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Bartholomeeusen, K.

Publications and source records attributed to Bartholomeeusen, K..

2 recordsLinked to original sources

Equi-depth pooling for standardized and cost-effective Adaptive Immune Receptor Repertoire sequencing (AIRRseq)

Bulk B- and T-cell adaptive immune receptor (BCR/TCR) repertoire sequencing (AIRRseq) enables comprehensive analysis of adaptive immune diversity, but achieving balanced sequencing depth across heterogeneous clinical samples remains a major cost driver. Standard equimolar pooling prior to sequencing disproportionately allocates reads, leading to undersequencing of libraries with high sequence abundance and oversampling of those with few sequences. Here, a quantitative pooling strategy is described in which libraries are pooled based on estimated target-specific unique molecular identifier (UMI) counts rather than library molarity, ensuring a uniform number of supporting reads per target sequence UMI across samples. Libraries were prepared from human RNA using the NEBNext Immune Sequencing (IS) kit and quantified by qPCR during the second amplification (PCR2) step. Deeply sequenced samples from a dengue 1 human infection model (DHIM1) clinical study were used to model the log-linear relationship between PCR2 cycle threshold (Ct) values and detected sequence counts. This model was then applied to a second, independent batch of samples from a dengue 3 human infection model (DHIM3) clinical study to predict UMI abundance and guide equi-depth pooling prior to sequencing. Sequencing of these equi-depth pools demonstrated a near-uniform reads-per-sequence ratio across samples, confirming that this approach achieves balanced depth without oversampling and at reduced cost. Simulations across a range of between-sample UMI-count distributions reflecting real-world sample pools showed that equi-depth pooling is expected to reduce the total number of required sequencing reads by approximately 70% compared with equimolar pooling, with savings increasing as the spread of library sizes grows. Beyond cost efficiency, equi-depth pooling eliminates the complexity-dependent sampling bias inherent to equimolar pooling, ensuring uniform sequencing depth and comparable UMI recovery across small and large libraries. For new workflows or sample types, implementation requires either an existing calibration dataset or a pilot sequencing experiment to establish the relationship between PCR2 Ct values and relative UMI abundance. The equi-depth method thus provides a robust, scalable, and cost-efficient strategy for bulk AIRRseq studies where library sizes vary widely.

bioinformatics↗

Low risk of transmission of prototype and newly emerged Oropouche virus strains by European Culex pipiens, Aedes albopictus, and Anopheles atroparvus mosquitoes

Oropouche virus (OROV) is an emerging arbovirus of growing public health concern, with increasing incidence and geographic spread. Since its discovery in 1955, OROV has caused multiple outbreaks in South and Central America, with a new introduction in Cuba since May 2024. Recent travel-related cases in Europe and the Americas underscore its potential for global dissemination. Assessing vector competence outside endemic regions is critical in the context of global travel and climate change. We evaluated the vector competence of three mosquito species commonly found in Europe--Culex (Cx.) pipiens, Aedes (Ae.) albopictus, and Anopheles (An.) atroparvus--using two OROV strains: the prototype TRVL9760 (1955, Trinidad and Tobago) and a recent isolate OROV-IRCCS-SCDC_1/2024 (2024, imported from Cuba to Italy). Mosquitoes were orally infected and examined at 7- and 14-days post-infection. We assessed infection (body), dissemination (peripheral tissues), and transmission potential (saliva) by measuring infectious virus particles using the gold standard focus-forming assays. Our findings show that Cx. pipiens and An. atroparvus were not susceptible to infection or did not allow transmission with OROV. In Ae. albopictus, low infection rates were observed: 6.7% of mosquitoes showed infection at day 7 with the prototype strain, and 3.1% at day 14 with OROV-IRCCS-SCDC_1/2024. All infected mosquitoes showed viral dissemination, but none had infectious virus in their saliva, indicating low risk for transmission. These results confirm limited vector competence of European mosquito species for OROV and emphasize the importance of continued entomological surveillance to inform future risk assessments.

microbiology↗