首页> 外文期刊>Acta tropica: Journal of Biomedical Sciences >Monitoring of in vitro susceptibilities and molecular markers of resistance of Plasmodium falciparum isolates from Thai-Myanmar border to chloroquine, quinine, mefloquine and artesunate.
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Monitoring of in vitro susceptibilities and molecular markers of resistance of Plasmodium falciparum isolates from Thai-Myanmar border to chloroquine, quinine, mefloquine and artesunate.

机译:监测泰缅边境恶性疟原虫分离株对氯喹,奎宁,甲氟喹和青蒿琥酯的体外药敏性和耐药性的分子标记。

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摘要

Malaria is one of the major causes of morbidity and mortality worldwide. The major factor which has aggravated the situation is the emergence of multidrug resistant Plasmodium falciparum malaria. To successfully deal with the problem, thorough understanding of the molecular bases for reduced parasite sensitivity to existing antimalarial drugs is of considerable importance. The objective of this work was to broaden the insight into the molecular mechanisms of resistance of P. falciparum to quinoline-containing antimalarials and artemisinin derivatives. Polymorphisms of the candidate genes pfmdr1 and pfcrt were investigated in relation to the susceptibility (in vitro sensitivity) of P. falciparum isolates to chloroquine (CQ), mefloquine (MQ), quinine (QN) and the artemisinin derivative - artesunate (AS). A total of 26 P. falciparum isolates were successful cultured. In vitro sensitivity results indicate the increase in susceptibility of P. falciparum strains in Thailand to CQ, while the susceptibility to MQ and QN was markedly declined. The pattern of cross-resistance was observed between MQ vs QN vs AS. Only one point mutation in the pfmdr1 gene, i.e., N86Y was observed with low prevalence of 7.7% (2/26). In contrast, the mutations at positions 76T, 220S, 271E, 326S, 356T and 371I in the pfcrt gene were identified in almost all isolates (25 isolates, 96.2%). The association between polymorphisms of the pfmdr1 and susceptibility of the parasite to MQ and QN was observed (increased susceptibilities to MQ and QN in isolates with mutations). Moreover, the correlation between pfmdr1 gene amplification and susceptibility of the parasite to MQ, QN and AS was observed (decreased susceptibilities to MQ, QN and AS in isolates with increased pfmdr1 copy number).
机译:疟疾是全世界发病率和死亡率的主要原因之一。导致这种情况恶化的主要因素是多药耐药性恶性疟原虫的出现。为了成功地解决该问题,充分理解降低对现有抗疟药的寄生虫敏感性的分子基础非常重要。这项工作的目的是拓宽对恶性疟原虫对含喹啉类抗疟药和青蒿素衍生物抗药性的分子机制的见解。研究了候选基因pfmdr1和pfcrt的多态性与恶性疟原虫对氯喹(CQ),甲氟喹(MQ),奎宁(QN)和青蒿素衍生物-青蒿琥酯(AS)的敏感性(体外敏感性)有关。总共成功培养了26种恶性疟原虫分离株。体外敏感性结果表明,泰国恶性疟原虫菌株对CQ的敏感性增加,而对MQ和QN的敏感性显着下降。在MQ vs QN vs AS之间观察到交叉电阻的模式。在pfmdr1基因中仅观察到一个点突变,即N86Y,患病率较低,为7.7%(2/26)。相反,在几乎所有分离株(25个分离株,96.2%)中都鉴定了pfcrt基因中76T,220S,271E,326S,356T和371I位置的突变。观察到pfmdr1的多态性与寄生虫对MQ和QN的敏感性之间的关联(突变菌株中对MQ和QN的敏感性增加)。此外,观察到pfmdr1基因扩增与该寄生虫对MQ,QN和AS的敏感性之间的相关性(pfmdr1拷贝数增加的分离株对MQ,QN和AS的敏感性降低)。

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