Comparative Study between Slide Microscopy and Urine Test in the Diagnosis of <i>Plasmodium falciparum</i> among AMSH Patients, Ekiti State, Nigeria
DOI:
https://doi.org/10.4314/njpar.v45i2.11Keywords:
Plasmodium falciparum, HRP2 diagnostic test, slide microscopy, urine, EkitiAbstract
Malaria is a common disease in the sub-Saharan region of Africa, including Nigeria. It is a dangerous illness caused by the parasite, Plasmodium. This study aimed to determine the efficiency of urine tests compared to slide microscopy using the Giemsa stain in the diagnosis of malaria among students ofAfe Babalola UniversityAdo-Ekiti (ABUAD) who attended a multi-system hospital. This study
aimed to determine simpler methods for easy detection of malaria parasites using urine samples and to compare the efficiency and efficacy of the method with the slide microscopy Giemsa stain among patients of Afe Babalola University AdoEkiti (ABUAD) attending a multi-system hospital. The study involved collecting 200 blood and urine samples from both admitted and outpatient students attending the ABUAD Multisystem Hospital (AMSH). Blood samples were analysed in the laboratory using Giemsa stain, whereas urine samples were analysed using urine malaria test kits, which contain immunochromatographic materials impregnated with monoclonal antibodies against Plasmodium species to detect elevated levels of Histidine Rich Protein-2 (HRP-2). Of the 200 patients diagnosed, blood microscopy revealed that 47 (23.5%) had parasite loads of 1+ and 2+, while 67 (33.5%) and 25 (12.5%) had parasite loads of 3+ and 4+, respectively, and 18 (9%) were negative. The results of blood microscopy showed that more than 90% of the samples were positive for different malaria parasite loads, especially the 3 + category, whereas urine malaria tests (UMT) revealed that only 55% of the samples studied were positive for Plasmodium falciparum. Moderate agreement between the UMT kit and blood smear microscopy was demonstrated using a receiver operating characteristic (ROC). This study suggests that despite the drawbacks of microscopy, it is still the Gold Standard for the detection of P. falciparum and should be used as frequently as feasible in the fight against this deadly disease. However, the urine test kit can be adopted as a method of diagnosing malaria.
References
World Health Organization. (2015). Guidelines for the treatment of malaria. In apps.who.int. World Health Organization. https://apps.who.int/iris/handle/10665/162441
ARoad Map for Malaria Control in Nigeria DRAFT 16. (2009). https://extranet.who.int/countryplanningcycles/sites/default/files/country_docs/Nigeria/nigeria_draft_malaria_strategic_plan_2009-2013.pdf
Benson, J., Phillips, C., Kay, M., Webber, M. T., Ratcliff,A. J., Correa-Velez, I., & Lorimer, M. F. (2013). Low Vitamin B12 Levels among Newly-Arrived Refugees from Bhutan, Iran andAfghanistan:AMulticentre Australian Study. PLoS ONE, 8(2), e57998. https://doi.org/10.1371/journal.pone.0057998
World Malaria Report(2018). http://apps.who.int/iris/bitstream/handle/10665/275867/9789241565653-eng.pdf
White, N. J., Pukrittayakamee, S., Hien, T. T., Faiz, M. A., Mokuolu, O. A., & Dondorp, A. M. (2014). Malaria. The Lancet, 383(9918), 723–735. https://doi.org/10.1016/s0140-6736(13)60024-0
Dhiman, S. (2019). Are malaria elimination efforts on right track? An analysis of gains achieved and challenges ahead. Infectious Diseases of Poverty, 8 (1). https://doi.org/10.1186/s40249-019-0524-x
Aninagyei, E., Tetteh, C. D., Oppong, M., Boye,A., &Acheampong, D. O. (2020). Efficacy ofArtemetherAkinseye et al: Comparative Study between Slide Microscopy and Urine Test Lumefantrine on various Plasmodium falciparum Kelch 13 and Pfmdr1 genes isolated in Ghana. Parasite Epidemiology and Control, 11, e00190. https://doi.org/10.1016/j.parepi.2020.e00190
Kim, S. H., Nam, M.-H., Roh, K. H., Park, H. C., Nam, D. H., Park, G. H., Han, E. T., Klein, T.A., & Lim, C. S. (2008). Evaluation of a rapid diagnostic test specific for Plasmodium vivax. Tropical Medicine & International Health: TM & IH, 13(12), 1495–1500. https://doi.org/10.1111/j.1365-3156.2008.02163.x
