Development and validation of a simple and rapid way to generate low volume of plasma to be used in point-of-care HIV virus load technologies

A new point-of-care HIV viral load, mPIMA HIV-1/2 VL, Abbott, USA, has been recently developed. This point-of-care viral load requires no skilled person to run and uses a small plasma volume (50μL). However, obtaining 50μL of plasma can be a challenge in limited resource settings. We validated a sim...

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Veröffentlicht in:The Brazilian journal of infectious diseases 2020-01, Vol.24 (1), p.30-33
Hauptverfasser: Vasconcellos, Isabelle, Mariani, Diana, Azevedo, Marcelo C.V.M. de, Ferreira, Orlando C., Tanuri, Amilcar
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Sprache:eng
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Zusammenfassung:A new point-of-care HIV viral load, mPIMA HIV-1/2 VL, Abbott, USA, has been recently developed. This point-of-care viral load requires no skilled person to run and uses a small plasma volume (50μL). However, obtaining 50μL of plasma can be a challenge in limited resource settings. We validated a simple and easy method to obtain enough amount of plasma to run a point-of-care viral load. The study utilized 149 specimens from patients failing antiretroviral therapy. At least 250μL of whole blood was collected in a microtube/EDTA from fingerstick (fs-plasma) and immediately centrifuged. Parallel collection of venous blood to obtain plasma (vp-plasma) was used to compare performance in a point-of-care viral load assay and in methodology used in centralized laboratories Abbott M2000, Abbott, USA. The procedure for plasma collection takes less than 10min and in 94% of the cases only one fingerstick was sufficient to collect at least 250μL of blood. The Pearson correlation coefficient value for vp-plasma versus fs-plasma ran on mPIMA was 0.990. The Bland–Altman mean difference (md) for this comparison were virtually zero (md=−0.001) with limits of agreement between −0.225 and 0.223. In addition, the Pearson correlation coefficient value for fs-plasma in mPIMA versus vp-plasma in Abbott M2000 was 0.948 for values above the mPIMA limit of quantification (LoQ; from 800 to 1,000,000copies/mL). These results validate this simple plasma isolation method capable to be implemented in low resource countries where point-of-care decentralization is deeply needed.
ISSN:1413-8670
1678-4391
1678-4391
DOI:10.1016/j.bjid.2019.10.010