PubMed HealthSearch

Biomedical subjects

Marta Giovanetti

Publications and source records attributed to Marta Giovanetti.

3 recordsLinked to original sources

Nanopore Sequencing for Chikungunya Virus: Principles and Application.

Nanopore sequencing is transforming viral genomics through real-time, portable, long-read analysis of RNA and DNA. Unlike traditional short-read platforms, it detects nucleotide sequences by measuring ionic current changes as nucleic acids pass through nanoscale pores, enabling direct single-molecule sequencing and base modification detection. Its simplicity, flexibility, and capacity for ultra-long reads make it ideal for resolving complex genomic regions, structural variants, and full viral genomes. These advantages have accelerated its use in pathogen surveillance and outbreak response, especially in resource-limited settings. For chikungunya virus (CHIKV), nanopore sequencing allows rapid, culture-independent recovery of complete genomes from clinical and vector samples, enabling real-time tracking of viral diversity, evolution, and spread. Experiences from Ebola, Zika, and COVID-19 have demonstrated the power of portable sequencing, now applied to CHIKV monitoring. Advances in tools such as Guppy, Dorado, Minimap2, and Medaka enhance read quality, consensus accuracy, and downstream analyses. Despite challenges in basecalling and error correction, robust quality control pipelines ensure reliable results. Ongoing improvements in chemistry, flow cell design, and machine learning will further enhance fidelity and throughput, establishing nanopore sequencing as a cornerstone of CHIKV genomic surveillance and epidemic preparedness.

Chikungunya virus

Integrated Seroprevalence and Genome-Based Study of SARS-CoV-2 Viral Strains in N'Djamena: Insights Into Chad's COVID-19 Epicenter.

The COVID-19 epidemic has shown regional variations in transmission and outcomes. As a primary hotspot in Chad, N'Djamena is crucial for comprehensive epidemiological investigation. Our study employed two methodologies: seroprevalence data collection and whole-genome sequencing of SARS-CoV-2 strains. This dual approach assessed population exposure and virus genetic diversity. Seroprevalence data indicated broader exposure than confirmed cases suggested, and genome sequencing identified multiple strains, including globally recognized variants of concern. Integrating these data provided insights into transmission dynamics, potential herd immunity thresholds, and the impact of specific variants on disease progression. Our findings underscore the importance of integrated, multidisciplinary research in infectious disease epidemiology and inform targeted public health strategies, including social measures and vaccination, to combat infectious diseases in N'Djamena.

Humans

Outbreak of Enterovirus D68 in Young Children, Brescia, Italy, August to November 2024.

Enterovirus D68 (EV-D68) is responsible for a plethora of clinical manifestations ranging from asymptomatic infections to severe respiratory symptoms and neurological disorders. EV-D68 was first detected in children with pneumonia in 1962 and, from then, only sporadic cases were reported until 2014, when outbreaks were notified across the world. After the withdrawal of preventive measures against SARS-CoV-2, a significant increase in EV-D68 infections has been reported in 2021-2022. A surveillance program to evaluate the incidence of enterovirus/rhinovirus (EV/RV) infections was implemented at the Brescia Civic Hospital, Italy. Fifty-five EV/RV-positive respiratory samples, belonging to pediatric patients, were subjected to NGS. We observed that 61.8% of samples were positive for EV, with EV-D68 as the most prevalent genotype predominantly detected between August and November 2024. Phylogenetic analysis revealed that EV-D68 sequences formed two monophyletic clades corresponding to the A2 and B3 lineages, highlighting their recent introduction in Italy. Interestingly, 40% of pediatric EV-D68 infections were detected with at least one other EV/RV. Our study highlights the crucial role played by genomic surveillance of respiratory infections to monitor the circulation of emerging and re-emerging viruses, as well as their evolution. This will be fundamental to enable prompt intervention strategies.

Humans