Alemu, A., Fuehrer, H.-P., Getnet, G., Kassu, A., Getie, S., &Noedl, H. (2014). Comparison of Giemsa microscopy with nested PCR for the diagnosis of malaria in North Gondar, north-west Ethiopia. Malaria Journal, 13 (1), 174. https://doi.org/10.1186/1475-2875-13-174
Oguonu, T., Shu, E., Ezeonwu, B. U., Lige, B., Derrick, A., Umeh, R. E., &Agbo, E. (2014). The performance evaluation of a urine malaria test (UMT) kit for the diagnosis of malaria in individuals with fever in south-east Nigeria: cross-sectional analytical study. Malaria Journal, 13(1). https://doi.org/10.1186/1475-2875-13-403
Wongsrichanalai, C., Barcus, M. J., Muth, S., Sutamihardja, A., &Wernsdorfer, W. H. (2012). A review of malaria diagnostic tools: microscopy and rapid diagnostic test (RDT). The American Journal of Tropical Medicine and Hygiene, 77(6), 119–127. https://pubmed.ncbi.nlm.nih.gov/18165483/
Cunningham, J., Jones, S., Gatton, M. L., Barnwell, J. W., Cheng, Q., Chiodini, P. L., Glenn, J., Incardona, S., Kosack, C., Luchavez, J., Menard, D., Nhem, S., Oyibo, W., Rees-Channer, R. R., Gonzalez, I., & Bell, D. (2019). A review of the WHO malaria rapid diagnostic test product testing
programme (2008–2018): performance, procurement and policy. Malaria Journal, 18(1). https://doi.org/10.1186/s12936-019-3028-z
Ugah, U. I., Alo, M. N., Owolabi, J. O., Okata-Nwali, O. D., Ekejindu, I. M., Ibeh, N., & Elom, M. O. (2017). Evaluation of the utility value of three diagnostic methods in the detection of malaria parasites in endemic area. Malaria Journal, 16(1). https://doi.org/10.1186/s12936-017-1838-4
Owolabi, J. T. (2020). Geographical Analysis of Green Belt on Urban Climate of Ado-Ekiti, Ekiti state, Nigeria. American Journal of Research Communication, 8(9), 1–1
Daniel, W. W., & Cross, C. L. (1999). Determination of sample size for estimating proportions. Biostatistics: AFoundation forAnalysis in the Health Sciences, 8, 189-190
Rijal, N. (2019). Giemsa Stain: Principle, Procedure, Results. Microbeonline.com; Microbe Online. https://microbeonline.com/giemsa-stain-principle-procedure-and-results/#:~:text=Principle%20of%20Giemsa%20Stain,-
Karki, G. (2019). Giemsa stain: Principle, procedure, result. Online Biology Notes. https://www.onlinebiologynotes.com/giemsa-stain-principle-procedure-result/
Oguonu, T., Shu, E., Ezeonwu, B. U., Lige, B., Derrick, A., Umeh, R. E., &Agbo, E. (2014). The performance evaluation of a urine malaria test (UMT) kit for the diagnosis of malaria in individuals with fever in south-east Nigeria: cross-sectional analytical study. Malaria Journal, 13(1). https://doi.org/10.1186/1475-2875-13-403
Salimi Khorashad,A., Salehi, M., & Roshanravan, B. (2014). The Comparison of Microscopic Method and Rapid Diagnostic Test in Detecting Plasmodium species. International Journal of Infection, 1(3). https://doi.org/10.17795/iji-21441
Nwakanma, Davis C., Gomez‐Escobar, N., Walther, M., Crozier, S., Dubovsky, F., Malkin, E., Locke, E., & Conway, David J. (2009). Quantitative Detection of Plasmodium falciparum DNA in Saliva, Blood, and Urine. The Journal of Infectious Diseases, 199(11), 1567–1574. https://doi.org/10.1086/598856
Mharakurwa, S., Simoloka, C., Thuma, P. E., Shiff, C. J., & Sullivan, D. J. (2006). : PCR Detection of Plasmodium falciparum in human urine and samples. Malaria Journal, 5(1), 103. https://doi.org/10.1186/1475-2875-5-103
Mukkala, A. N., Kwan, J., Lau, R., Harris, D., Kain, D., & Boggild, A. K. (2018). An Update on Malaria Rapid Diagnostic Tests. Current Infectious Disease Reports, 20(12). https://doi.org/10.1007/s11908-018-0655-4
Mathison, B. A., & Pritt, B. S. (2017). Update on malaria diagnostics and test utilization. Journal of Clinical Microbiology, 55(7), 2009–2017. https://doi.org/10.1128/JCM.02562-16
Hopkins, H, Kambale, W., Kamya, M. R., Staedke, S. G., Dorsey, G. & Rosenthal, P. J. (2007). “Comparison of HRP2- and pLDH-based rapid diagnostic tests for malaria with longitudinal follow-up in Kampala, Uganda.” American Journal of Tropical Medicine & Hygiene,76:1092-7.
