硫代磷金对T4基因型卡斯特棘阿米巴生物学特性的影响

Ruqaiyyah Siddiqui, Farhat Abjani, Chien Ing Yeo, Edward R T Tiekink, Naveed Ahmed Khan
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引用次数: 10

摘要

背景:金化合物在治疗类风湿性关节炎和癌症等非传染性疾病方面显示出前景,并且被认为具有抗革兰氏阴性和革兰氏阳性细菌的抗微生物剂的价值,并且具有抗曼氏血吸虫、布鲁氏锥虫、恶性疟原虫、婴儿利什曼原虫、贾第鞭毛虫和溶组织内阿米巴原虫的抗寄生虫特性。已知它们会影响细胞呼吸过程所需的酶活性。方法:采用活力法、生长抑制法、胞壁法、胞壁法和酶谱法检测磷金(I)硫代酸酯对T4基因型castellanii临床分离株的抗阿米巴作用。结果:(1)用磷金(I)硫代酸盐处理黄颡鱼(A. castellanii)不影响台班蓝排斥试验测定的黄颡鱼(A. castellanii)的活力,(2)不影响PYG生长培养基中阿米巴虫的生长,(3)不抑制细胞分化,(4)不影响黄颡鱼的胞外蛋白水解活性。结论:a . castellanii是一种自由生活的阿米巴变形虫,具有适应各种好氧和厌氧环境的呼吸机制,以避免毒性威胁和不利条件。本研究结果首次表明,castellanii对金化合物的毒性作用具有抗性,为研究真核细胞的金属抗性机制提供了一个有吸引力的模型。
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The effects of phosphanegold(I) thiolates on the biological properties of Acanthamoeba castellanii belonging to the T4 genotype.

Background: Gold compounds have shown promise in the treatment of non-communicable diseases such as rheumatoid arthritis and cancer, and are considered of value as anti-microbial agents against Gram-negative and Gram-positive bacteria, and have anti-parasitic properties against Schistosoma mansoni, Trypanosoma brucei, Plasmodium falciparum, Leishmania infantinum, Giardia lamblia, and Entamoeba histolytica. They are known to affect enzymatic activities that are required for the cellular respiration processes.

Methods: Anti-amoebic effects of phosphanegold(I) thiolates were tested against clinical isolate of A. castellanii belonging to the T4 genotype by employing viability assays, growth inhibition assays, encystation assays, excystation assays, and zymographic assays.

Results: The treatment of A. castellanii with the phosphanegold(I) thiolates tested (i) had no effect on the viability of A. castellanii as determined by Trypan blue exclusion test, (ii) did not affect amoebae growth using PYG growth medium, (iii) did not inhibit cellular differentiation, and (iv) had no effect on the extracellular proteolytic activities of A. castellanii.

Conclusion: Being free-living amoeba, A. castellanii is a versatile respirator and possesses respiratory mechanisms that adapt to various aerobic and anaerobic environments to avoid toxic threats and adverse conditions. For the first time, our findings showed that A. castellanii exhibits resistance to the toxic effects of gold compounds and could prove to be an attractive model to study mechanisms of metal resistance in eukaryotic cells.

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