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用于疟疾检测的多重分析中乳酸脱氢酶的诊断特征,包括动物源性寄生虫疟原虫 knowlesi。

Diagnostic Characteristics of Lactate Dehydrogenase on a Multiplex Assay for Malaria Detection Including the Zoonotic Parasite Plasmodium knowlesi.

机构信息

Diagnostics, PATH, Seattle, Washington.

Department of Infectious Diseases and Center for Tropical and Emerging Global Diseases, University of Georgia, Athens, Georgia.

出版信息

Am J Trop Med Hyg. 2021 Nov 15;106(1):275-282. doi: 10.4269/ajtmh.21-0532.

Abstract

Plasmodium lactate dehydrogenase (pLDH) is a common target in malaria rapid diagnostic tests (RDTs). These commercial antibody capture assays target either Plasmodium falciparum-specific pLDH (PfLDH), P. vivax-specific pLDH (PvLDH), or a conserved epitope in all human malaria pLDH (PanLDH). However, there are no assays specifically targeting P. ovale, P. malariae or zoonotic parasites such as P. knowlesi and P. cynomolgi. A malaria multiplex array, carrying the specific antibody spots for PfLDH, PvLDH, and PanLDH has been previously developed. This study aimed to assess potential cross-reactivity between pLDH from various Plasmodium species and this array. We tested recombinant pLDH proteins, clinical samples for P. vivax, P. falciparum, P. ovale curtisi, and P. malariae; and in vitro cultured P. knowlesi and P. cynomolgi. P. ovale-specific pLDH (PoLDH) and P. malariae-specific pLDH (PmLDH) cross-reacted with the PfLDH and PanLDH spots. Plasmodium Knowlesi-specific pLDH (PkLDH) and P. cynomolgi-specific pLDH (PcLDH) cross-reacted with the PvLDH spot, but only PkLDH was recognized by the PanLDH spot. Plasmodium ovale and P. malariae can be differentiated from P. falciparum by the concentration ratios of PanLDH/PfLDH, which had mean (range) values of 4.56 (4.07-5.16) and 4.56 (3.43-6.54), respectively, whereas P. falciparum had a lower ratio of 1.12 (0.56-2.61). Plasmodium knowlesi had a similar PanLDH/PvLDH ratio value, with P. vivax having a mean value of 2.24 (1.37-2.79). The cross-reactivity pattern of pLDH can be a useful predictor to differentiate certain Plasmodium species. Cross-reactivity of the pLDH bands in RDTs requires further investigation.

摘要

疟原虫乳酸脱氢酶(pLDH)是疟疾快速诊断检测(RDT)的常见靶点。这些商业化的抗体捕获检测法针对的是恶性疟原虫特异性 pLDH(PfLDH)、间日疟原虫特异性 pLDH(PvLDH)或所有人类疟原虫 pLDH 的保守表位(PanLDH)。然而,目前还没有专门针对卵形疟原虫、三日疟原虫或食蟹猴疟原虫和猕猴疟原虫等动物源疟原虫的检测方法。之前已经开发出了一种疟疾多重分析系统,其中包含 PfLDH、PvLDH 和 PanLDH 的特异性抗体斑点。本研究旨在评估来自不同疟原虫种的 pLDH 与该分析系统之间的潜在交叉反应性。我们测试了重组 pLDH 蛋白、间日疟原虫、恶性疟原虫、卵形疟原虫 curtisi 和三日疟原虫的临床样本;以及体外培养的食蟹猴疟原虫和猕猴疟原虫。卵形疟原虫特异性 pLDH(PoLDH)和三日疟原虫特异性 pLDH(PmLDH)与 PfLDH 和 PanLDH 斑点发生交叉反应。食蟹猴疟原虫特异性 pLDH(PkLDH)和猕猴疟原虫特异性 pLDH(PcLDH)与 PvLDH 斑点发生交叉反应,但只有 PkLDH 被 PanLDH 斑点识别。通过 PanLDH/PfLDH 的浓度比值可以将卵形疟原虫和三日疟原虫与恶性疟原虫区分开来,前者的比值均值(范围)分别为 4.56(4.07-5.16)和 4.56(3.43-6.54),而恶性疟原虫的比值较低,为 1.12(0.56-2.61)。食蟹猴疟原虫的 PanLDH/PvLDH 比值也相似,间日疟原虫的比值均值为 2.24(1.37-2.79)。pLDH 的交叉反应模式可以作为区分某些疟原虫种的有用预测因子。RDT 中 pLDH 条带的交叉反应性需要进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a400/8733487/9b4e2af43c54/tpmd210532f1.jpg

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