Global and Tropical Health Division, Menzies School of Health Research, Charles Darwin University, Darwin, PO Box 41096, Casuarina, NT, 0810, Australia.
Infectious Diseases Society Kota Kinabalu Sabah-Menzies School of Health Research Clinical Research Unit, Kota Kinabalu, Sabah, Malaysia.
Sci Rep. 2023 Mar 23;13(1):4760. doi: 10.1038/s41598-023-31839-7.
Plasmodium knowlesi is the major cause of zoonotic malaria in Southeast Asia. Rapid and accurate diagnosis enables effective clinical management. A novel malaria diagnostic tool, Gazelle (Hemex Health, USA) detects haemozoin, a by-product of haem metabolism found in all Plasmodium infections. A pilot phase refined the Gazelle haemozoin identification algorithm, with the algorithm then tested against reference PCR in a larger cohort of patients with P. knowlesi mono-infections and febrile malaria-negative controls. Limit-of-detection analysis was conducted on a subset of P. knowlesi samples serially diluted with non-infected whole blood. The pilot phase of 40 P. knowlesi samples demonstrated 92.5% test sensitivity. P. knowlesi-infected patients (n = 203) and febrile controls (n = 44) were subsequently enrolled. Sensitivity and specificity of the Gazelle against reference PCR were 94.6% (95% CI 90.5-97.3%) and 100% (95% CI 92.0-100%) respectively. Positive and negative predictive values were 100% and 98.8%, respectively. In those tested before antimalarial treatment (n = 143), test sensitivity was 96.5% (95% CI 92.0-98.9%). Sensitivity for samples with ≤ 200 parasites/µL (n = 26) was 84.6% (95% CI 65.1-95.6%), with the lowest parasitaemia detected at 18/µL. Limit-of-detection (n = 20) was 33 parasites/µL (95% CI 16-65%). The Gazelle device has the potential for rapid, sensitive detection of P. knowlesi infections in endemic areas.
卵形疟原虫是东南亚动物源性疟疾的主要病原体。快速准确的诊断可以实现有效的临床管理。一种新型疟疾诊断工具 Gazelle(美国 Hemex Health 公司)可检测出所有疟原虫感染中存在的血红素代谢副产物——疟原虫血红素。该工具的研发经历了一个优化算法的初始阶段,然后将优化后的算法与参考聚合酶链式反应(PCR)检测法在更大的卵形疟原虫单感染患者队列和无疟疾发热对照组中进行了对比测试。通过对一组用未感染全血进行系列稀释的卵形疟原虫样本进行了检测限分析。在最初的 40 例卵形疟原虫样本的试点阶段,该工具的检测敏感性为 92.5%。随后纳入了 203 例卵形疟原虫感染患者和 44 例发热对照组患者。Gazelle 检测法与参考 PCR 检测法相比,其敏感性和特异性分别为 94.6%(95%置信区间 90.5-97.3%)和 100%(95%置信区间 92.0-100%)。阳性和阴性预测值分别为 100%和 98.8%。在接受抗疟治疗前进行检测的 143 例患者中,检测敏感性为 96.5%(95%置信区间 92.0-98.9%)。对于载量≤200 个/μL 的样本(n=26),敏感性为 84.6%(95%置信区间 65.1-95.6%),最低检测到的寄生虫血症为 18/μL。检测限(n=20)为 33 个/μL(95%置信区间 16-65%)。该工具在流行地区有潜力实现对卵形疟原虫感染的快速、敏感检测。