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Updated: Aug 11, 2026

Multiplexed Isothermal Amplification Based Diagnostic Platform to Detect Zika, Chikungunya, and Dengue 1
Published on: March 13, 2018
Decoding dengue virus dynamics in central Karnataka through molecular epidemiology, Phylogenetics, and PCA-based
Mallikarjun Koppad1, Santhosh Kogaluru Shivakumaraswamy1, Puneeth Thaduru Goolappa2
1Virus Research and Diagnostic Laboratory (VRDL), Department of Microbiology, Shimoga Institute of Medical Sciences (SIMS), Shivamogga, Karnataka, India.
Background:
The dengue virus (DENV) is an important arboviral pathogen that causes dengue fever in humans. It has become a hyperendemic disease in India due to the circulation of multiple serotypes. Molecular surveillance and characterization of DENV are essential to monitor the serotypes and predict outbreaks.
Objectives:
The present study was designed to investigate the transmission of DENV serotypes and identification of circulating strains and the molecular epidemiology surveillance in central Karnataka.
Methods:
Samples from DENV-suspected patients were tested for the dengue NS1 antigen. The positive samples were subjected for serotyping and a subset was selected for gene amplification and sequencing to determine the genotypes. The collective clinical data record of patients was opted for principal component analysis (PCA) and investigative clustering investigations.
Results:
Among 4,409 samples, seropositive cases and molecular detection rate were 26.2% (1,156) and 74.6% (1,123), respectively. Serotyping results showed that DENV-2 (79.6%) was the most predominant serotype, followed by DENV-3 (10.6%) and DENV-1 (4.4%). Co-infection with multiple dengue serotypes was identified in 5.2% cases. According to phylogeny, DENV-1 serotype identified in this study belonged to genotype I, DENV-2 to genotype II (cosmopolitan), and DENV-3 to genotype III. The K-means of PCA suggests the patient's dataset were grouped in the three clusters with a few anomalies.
Conclusion:
This study reports the circulation of three dengue serotypes and concurrent infections in Central Karnataka. This outcome provides baseline data for continuous molecular surveillance to predict future outbreaks and improve control measures.
