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吡喹酮:在镁麻痹曼氏血吸虫中其作用位点的生理学证据

Praziquantel: physiological evidence for its site(s) of action in magnesium-paralysed Schistosoma mansoni.

作者信息

Blair K L, Bennett J L, Pax R A

机构信息

Department of Zoology, Michigan State University, East Lansing 48824-1115.

出版信息

Parasitology. 1992 Feb;104 Pt 1:59-66. doi: 10.1017/s0031182000060807.

Abstract

The mechanism whereby praziquantel produces a contraction and subsequent flaccid paralysis (a loss of sensitivity to subsequent stimuli) of Schistosoma mansoni in a medium containing an elevated Mg2+:Ca2+ ratio was investigated. In RPMI, praziquantel produced a concentration-dependent tonic contraction of the parasite with an EC50 of 200 nM. Magnesium inhibited the contraction in such a manner as to convert the tonic contraction to a phasic one without altering the peak force generated. The Mg(2+)-dependent block was non-competitive with praziquantel but was competitive with extracellular Ca2+, ratios of 7.5:1;Mg2+:Ca2+ being needed to inhibit the tonic contraction and to induce flaccid paralysis. Flaccid paralysis was associated with a reduced ability of the parasite to take up 45Ca2+ from the bath compared to parasites that had not entered into flaccid paralysis and flaccid paralysis was reversible. Recovery from flaccid paralysis was accelerated by treatments that are expected to increase Ca2+ uptake by the parasite. At a concentration of 500 nM, praziquantel produced 2 distinct phasic contractions in intact parasites incubated in an elevated [Mg2+] medium but only 1 phasic contraction in parasites lacking their surface tegumental membranes. In zero Ca2+ I-RPMI, 10 microM praziquantel produced a phasic contraction of intact parasites but did not stimulate contraction of detegumented parasites until Ca2+ was reintroduced into the bath. These results indicate that praziquantel interacts with specific Ca(2+)-permeable sites in the tegumental and sarcoplasmic membranes of the parasite and that under these conditions of elevated Mg2+:Ca2+ ratios, these sites become blocked by Mg2+, leading to flaccid paralysis of the parasite.

摘要

研究了吡喹酮在含有升高的Mg2+:Ca2+比值的培养基中,引起曼氏血吸虫收缩并随后出现弛缓性麻痹(对后续刺激失去敏感性)的机制。在RPMI培养基中,吡喹酮可使寄生虫产生浓度依赖性的强直性收缩,其半数有效浓度(EC50)为200 nM。镁以一种方式抑制收缩,即将强直性收缩转变为相性收缩,而不改变产生的峰值力。Mg(2+)依赖性阻断与吡喹酮无竞争性,但与细胞外Ca2+有竞争性,需要7.5:1的Mg2+:Ca2+比值来抑制强直性收缩并诱导弛缓性麻痹。与未进入弛缓性麻痹的寄生虫相比,弛缓性麻痹与寄生虫从浴液中摄取45Ca2+的能力降低有关,且弛缓性麻痹是可逆的。预期可增加寄生虫Ca2+摄取的处理可加速从弛缓性麻痹中的恢复。在500 nM的浓度下,吡喹酮在含有升高[Mg2+]培养基中孵育的完整寄生虫中产生2种不同的相性收缩,但在缺乏表面被膜的寄生虫中仅产生1种相性收缩。在零钙I-RPMI中,10 μM吡喹酮可使完整寄生虫产生相性收缩,但在浴液中重新引入Ca2+之前,不会刺激去被膜寄生虫的收缩。这些结果表明,吡喹酮与寄生虫被膜和肌浆膜中的特定Ca(2+)通透位点相互作用,并且在这些Mg2+:Ca2+比值升高的条件下,这些位点被Mg2+阻断,导致寄生虫弛缓性麻痹。

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