Novokhatsky A S, Ershov F I, Timkovsky A L, Bresler S E, Kogan E M, Tikhomirova-Sidorova N S
Acta Virol. 1975 Apr;19(2):121-9.
The antiviral activity and conditions of formation of the most active double-stranded complexes of synthetic homopolynucleotides, polyriboguanylic and polyribocytidylic acids, were studied on the model of primary trypsinized chick embryo cells and RNA-containing viruses. The (poly G).(poly C) complex was very active against the viruses tested; their replication in cell cultures was inhibited completely. The antiviral activity of the (poly G).(poly C) complex increased markedly in the presence of diethylaminoethyl- (DEAE-) dextran. After treatment with 1 mug/ml of (poly G). (poly C) for 1 hour in the presence of 100 mug/ml DEAE-dextran, the cell sheet remained protected for 5-7 days. Preparations of (poly G).(poly C) obtained under optimal conditions were as active as (poly I).(poly C) complexes and exceeded them markedly in the level of the therapeutic index which under the present experimental conditions was 5-10 times 10(3) for (poly G).(poly C). Highly purified homopolymers with sufficiently high molecular weight must be used for production of active and stable (poly G).(poly C) complexes.
以原代胰蛋白酶消化的鸡胚细胞和含RNA病毒为模型,研究了合成同聚核苷酸聚核糖鸟苷酸和聚核糖胞苷酸最具活性的双链复合物的抗病毒活性及其形成条件。聚(G)·聚(C)复合物对所测试的病毒具有很高的活性;它们在细胞培养物中的复制被完全抑制。在二乙氨基乙基(DEAE)葡聚糖存在下,聚(G)·聚(C)复合物的抗病毒活性显著增强。在100μg/ml DEAE葡聚糖存在下,用1μg/ml聚(G)·聚(C)处理1小时后,细胞单层可保持5 - 7天不受病毒侵害。在最佳条件下获得的聚(G)·聚(C)制剂与聚(I)·聚(C)复合物活性相当,且在治疗指数水平上显著超过它们,在当前实验条件下,聚(G)·聚(C)的治疗指数为5 - 10×10³。必须使用具有足够高分子量的高度纯化的同聚物来制备活性和稳定的聚(G)·聚(C)复合物。