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Derveni, M.

Publications and source records attributed to Derveni, M..

2 recordsLinked to original sources

Cross-Neutralizing Monoclonal Antibodies with Broad Activity Against Human and Bat-Derived SARS-Related Coronaviruses

Effective therapeutics for severe cases of SARS-CoV-2 are still needed. As new variants of concern emerged an increase in hospitalizations was observed, especially in non-vaccinated individuals, immunocompromised individuals and the elderly, whereby treatment options became challenging. Several monoclonal antibodies (mAb) are being evaluated for approval due to their ability to neutralize the virus. Here, we report monoclonal antibodies targeting the Spike (S) with a strong neutralization profile against lentiviral and VSV pseudotypes displaying the Spikes of SARS-CoV-1, SARS-CoV-2 and variants of concern, in addition to two bat coronaviruses. We found several mAbs that were able to bind and neutralize a broad set of variants, with one mAb able to neutralize SARS-CoV-1, SARS-CoV-2, RaTG13 and WIV16. Their binding affinities were also characterized, and several mAbs were in the picomolar range against different variants. These results indicate that their use as a cocktail of monoclonal antibodies to treat patients infected with variants associated with severe disease and immune escape can be explored as an option. Furthermore, the cross reactivity observed by one mAb may reveal further insight into vulnerable portions of the Spike protein, which may become valuable future targets.

microbiology↗

Serological evidence of high pathogenicity virus infection in Eidolon helvum fruit bats in Nigeria

The Eidolon helvum fruit bat is the most widely distributed fruit bat in Africa and is known to be a reservoir for several pathogenic viruses that can cause disease in humans. To assess the risk of zoonotic spillover, we conducted a serological survey of 304 serum samples from E. helvum bats that were captured for human consumption in Makurdi, Nigeria. Using pseudotyped viruses, we screened the samples for neutralising antibodies against viruses from the Coronaviridae, Filoviridae, Orthomyxoviridae and Paramyxoviridae families. We report the presence of neutralising antibodies against henipavirus lineage GH-M74a virus (odds ratio 6.23; p<0.001), Nipah virus (odds ratio 4.04; p=0.00031), bat influenza H17N10 virus (odds ratio 7.25; p<0.001) and no significant association with Ebola virus (odds ratio 0.56; p=0.375) in the bat cohort. The data suggest a potential risk of zoonotic spillover including the possible circulation of highly pathogenic viruses in E. helvum populations. These findings highlight the importance of maintaining sero-surveillance of E. helvum to monitor changes in virus prevalence and distribution over time and across different geographic locations. Article summary lineThe detection of neutralizing antibodies against henipavirus GH-M74a virus, Nipah virus, and H17N10 virus in Eidolon helvum bat sera from Nigeria using pseudotyped viruses suggests a potential risk of zoonotic spillover.

microbiology↗