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Review
. 2025 Mar 5.
doi: 10.1007/s12033-025-01385-w. Online ahead of print.

Evolving Landscape of Emerging Virus Diagnosis: Challenges and Innovations

Affiliations
Review

Evolving Landscape of Emerging Virus Diagnosis: Challenges and Innovations

Anoop Kumar et al. Mol Biotechnol. .

Abstract

Emerging and re-emerging viruses (like Spanish flu, SARS-CoV-2, etc.) have substantially impacted global public health since the early twentieth century. These outbreaks are unpredictable and novel viruses are difficult to understand due to emerging variations. Advanced virology and diagnostic technologies have revolutionized viral diagnostics, enabling accurate early identification and successful treatment and containment. Next-generation sequencing (NGS) technologies, such as metagenomics and whole-genome sequencing, have played a crucial role in the detection and monitoring of emerging viruses, such as SARS-CoV-2 and its variants. Advanced diagnostic methods, such as digital PCR, CRISPR-based tools, and serological techniques like ELISA, enhance viral detection's sensitivity, specificity, and speed. Research has shown that innovations such as lateral flow immunoassays, biosensors, and aptamers have the potential to significantly enhance diagnostic accuracy in various fields. The integration of AI in diagnostics aids researchers in understanding viral evolution and outbreak management, offering new avenues for rapid response. This review aims to examine the latest advancements in virus diagnosis technologies, identify unresolved accuracy and detection issues, and discuss emerging ideas that are transforming the future of viral diagnostics. It is important to improve early identification, rendering the system more cost-effective and adaptable to new viral threats.

Keywords: Digital PCR; Emerging viruses; Molecular diagnostics; Viral diagnosis; Viral pandemics.

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Conflict of interest statement

Declarations. Conflict of interest: There is no conflict of interest among the authors.

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