Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Serological Surveillance Development for Tropical Infectious Diseases Using Simultaneous Microsphere-Based Multiplex Assays and Finite Mixture Models

Domain:

healthcare

Record type:

dataset
Creator:
YosSatSamMat
Host:avatar

Background

A strategy to combat infectious diseases, including neglected tropical diseases (NTDs), will depend on the development of reliable epidemiological surveillance methods. To establish a simple and practical seroprevalence detection system, we developed a microsphere-based multiplex immunoassay system and evaluated utility using samples obtained in Kenya.

Methods

We developed a microsphere-based immuno-assay system to simultaneously measure the individual levels of plasma antibody (IgG) against 8 antigens derived from 6 pathogens: Entamoeba histolytica (C-IgL), Leishmania donovani (KRP42), Toxoplasma gondii (SAG1), Wuchereria bancrofti (SXP1), HIV (gag, gp120 and gp41), and Vibrio cholerae (cholera toxin). The assay system was validated using appropriate control samples. The assay system was applied for 3411 blood samples collected from the general population randomly selected from two health and demographic surveillance system (HDSS) cohorts in the coastal and western regions of Kenya. The immunoassay values distribution for each antigen was mathematically defined by a finite mixture model, and cut-off values were optimized.

Findings

Sensitivities and specificities for each antigen ranged between 71 and 100%. Seroprevalences for each pathogen from the Kwale and Mbita HDSS sites (respectively) were as follows: HIV, 3.0% and 20.1%; L. donovani, 12.6% and 17.3%; E. histolytica, 12.8% and 16.6%; and T. gondii, 30.9% and 28.2%. Seroprevalences of W. bancrofti and V. cholerae showed relatively high figures, especially among children. The results might be affected by immunological cross reactions between W. bancrofti-SXP1 and other parasitic infections; and cholera toxin and the enterotoxigenic E. coli (ETEC), respectively.

Interpretation

A microsphere-based multi-serological assay system can provide an opportunity to comprehensively grasp epidemiological features for NTDs. By adding pathogens and antigens of interest, optimized made-to-order high-quality programs can be established to utilize limited resources to effectively control NTDs in Africa.

Visit

figshare.com

Languages

NancereUkwuani-Aboh-Ndoni

Tags

Biological SciencesepidemiologyInfectious disease epidemiologyInfectious diseasesParasitic diseasesTropical diseasesneglected tropical diseasesinfectiousdiseasessimultaneous+4

Licenses

CC BY 4.0

Similar

Contextual Evaluation of Large Language Models for Classifying Tropical and Infectious DiseasesDevelopment of a microsphere-based immunoassay for serological detection of african horse sickness virus and comparison with other diagnostic techniquesSACIDS – Southern African Centre for Infectious Diseases and Surveillance – Africa Centre of Excellence for Infectious Diseases of Humans and AnimalsNanopore Sequencing for Infectious Diseases Surveillance and Diagnostics in Africa: a Scoping ReviewTypology of Health Districts Based on Data from Ten Infectious Diseases Under Surveillance in SenegalStudy of the Humoral Immune Response towards HCV Genotype 4 Using a Bead-Based Multiplex Serological Assay

Contextual Evaluation of Large Language Models for Classifying Tropical and Infectious Diseases

While large language models (LLMs) have shown promise for medical question answering, there is limit

Development of a microsphere-based immunoassay for serological detection of african horse sickness virus and comparison with other diagnostic techniques

African horse sickness (AHS) is a viral disease that causes high morbidity and mortal

SACIDS – Southern African Centre for Infectious Diseases and Surveillance – Africa Centre of Excellence for Infectious Diseases of Humans and Animals

Nanopore Sequencing for Infectious Diseases Surveillance and Diagnostics in Africa: a Scoping Review

This scoping review will describe the existing literature on the use of nanopore sequencing for huma

Typology of Health Districts Based on Data from Ten Infectious Diseases Under Surveillance in Senegal

The aim of this work is to construct a typology of health districts in Senegal based on the distribu

Study of the Humoral Immune Response towards HCV Genotype 4 Using a Bead-Based Multiplex Serological Assay

Hepatitis C is one of the leading causes of hepatocellular carcinoma and remains at a high prevalenc