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Designing Sandwich ELISA with Broadly Reactive Anti-Nucleocapsid Monoclonal Antibodies to Detect Bat-Borne Merbecoviruses

Viruses. 2025-06; 
Kong Yen Liew, Yaju Wang, Sneha Sree Mullapudi, Dinah Binte Aziz, Wenjie Fan, Min Luo, Paul Anantharajah Tambyah, Yee-Joo Tan
Products/Services Used Details Operation
Gene Synthesis The N genes of bat CoVs, RaTG13-CoV, BM48-CoV, HKU4-CoV, HKU5-CoV, HKU25-CoV, HKU5-CoV-2, SC2013-CoV, HKU9-CoV and CD35-CoV were codon-optimized, generated by gene synthesis (Bio Basic Asia Pacific or Genscript, Singapore) and subcloned into flag-tagged mammalian expression vector. Get A Quote
Codon Optimization Get A Quote
PCR Cloning and Subcloning Get A Quote

摘要

At least three betacoronaviruses have spilled over from bats to humans and caused severe diseases, highlighting the threat of zoonotic transmission. Thus, it is important to enhance surveillance capabilities by developing tools capable of detecting a broad spectrum of bat-borne betacoronaviruses. Three monoclonal antibodies (mAbs) targeting the nucleocapsid (N) protein were generated using recombinant N proteins from severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) and Middle East Respiratory Syndrome Coronavirus (MERS-CoV). The cross-reactivities of these mAbs were evaluated against a panel of betacoronaviruses. Sandwich ELISAs (sELISAs) were subsequently developed to detect bat-borne betacoronavir... More

关键词

bat-borne viruses; betacoronavirus; monoclonal antibody; nucleocapsid protein; sandwich ELISA; zoonotic surveillance.