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Published on: September 30, 2021
Serological assessment of pediatric parasite exposure in two Senegalese districts using multiplex serology
Helena Brazal Monzó1, Santiago Rayment Gomez2, Doudou Sow3
1Department of Infection Biology, London School of Hygiene and Tropical Medicine, Keppel Street, London, WC1E 7HT, UK.
Insights
Pediatric parasitic infections in Senegal show significant protozoan exposure, particularly Giardia duodenalis. Integrated control strategies need re-evaluation, focusing on hygiene and water access, as helminth prevalence is low.
Area of Science:
- Infectious Diseases
- Parasitology
- Public Health
Background:
- Pediatric parasitic diseases cause significant morbidity and mortality globally.
- Co-infections with multiple parasites are common in endemic regions, presenting challenges and opportunities for control.
- Integrated control strategies are crucial for managing co-existing parasitic infections in children.
Purpose of the Study:
- To conduct a serological assessment of exposure to multiple parasitic infections in children aged 1-14 years in Saraya and Diourbel districts, Senegal.
- To identify risk factors associated with parasitic infection seropositivity.
- To inform the development of enhanced integrated control strategies for pediatric parasitic diseases.
Main Methods:
- Analysis of 883 dried blood spot samples from children in two Senegalese districts.
- Utilized a multiplex bead-based immunoassay to quantify IgG antibodies against Plasmodium falciparum, helminths, and intestinal protozoa.
- Employed multivariable logistic regression to identify risk factors for seropositivity.
Main Results:
- Seroprevalence of recent Plasmodium falciparum (malaria) exposure was 11%, with 42% historical exposure. Helminth seroprevalence ranged from 0.1% to 7.2%.
- Cryptosporidium parvum and Giardia duodenalis seroprevalence were 19.0% and 7.4%, respectively. Co-exposures to malaria and other parasites ranged from 9.4% to 18.0%.
- Risk factors included rare handwashing, proximity to water sources, and frequent contact with waterbodies. School-aged children had higher P. falciparum and S. stercoralis seroprevalence, while pre-school children had higher G. duodenalis seroprevalence.
Conclusions:
- While seasonal malaria chemoprevention is suitable, the low helminth seroprevalence contrasts with substantial protozoan exposure.
- Current integrated interventions may require re-evaluation and enhancement, particularly for intestinal protozoa.
- Hygiene practices and water access are critical factors influencing parasitic infection risk in children.
Abstract:
Although pediatric parasitic diseases cause significant morbidity and mortality in regions with high rates of co-infection, this overlap may offer opportunities for integrated control strategies. This study aimed at a serological assessment of exposure to multiple parasitic infections among children aged 1-14 years in two Senegalese districts, Saraya (Kédougou Region) and Diourbel (Diourbel Region), to inform integrated control strategies. We analysed 883 dried blood spot samples. A multiplex bead-based immunoassay quantified IgG antibody against Plasmodium falciparum, helminths (Necator americanus, Schistosoma mansoni, Strongyloides stercoralis, Taenia solium), and intestinal protozoa (Cryptosporidium parvum, Giardia duodenalis) as proxies for single- and multiple-pathogen exposure. Multivariable logistic regression identified risk factors for seropositivity. Recent malaria exposure was identified in 11% of children, while 42% showed evidence of historical exposure. Helminth seroprevalence ranged between 0.1% and 7.2%, whereas Cryptosporidium parvum and Giardia duodenalis seroprevalence values were 19.0% and 7.4%, respectively. Co-exposures to malaria and other parasites ranged from 9.4% to 18.0%. School-aged children exhibited higher seroprevalence rates for historical exposure to P. falciparum and S. stercoralis compared to pre-school children, while G. duodenalis was more seroprevalent in pre-school children. Saraya exhibited higher seroprevalence for historical P. falciparum and G. duodenalis exposure. Rare/never handwashing before meals, shorter travel time to a water source (< 10 min, likely reflecting residence near shared or surface water rather than improved household taps), and frequent contact with any waterbodies (daily/weekly) were associated with higher odds of parasite seropositivity. While seasonal malaria chemoprevention appears suitable, the low helminth seroprevalence coupled with substantial protozoan exposure suggests that current integrated interventions may require re-evaluation and enhancement.
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