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Role of Plasmodium falciparum Chloroquine Resistance Transporter and Multidrug Resistance 1 Genes on In Vitro Chloroquine Resistance in Isolates of Plasmodium falciparum from Thailand

机译:泰国恶性疟原虫分离株中恶性疟原虫氯喹抗性转运蛋白和多药耐药性1基因对体外氯喹抗性的作用

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摘要

Resistance to chloroquine is a public health problem worldwide. Polymorphisms of the Plasmodium falciparum chloroquine resistance transporter (pfcrt) and P. falciparum multidrug resistance 1 (pfmdr1) genes have been linked to chloroquine resistance. Although the K76T mutation in the pfcrt gene has been shown to be a key determinant in chloroquine resistance, evidence suggests that the pfmdr1 gene could modulate the level of chloroquine resistance. However, few studies of field isolates could identify the interactive role of these two genes in chloroquine resistance. Thus, we evaluated the influence of pfcrt and pfmdr1 polymorphisms on in vitro chloroquine sensitivity in 89 adapted isolates of P. falciparum from Thailand. We found that 87 of 89 isolates contained the CVIET haplotype of the pfcrt gene. Two additional mutations in the pfcrt gene were identified, i.e., K6Q and H97L. For the pfmdr1 polymorphisms, the 184F allele was common in the parasites isolated along the Thailand-Cambodia border, and those isolated along the Thailand-Myanmar border contained higher copy numbers. Our results indicate that the additional mutations, in particular H97L in the pfcrt gene and Y184F in the pfmdr1 gene and its copy number, influence the level of chloroquine resistance.
机译:对氯喹的抗药性是全世界的公共卫生问题。恶性疟原虫氯喹抗性转运蛋白(pfcrt)和恶性疟原虫多药抗性1(pfmdr1)基因的多态性与氯喹抗性有关。尽管已显示pfcrt基因中的K76T突变是氯喹抗性的关键决定因素,但证据表明pfmdr1基因可调节氯喹抗性的水平。但是,很少有田间分离株的研究能够确定这两个基因在氯喹抗性中的相互作用。因此,我们评估了来自泰国的89株恶性疟原虫的分离株中pfcrt和pfmdr1多态性对体外氯喹敏感性的影响。我们发现89个分离物中的87个包含pfcrt基因的CVIET单倍型。在pfcrt基因中鉴定出两个另外的突变,即K6Q和H97L。对于pfmdr1多态性,在泰国-柬埔寨边界沿线分离的寄生虫中常见184F等位基因,而在泰国-缅甸边界沿线分离的那些寄生虫包含较高的拷贝数。我们的结果表明,额外的突变,特别是pfcrt基因中的H97L和pfmdr1基因中的Y184F及其拷贝数,影响了氯喹抗性水平。

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