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1.
BMC Res Notes ; 15(1): 271, 2022 Aug 03.
Article in English | MEDLINE | ID: mdl-35922804

ABSTRACT

OBJECTIVE: To perform a molecular screening to detect infections by the mayaro virus and possible coinfections with Chikungunya during an outbreak in the state of Tocantins/Brazil in 2017. RESULTS: Of a total 102 samples analyzed in this study, 6 cases were identified with simultaneous infection between mayaro and chikungunya viruses (5.88%). In these 6 samples, the mean Cycle threshold (Ct) for CHIKV was 26.87 (SD ± 10.54) and for MAYV was 29.58 (SD ± 6.34). The mayaro sequences generated showed 95-100% identity to other Brazilian sequences of this virus and with other MAYV isolates obtained from human and arthropods in different regions of the world. The remaining samples were detected with CHIKV monoinfection (41 cases), DENV monoinfection (50 cases) and coinfection between CHIKV/DENV (5 cases). We did not detect MAYV monoinfections.


Subject(s)
Chikungunya Fever , Chikungunya virus , Coinfection , Dengue , Brazil/epidemiology , Chikungunya Fever/diagnosis , Chikungunya Fever/epidemiology , Chikungunya virus/genetics , Coinfection/epidemiology , Dengue/epidemiology , Disease Outbreaks , Humans
2.
BMC Infect Dis ; 21(1): 704, 2021 Jul 24.
Article in English | MEDLINE | ID: mdl-34303348

ABSTRACT

BACKGROUND: The co-circulation of types of arbovirus in areas where they are endemic increased the risk of outbreaks and limited the diagnostic methods available. Here, we analyze the epidemiological profile of DENV, CHIKV and ZIKV at the serological and molecular level in patients with suspected infection with these arboviruses in the city of Juazeiro do Norte, Ceará, Brazil. METHODS: In 2016, the Central Public Health Laboratory (LACEN) of Juazeiro do Norte received 182 plasma samples from patients who visited health facilities with symptoms compatible with arbovirus infection. The LACEN performed serological tests for detection of IgM/IgG to DENV and CHIKV. They then sent these samples to the Retrovirology Laboratory of the Federal University of São Paulo and Faculty of Medical of the ABC where molecular analyses to confirm the infection by DENV, ZIKV and CHIKV were performed. The prevalence of IgM/IgG antibodies and of infections confirmed by RT-qPCR were presented with 95% confidence interval. RESULTS: In serologic analysis, 125 samples were positive for antibodies against CHIKV and all were positive for antibodies against DENV. A higher prevalence of IgG against CHIKV (63.20% with 95% CI: 45.76-70.56) than against DENV (95.05% with 95% CI: 78.09-98.12) was observed. When the samples were submitted to analysis by RT-qPCR, we observed the following prevalence: mono-infection by ZIKV of 19.23% (95% CI: 14.29-34.82) patients, mono-infection by CHIKV of 3.84% (95% CI: 2.01-5.44) and co-infection with ZIKV and CHIKV of 1.09% (95% CI: 0.89-4.56). CONCLUSION: The serologic and molecular tests performed in this study were effective in analyzing the epidemiological profile of DENV, CHIKV and ZIKV in patients with suspected infection by these arboviruses in the city of Juazeiro do Norte, Ceará/Brazil.


Subject(s)
Antibodies, Viral/blood , Chikungunya Fever/epidemiology , Chikungunya virus/immunology , Dengue Virus/immunology , Dengue/epidemiology , Zika Virus Infection/epidemiology , Zika Virus/immunology , Adult , Brazil/epidemiology , Chikungunya Fever/therapy , Cities/epidemiology , Cross-Sectional Studies , Dengue/therapy , Female , Humans , Immunoglobulin G/blood , Immunoglobulin M/blood , Male , Middle Aged , Molecular Epidemiology , Real-Time Polymerase Chain Reaction , Risk Assessment , Serologic Tests , Zika Virus Infection/therapy
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