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Method for Malaria Diagnosis Based on Extractions of Samples Using Non-Invasive Techniques: An Opportunity for the Nursing Clinical Practice

Abstract

Malaria has been for millennia one of the best known and most destructive diseases affecting humans. Its high impact has aroused great interest for the development of new effective and reliable diagnostic techniques. Recently it has been recently published that hairs from mammal hosts are able to capture, hold and finally remove foreign DNA sequences of parasites. The aim of this study was to check if () DNA remains stable in blood samples deposited in Whatman paper after suffering different transport and storage conditions, and to compare the sensitivity of these results with those offered by thick a smear and Rapid Diagnostic Test, and besides to examine whether DNA would be detected and quantified by Real time quantitative PCR (qPCR) from hairs of people with different types of malaria. Histidine Repeat Protein II (pHRP-II) antigen detection and DNA were detected in 18 of 19 dry blood samples adhered to Whatman paper (94.74%), besides, DNA was also detected in seven out of 19 hair samples analyzed (36.84%), remaining stable until analysis for several months under the exposure to different environmental conditions. Although the sensitivity of PCR for the diagnosis of malaria in hair samples is not as high as blood analysis, the study of DNA presence in blood and hair could constitute a complementary tool with numerous advantages in sample collection, transport and storage. We suggest that the method could be also applied to medical, forensic and paleo-parasitological diagnosis, not only for malaria but also for searching many other pathogens in hair samples.

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References
1.
Kumar R, Verma A, Shrivas S, Thota P, Singh M, Rajasubramaniam S . First successful field evaluation of new, one-minute haemozoin-based malaria diagnostic device. EClinicalMedicine. 2020; 22:100347. PMC: 7256309. DOI: 10.1016/j.eclinm.2020.100347. View

2.
Schindler T, Robaina T, Sax J, Bieri J, Mpina M, Gondwe L . Molecular monitoring of the diversity of human pathogenic malaria species in blood donations on Bioko Island, Equatorial Guinea. Malar J. 2019; 18(1):9. PMC: 6332537. DOI: 10.1186/s12936-019-2639-8. View

3.
Rodgers M, Popper S, Wirth D . Amplification of kinetoplast DNA as a tool in the detection and diagnosis of Leishmania. Exp Parasitol. 1990; 71(3):267-75. DOI: 10.1016/0014-4894(90)90031-7. View

4.
Gilbert M, Menez L, Janaway R, Tobin D, Cooper A, Wilson A . Resistance of degraded hair shafts to contaminant DNA. Forensic Sci Int. 2005; 156(2-3):208-12. DOI: 10.1016/j.forsciint.2005.02.021. View

5.
Hwang J, Jaroensuk J, Leimanis M, Russell B, McGready R, Day N . Long-term storage limits PCR-based analyses of malaria parasites in archival dried blood spots. Malar J. 2012; 11:339. PMC: 3507721. DOI: 10.1186/1475-2875-11-339. View