Author: Marnissi, Boutheina; Khalfaoui, Khouloud; Ebai, Tonge; Marques Souza de Oliveira, Felipe; Ghram, Abdeljelil; Kamaliâ€Moghaddam, Masood; Hmila, Issam
Title: Accurate detection of Newcastle disease virus using proximityâ€dependent DNA aptamer ligation assays Cord-id: venvrjrm Document date: 2021_3_11
ID: venvrjrm
Snippet: Detecting viral antigens at low concentrations in field samples can be crucial for early veterinary diagnostics. Proximity ligation assays (PLAs) in both solution and solidâ€phase formats are widely used for highâ€performance protein detection in medical research. However, the affinity reagents used, which are mainly poly†and monoclonal antibodies, play an important role in the performance of PLAs. Here, we have established the first homogeneous and solidâ€phase proximityâ€dependent DNA a
Document: Detecting viral antigens at low concentrations in field samples can be crucial for early veterinary diagnostics. Proximity ligation assays (PLAs) in both solution and solidâ€phase formats are widely used for highâ€performance protein detection in medical research. However, the affinity reagents used, which are mainly poly†and monoclonal antibodies, play an important role in the performance of PLAs. Here, we have established the first homogeneous and solidâ€phase proximityâ€dependent DNA aptamer ligation assays for rapid and accurate detection of Newcastle disease virus (NDV). NDV is detected by a pair of extended DNA aptamers that, upon binding in proximity to proteins on the envelope of the virus, are joined by enzymatic ligation to form a unique amplicon that can be sensitively detected using realâ€time PCR. The sensitivity, specificity, and reproducibility of the assays were validated using 40 farm samples. The results demonstrated that the developed homogeneous and solidâ€phase PLAs, which use NDVâ€selective DNA aptamers, are more sensitive than the sandwich enzymaticâ€linked aptamer assay (ELAA), and have a comparable sensitivity to realâ€time reverse transcription PCR (rRTâ€PCR) as the gold standard detection method. In addition, the solidâ€phase PLA was shown to have a greater dynamic range with improved lower limit of detection, upper†and lower limit of quantification, and minimal detectable dose as compared with those of ELAA and rRTâ€PCR. The specificity of PLA is shown to be concordant with rRTâ€PCR.
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