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恶性疟原虫同步培养物中诱导配子体形成后糖酵解部分抑制与溶血之间的关系

Relationship between partial inhibition of glycolysis and hemolysis after induction of gametocytogenesis in synchronous cultures of Plasmodium falciparum.

作者信息

Ohnishi Y, Nishimura K, Umeda Y

机构信息

Laboratory of Veterinary Epidemiology, Graduate School of Agriculture and Biological Sciences, Osaka Prefecture University, 1-1, 599-8531, Sakai, Japan.

出版信息

Parasitol Int. 2001 Mar;50(1):1-7. doi: 10.1016/s1383-5769(00)00062-3.

Abstract

In the present study, the low molecular-weight fraction of the culture supernatant of anti-Plasmodium falciparum antibody-producing hybridoma cells (HybSL) was used in synchronous culture with P. falciparum FVO strain. When synchronous cultures were treated with HybSL solution on day 5, gametocytogenesis was also induced. Gametocytes were consistently found from the third day after treatment and reached a peak on the fourth day. An increase in pH and hemoglobin concentrations and decrease in lactate concentrations were observed on the first day after treatment. These phenomena suggested that HybSL solution partially inhibited glycolysis of erythrocytes parasitized with schizonts and resulted in hemolysis of infected erythrocytes. On the other hand, the production of gametocytes did not increase in cultures treated with HybSL solution on day 4 of synchronous cultures in which ring forms were plentiful. Most ring forms were not killed by HybSL solution and quickly developed to trophozoites and schizonts rather than gametocytes. Consequently, it is assumed that ring forms on day 4 of synchronous cultures have finished differentiation into the asexual stage. The conversion of asexual parasites to gametocytes may be triggered only when late-stage trophozoites or early-stage schizonts are treated with HybSL solution.

摘要

在本研究中,将产生抗恶性疟原虫抗体的杂交瘤细胞(HybSL)培养上清液的低分子量部分与恶性疟原虫FVO株进行同步培养。当在第5天用HybSL溶液处理同步培养物时,也诱导了配子体形成。处理后第三天开始持续发现配子体,并在第四天达到峰值。处理后第一天观察到pH值和血红蛋白浓度升高,乳酸浓度降低。这些现象表明,HybSL溶液部分抑制了被裂殖体寄生的红细胞的糖酵解,并导致被感染红细胞的溶血。另一方面,在同步培养第4天用HybSL溶液处理的培养物中,配子体的产生没有增加,此时环状体丰富。大多数环状体没有被HybSL溶液杀死,而是迅速发育成滋养体和裂殖体,而不是配子体。因此,可以推测同步培养第4天的环状体已经完成了向无性阶段的分化。只有当晚期滋养体或早期裂殖体用HybSL溶液处理时,无性寄生虫向配子体的转化才可能被触发。

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