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Surface-modified measles vaccines encoding oligomeric, prefusion-stabilized SARS-CoV-2 spike glycoproteins boost neutralizing antibody responses to Omicron and historical variants, independent of measles seropositivity

MBio. 2024-01; 
Miguel Á Muñoz-Alía, Rebecca A Nace, Baskar Balakrishnan, Lianwen Zhang, Nandakumar Packiriswamy, Gagandeep Singh, Prajakta Warang, Ignacio Mena, Riya Narjari, Rianna Vandergaast, Kah-Whye Peng, Adolfo García-Sastre, Michael Schotsaert, Stephen J Russell
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Gene Synthesis … , N440K, G446S, S477N, T478K, E484A, Q493R, Q498R, N501Y, Y505H, N764K, D796Y, N856K, Q954H, N969K, and L981F was synthesized and cloned into pCDNA3.1 by GenScript Get A Quote

摘要

Serum titers of SARS-CoV-2-neutralizing antibodies (nAbs) correlate well with protection from symptomatic COVID-19 but decay rapidly in the months following vaccination or infection. In contrast, measles-protective nAb titers are lifelong after measles vaccination, possibly due to persistence of the live-attenuated virus in lymphoid tissues. We, therefore, sought to generate a live recombinant measles vaccine capable of driving high SARS-CoV-2 nAb responses. Since previous clinical testing of a live measles vaccine encoding a SARS-CoV-2 spike glycoprotein resulted in suboptimal anti-spike antibody titers, our new vectors were designed to encode prefusion-stabilized SARS-CoV-2 spike glycoproteins, trimerized via... More

关键词

COVID-19, ferritine, nanoparticle, prefusion spike