Low prevalence of copy number variation in pfmdr1 and pfpm2 in Plasmodium falciparum isolates from southern Angola.

IF 2.4 3区 医学 Q3 INFECTIOUS DISEASES Malaria Journal Pub Date : 2025-01-10 DOI:10.1186/s12936-024-05240-2
Denise Duarte, Francisco Manuel, Ana Dias, Esmeralda Sacato, Elsa Taleingue, Elsa Daniel, Francisco Simão, Luis Varandas, Maria Lina Antunes, Fatima Nogueira
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Abstract

Background: Malaria is the parasitic disease with the highest global morbidity and mortality. According to estimates from the World Health Organization (WHO), there were around 249 million cases in 2022, with 3.4% occurring in Angola. The emergence and spread of drug-resistant Plasmodium falciparum have compromised anti-malarial efficacy and threatens malaria elimination campaigns using artemisinin-based combination therapy (ACT). Increased copy number (CNV) of the P. falciparum gene plasmepsin 2 (pfpm2) have been reported to confer parasite tolerance to piperaquine (PPQ) and the multidrug resistance-1 (pfmdr1), resistance to mefloquine (MEF) and decreased susceptibility to lumefantrine (LUM). PPQ, MEF and LUM are ACT partner drugs. Therefore, CNV detection is a useful tool to track ACT resistance risk. The potential for future treatment failure of artemisinin-based combinations (that include PPQ, LUM and AMQ), due to parasite resistance in the region, emphasizes the need for continued molecular surveillance.

Methods: One hundred and nine clinically derived samples were collected at Hospital Central Dr. António Agostinho Neto (HCL) in Lubango, Angola. qPCR targeting the small-subunit 18S rRNA gene was used to confirm P. falciparum infection. Copy number estimates were determined using a SYBR green-based quantitative PCR assay.

Results: Overall, this study revealed a low number of resistance CNVs present in the parasite population at Lubango, for the genes pfmdr1 and pfpm2. Of the 102 samples successfully analysed for pfpm2 10 (9.8%) carried increased CNV and 9/101 (8.9%) carried increased CNV of pfmdr1.

Conclusions: This study provides, for the first time, evidence for the presence of CNVs in the pfpm2 and pfmdr1 genes in P. falciparum isolates from southern Angola.

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安哥拉南部恶性疟原虫分离株pfmdr1和pfmm2拷贝数变异发生率低。
背景:疟疾是全球发病率和死亡率最高的寄生虫病。根据世界卫生组织(世卫组织)的估计,2022年约有2.49亿病例,其中3.4%发生在安哥拉。耐药恶性疟原虫的出现和传播损害了抗疟疾功效,并威胁到使用以青蒿素为基础的联合疗法(ACT)消除疟疾的运动。据报道,恶性疟原虫基因plasmepsin 2 (pfpm2)拷贝数(CNV)的增加使疟原虫对哌喹(PPQ)和多药耐药-1 (pfmdr1)产生耐受性,对甲氟喹(MEF)产生耐药,并降低对甲苯胺(LUM)的敏感性。PPQ、MEF和LUM是ACT合作伙伴药物。因此,CNV检测是跟踪ACT耐药风险的有效工具。由于该地区的寄生虫耐药性,未来以青蒿素为基础的联合治疗(包括PPQ、LUM和AMQ)可能会失败,这强调了继续进行分子监测的必要性。方法:在安哥拉卢班戈中心医院António Agostinho Neto (HCL)收集临床来源标本109份。采用靶向小亚基18S rRNA基因的qPCR检测恶性疟原虫感染。拷贝数估计值使用SYBR绿色定量PCR测定。结果:总体而言,本研究揭示了Lubango寄生虫种群中存在的pfmdr1和pfpm2基因抗性CNVs数量较少。在成功分析的102份样本中,10份(9.8%)携带增加的CNV, 9份(8.9%)携带增加的pfmdr1。结论:本研究首次为安哥拉南部恶性疟原虫分离株pfpm2和pfmdr1基因中存在CNVs提供了证据。
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来源期刊
Malaria Journal
Malaria Journal 医学-寄生虫学
CiteScore
5.10
自引率
23.30%
发文量
334
审稿时长
2-4 weeks
期刊介绍: Malaria Journal is aimed at the scientific community interested in malaria in its broadest sense. It is the only journal that publishes exclusively articles on malaria and, as such, it aims to bring together knowledge from the different specialities involved in this very broad discipline, from the bench to the bedside and to the field.
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