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Ault, A.

Publications and source records attributed to Ault, A..

3 recordsLinked to original sources

A solid-state heater-imager for quantitative evaluation of colorimetric isothermal nucleic acid amplification on paper

Maintaining precise isothermal conditions in portable nucleic acid amplification tests (NAATs) is critical for reproducible results but remains challenging with conventional single-sided thin-film heaters, which exhibit temperature gradients and strong dependence on ambient conditions. To close this gap, we engineered ThermiQuant VitroMini, a dual-sided heater design that achieves volumetric-level temperature uniformity using thin-film heaters while preserving optical transparency for real-time colorimetric loop-mediated isothermal amplification (LAMP) analysis on microfluidic paper-based analytical devices ({micro}PADs). The device integrates two independently regulated indium tin oxide (ITO) heaters (8 {Omega} each) controlled by independent proportional-integral-derivative (PID) algorithms. Heaters were evaluated under controlled ambient environments of 4 {degrees}C (refrigerated), 23 {degrees}C (room temperature), and 50 {degrees}C (oven). Analytical tests were performed using a colorimetric LAMP assay targeting the SARS-CoV-2 orf7ab gene on {micro}PADs preloaded with dried LAMP reagents, with time-lapse images (30 seconds interval) analyzed via Amplimetrics software. VitroMini maintained 65 {+/-} 0.5 {degrees}C across 4 to 50 {degrees}C ambient conditions and achieved a limit of detection of 34 copies/reaction (4.5 copies/{micro}L) and limit of quantification of 1000 copies/reaction (133 copies/{micro}L), with quantification time (Tq) linearly correlated with log10 DNA concentration. Dual-sided heating eliminated temperature bias, condensation artifacts, and ambient-dependent variability while preserving optical transparency for real-time quantitative LAMP reaction. ThermiQuant VitroMini bridges the gap between benchtop volumetric heaters and portable diagnostic devices, offering a compact, low-power platform for quantitative colorimetric molecular analysis on paper with potential for decentralized and field-deployable applications.

bioengineering↗

Detection of five viruses commonly implicated with Bovine Respiratory Disease using loop-mediated isothermal amplification

Herein, we present novel quantitative loop-mediated isothermal amplification (qLAMP) and reverse-transcription qLAMP (RT-qLAMP) assays for the detection of five viruses commonly implicated with the onset and progression of bovine respiratory disease (BRD): Bovine Alphaherpesvirus Type 1 (BHV-1), Bovine Adenovirus Type 3 (BAV-3), Bovine Respiratory Syncytial Virus (BRSV), Bovine Viral Diarrhea Virus Type 1 (BVDV-1), and Bovine Parainfluenza Virus Type 3 (BPIV-3). Using contrived samples spiked with whole viruses, we found that our extraction-free assays have limits of detection between 30 and 1,057 copies per reaction (1.8% final sample concentration) with minimal sample processing. Using dual-tipped swabs and 1.4 mL resuspension volumes, these limits of detection are on the order of 2 x 105 copies per swab for BAV-3 and BHV-1 and between 6.31 x 106 to 8.22 x 106 copies per swab in the case of BPIV-3, BRSV, and BVDV-1. Analytical sensitivities ranged from 73 - 100% and analytical specificities ranged from 90 - 100%. Additionally, we introduced a streamlined pipeline to minimize the experimental workload to design, screen, select, and characterize LAMP performance for developing assays. The assays targeting these BRD viruses can be utilized to develop colorimetric LAMP assays that enable the sensitive and specific detection of these viruses chute side to aid in diagnosing and treating BRD. The associated development pipeline enables more rapid development of LAMP-based diagnostic tools targeting emerging pathogens.

bioengineering↗

Development and Evaluation of Novel Quantitative PCR (qPCR) and Loop-Mediated Isothermal Amplification (LAMP) Assays for Bovine Adenovirus Type 7

Herein, we report the development of molecular assays for the specific detection of bovine adenovirus type 7 (BAV-7), a prevalent pathogen associated with bovine respiratory disease (BRD). To overcome the limitations of the current diagnostic methods, we developed and optimized a TaqMan quantitative polymerase chain reaction (qPCR) assay with a limit of detection (LOD) of 50 copies per reaction (10 copies/{micro}L) and 100% analytical specificity, showing no cross-reactivity with nine other viral pathogens commonly linked to BRD. Additionally, we designed a fluorescent quantitative loop-mediated isothermal amplification (qLAMP) assay demonstrating equivalent LOD and specificity. Both assays were evaluated using 24 bovine nasal swabs from BRD animals, revealing a 92% agreement between qPCR and qLAMP results. These assays provide powerful tools for advancing our understanding of BAV-7 epidemiology and improving disease management strategies. The qLAMP assay, with its rapid and isothermal amplification, presents potential for future development as a field-deployable diagnostic tool to enable timely detection of BAV-7 in cattle.

bioengineering↗