就减缓及预防动脉闭塞而言,缀合物更有效。小剂量制剂改变了形成血栓的结构,促进了持续血流。概述了对CAT、超氧化物歧化酶和CHS衍生物抗血栓活性的进一步研究。