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钙离子耗竭对恶性疟原虫无性细胞周期的影响。

Effects of Ca++ depletion on the asexual cell cycle of Plasmodium falciparum.

作者信息

Wasserman M, Alarcón C, Mendoza P M

出版信息

Am J Trop Med Hyg. 1982 Jul;31(4):711-7. doi: 10.4269/ajtmh.1982.31.711.

Abstract

Ca++ was shown to be indispensable for the normal growth of cultures of Plasmodium falciparum. Inclusion of ethyleneglycolbis (beta-amino-ethylether) N,N'-tetra-acetic acid (EGTA) caused blocking of the asexual cell cycle of the parasite in two sites, the first blockage occurring between 20 and 26 hours after invasion of the erythrocyte. It proved to be irreversible by additions of Mg++ or Ca++, and to lead to morphologically abnormal parasites arrested in the mature trophozoite stage of the cycle. The second site of inhibition was probably one of the steps in the process of invasion of the erythrocyte by the merozoite. When 1 mM EGTA was added 24--30 hours after the culture was synchronized the cell cycle of the parasite continued without any interference in the normal maturation until the development of schizonts and release of merozoites into the medium. However, reinvasion of fresh erythrocytes by these merozoites was impeded. The inhibition of reinvasion caused by EGTA was overcome by the addition of an excess of Ca++ but not by an excess of Mg++. After the addition of Ca++ to cultures blocked just before the invasion phase as schizonts, the merozoites were again rendered fully infective and the rate of invasion was similar to that in an untreated control culture. Implications of the effects of Ca++ depletion on the asexual cell cycle and possible applications of EGTA as a reversible inhibitor of the invasion process are discussed.

摘要

研究表明,钙离子对于恶性疟原虫培养物的正常生长不可或缺。加入乙二醇双(β-氨基乙醚)N,N'-四乙酸(EGTA)会在两个位点阻断该寄生虫的无性细胞周期,首次阻断发生在红细胞被入侵后的20至26小时之间。事实证明,添加镁离子或钙离子无法使其恢复,且会导致形态异常的寄生虫停滞在细胞周期的成熟滋养体阶段。第二个抑制位点可能是裂殖子入侵红细胞过程中的某个步骤。当在培养物同步化后24至30小时加入1 mM EGTA时,寄生虫的细胞周期继续进行,正常成熟过程未受任何干扰,直至裂殖体发育并将裂殖子释放到培养基中。然而,这些裂殖子对新鲜红细胞的再次入侵受到阻碍。加入过量的钙离子可克服EGTA对再次入侵的抑制作用,而加入过量的镁离子则无法做到。在向处于裂殖体阶段、即将进入入侵阶段的培养物中加入钙离子后,裂殖子再次具有完全感染性,入侵率与未处理的对照培养物相似。本文讨论了钙离子耗竭对无性细胞周期的影响以及EGTA作为入侵过程可逆抑制剂的可能应用。

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