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Dimitrova, K.

Publications and source records attributed to Dimitrova, K..

2 recordsLinked to original sources

Molecular Identification and Characterization of mobatvirus (Hantaviridae) in Lao PDR

Hantavirids, specifically the members within the genus Orthohantavirus, represent a significant global public health threat, with bat-associated lineages challenging traditional reservoir paradigms. To investigate the genetic diversity of hantavirids in Southeast Asia, we conducted an expanded surveillance program in Lao PDR from May 2023 to October 2025 in bat populations and wild animals from local wet markets. Using molecular screening and deep sequencing to characterize hantavirids from bat populations and wild animals from local wet markets, we identified 20 positive samples across four bat species, recovering coding-complete genomes for multiple novel variants. Phylogenetic analysis confirmed that these viruses form a monophyletic group within Mobatvirus, resolving into two major subclades. The first subclade clustered with Quezon and Robina viruses found in fruit-eating bats. The second subclade further split into two lineages corresponding to Thakrong and Xuan Son viruses, which are associated with trident and leaf-nosed bats, respectively. Despite the strong host specificity observed, the detection of these viruses in a wet market, a critical interface for human-wildlife contact, indicates a potential zoonotic risk. These findings significantly expand the known diversity of mobatviruses in Laos and highlight the urgent need for serological surveillance in at-risk human populations to assess the potential for spillover.

microbiology↗

An integrative approach for profiling antibody responses in bats to human pathogens

Serological analyses are a fundamental tool for identifying infections by a wide range of pathogens. They offer a current overview of pathogen prevalence and insight into past infections. This is particularly relevant for bats, given their high capacity to tolerate pathogens and their role as reservoirs of zoonotic diseases. At present, serological studies in bats have predominantly employed traditional techniques such as enzyme-linked immunosorbent assay (ELISA). However, these techniques have several limitations, including low throughput and the lack of bat-specific detection antibodies. To address these limitations, we developed an integrative approach for systemic serological analyses based on microarray technology, which enables the simultaneous detection of bat IgG antibodies against >190 human pathogens (viruses, bacteria, protists). The results of our analyses demonstrated an antibody response in bats targeting multiple epitopes from different pathogens, thereby proving the methods high-throughput capability. Furthermore, this approach does not rely on the use of IgG detection reagents, thereby allowing for its application to a diverse range of bat species. This assay offers insights into the infections of bats with pathogens, thereby enhancing our comprehension of zoonotic disease dynamics and facilitating targeted pathogen surveillance.

immunology↗