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Development of a Simple Dipstick Assay for Operational Monitoring of DDT. | LitMetric

AI Article Synopsis

  • - The study focuses on improving the control of visceral leishmaniasis (VL) in India by developing a simple, affordable kit for monitoring DDT insecticide spraying quality, as current methods are inadequate.
  • - DDT quantification involves measuring released chloride from DDT through alkaline hydrolysis, using Quantab detection strips; the new method shows strong correlation with traditional HPLC analysis for field samples.
  • - This dipstick assay allows field operatives in low- and middle-income countries to easily monitor DDT levels, thereby enhancing the effectiveness of indoor residual spraying (IRS) for VL control.

Article Abstract

Background: Indoor residual spraying (IRS) of DDT is used to control visceral leishmaniasis (VL) in India. However, the quality of spraying is severely compromised by a lack of affordable field assays to monitor target doses of insecticide. Our aim was to develop a simple DDT insecticide quantification kit (IQK) for monitoring DDT levels in an operational setting.

Methodology/ Principle Findings: DDT quantification was based on the stoichiometric release of chloride from DDT by alkaline hydrolysis and detection of the released ion using Quantab chloride detection strips. The assay was specific for insecticidal p,p`-DDT (LoQ = 0.082 g/m2). Bostik discs were effective in post spray wall sampling, extracting 25-70% of active ingredient depending on surface. Residual DDT was sampled from walls in Bihar state in India using Bostik adhesive discs and DDT concentrations (g p,p`-DDT/m2) were determined using IQK and HPLC (n = 1964 field samples). Analysis of 161 Bostik samples (pooled sample pairs) by IQK and HPLC produced excellent correlation (R2 = 0.96; Bland-Altman bias = -0.0038). IQK analysis of the remaining field samples matched HPLC data in identifying households that had been under sprayed, in range or over sprayed.

Interpretation: A simple dipstick assay has been developed for monitoring DDT spraying that gives comparable results to HPLC. By making laboratory-based analysis of DDT dosing accessible to field operatives, routine monitoring of DDT levels can be promoted in low- and middle- income countries to maximise the effectiveness of IRS.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4711890PMC
http://dx.doi.org/10.1371/journal.pntd.0004324DOI Listing

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