卡氏肺囊虫短期细胞培养活性指标的研究。

The Journal of protozoology Pub Date : 1991-11-01
M Y Armstrong, H Koziel, R M Rose, C Arena, F F Richards
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引用次数: 0

摘要

在没有可靠的方法来区分活的和死的有机体的情况下,很难记录卡氏假单胞菌在培养物中的生长。在短期细胞培养过程中,我们研究了三种细胞功能标志物,并将它们与培养上清中存在的卡氏弓形虫数量进行了关联。标记物为葡聚糖合成酶活性、酯酶活性和细胞膜完整性。后两者分别用双醋酸荧光素和碘化丙啶双染色,然后用流式细胞术进行荧光分析。培养5 ~ 7天后,卡氏假单胞菌数量的增加与葡聚糖合成酶活性的增加有关。流式细胞术分析第6天的P. carinii培养证实,超过80%的生物体催化双醋酸荧光素转化为荧光素,并排除了碘化丙啶。在一个不断扩大的马蹄铁种群中,代谢活性的三个指标的展示证实了培养系统作为维持马蹄铁活菌持续活动的一种手段的有效性,尽管时间很短。
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Indicators of Pneumocystis carinii viability in short-term cell culture.

Growth of P. carinii in culture has been difficult to document in the absence of reliable methods for distinguishing live from dead organisms. We studied three markers of cell function in P. carinii during the course of short-term cell culture, and correlated these with the number of P. carinii present in culture supernatants. The markers were glucan synthase activity, esterase activity and cell membrane integrity. The last two were assessed by double staining with fluorescein diacetate and propidium iodide followed by analysis of fluorescence using flow cytometry. The rise in P. carinii number after 5 to 7 days in culture was associated with increased glucan synthase activity. Flow cytometry analysis of day-6 P. carinii cultures confirmed that over 80% of the organisms catalyzed the conversion of fluorescein diacetate to fluorescein and excluded propidium iodide. The demonstration of three indices of metabolic activity in an expanding P. carinii population has confirmed the efficacy of a culture system as a means of sustaining the continued activity, albeit short-lived, of viable P. carinii.

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Proliferation patterns of latent Pneumocystis carinii in rat organs during progressive stages of immunosuppression. 7th European Conference on Cell and Molecular Biology of Ciliates. Toledo, Spain, September 2-6, 1991. Abstracts. The Society of Protozoologists. 1991 Abstracts. John O. Corliss--ciliatologist extraordinaire. Calcium transport and compartment analysis of free and exchangeable calcium in Plasmodium falciparum-infected red blood cells.
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