Stauffer, William M., Cartwright, Charles P., Olson, DouglasA., Juni, B., Taylor, Charlotte M., Bowers, Susan H., Hanson, Kevan L., Rosenblatt, Jon E., & Boulware, David R. (2009). Diagnostic Performance of Rapid Diagnostic Tests versus Blood Smears for Malaria in US Clinical Practice. Clinical Infectious Diseases, 49(6), 908–913. https://doi.org/10.1086/605436
Keating, J., Miller, J. M., Bennett, A., Moonga, H. B., & Eisele, T. P. (2009). Plasmodium falciparum parasite infection prevalence from a household survey in Zambia using microscopy and a rapid diagnostic test: Implications for monitoring and evaluation. Acta Tropica, 112(3), 277–282. https://doi.org/10.1016/j.actatropica.2009.08.011
Cheng, A., & Bell, D. (2016). The precision of rapid diagnostic tests for malaria: In Diagnostic Approach to the Sick Child,
Peter Asaga, M., Hussaini Fatima, A., Amuga, G., Prerna, T., & Philomena, A. (2019). Prevalence of Plasmodium falciparum among Nigerians inAbuja and Central States:AComparativeAnalysis of Sensitivity and Specificity Using Rapid Diagnostic Test and Microscopy as Tools in Management of Malaria. International Journal of Tropical Diseases, 2(1). https://doi.org/10.23937/ijtd-2017/1710014
Michael, W., & Florence, N. (2022). Validity of presumptive diagnosis of malaria among outpatients in a tertiary healthcare facility in Rivers State, Nigeria. Bjmhr.com. http://www.bjmhr.com/download.php?filename=bjmhr_admin/uploads/publish_pdf/148__1477448181-
pdf&split=32&art_map_id=148
Olasehinde, G. I., Oyeka, U. C., Oniha, M. I., Onile-Ere, O.A.,Ayepola, O. O.,Ajayi,A.A., & Egwari, L. O. (2018). Data set on Rapid Diagnostic Tests (RDTs) and microscopy for diagnosing Plasmodium falciparum and Plasmodium vivax. Data in Brief, 20, 503–509. https://doi.org/10.1016/j.dib.2018.08.032
Awosolu, O. B., Yahaya, Z. S., Farah Haziqah, M. T., & Olusi, T. A. (2022). Performance Evaluation of Nested Polymerase Chain Reaction (Nested PCR), Light Microscopy, and Plasmodium falciparum HistidineRich Protein 2 Rapid Diagnostic Test (PfHRP2 RDT) in the Detection of Falciparum Malaria in a HighTransmission Setting in Southwestern Nigeria. Pathogens (Basel, Switzerland), 11(11), 1312. https://doi.org/10.3390/pathogens11111312
Obimakinde, E., Simon-Oke, I., & Osunyemi, O. (2018). The effectiveness of microscopy: Rapid diagnostic test and molecular assay in diagnosing malaria. Journal of Parasitic Diseases: Diagnosis and Therapy, 03(01). https://doi.org/10.4066/2591-7846.1000022
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2024 Nigerian Journal of Parasitology
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.