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Murine monoclonal antibodies against RBD of the SARS-CoV-2 spike protein as useful analytical tools for subunit vaccine development and clinical trials.
Blanco, Omar R; Dorta, Dayamí; Hernández, Carlos A; Abreu, Daymí; Domínguez, Andy G; Luna, Yaramis; Valdivia, Onel; Pérez-Bernal, Maylín; Tamayo, Celia; Lemos, Gilda; Pasarón, Ivis M; Pérez, Joel J; Benítez, Liudmila; Bequet-Romero, Mónica; Fragas, Anitza; Cabrera, Yeosvany; Pérez, Enrique R.
  • Blanco OR; Center for Genetic Engineering and Biotechnology of Sancti Spíritus, Circunvalante Norte, Olivos III, Sancti Spíritus, Cuba.
  • Dorta D; Center for Genetic Engineering and Biotechnology of Sancti Spíritus, Circunvalante Norte, Olivos III, Sancti Spíritus, Cuba.
  • Hernández CA; Center for Genetic Engineering and Biotechnology of Sancti Spíritus, Circunvalante Norte, Olivos III, Sancti Spíritus, Cuba.
  • Abreu D; Center for Genetic Engineering and Biotechnology of Sancti Spíritus, Circunvalante Norte, Olivos III, Sancti Spíritus, Cuba.
  • Domínguez AG; Center for Genetic Engineering and Biotechnology of Sancti Spíritus, Circunvalante Norte, Olivos III, Sancti Spíritus, Cuba.
  • Luna Y; Center for Genetic Engineering and Biotechnology of Sancti Spíritus, Circunvalante Norte, Olivos III, Sancti Spíritus, Cuba.
  • Valdivia O; Center for Genetic Engineering and Biotechnology of Sancti Spíritus, Circunvalante Norte, Olivos III, Sancti Spíritus, Cuba.
  • Pérez-Bernal M; Center for Genetic Engineering and Biotechnology of Sancti Spíritus, Circunvalante Norte, Olivos III, Sancti Spíritus, Cuba.
  • Tamayo C; Center for Genetic Engineering and Biotechnology of Sancti Spíritus, Circunvalante Norte, Olivos III, Sancti Spíritus, Cuba.
  • Lemos G; Center for Genetic Engineering and Biotechnology, Ave. 31 e/ 158 y 190, Playa, Havana, Cuba.
  • Pasarón IM; Center for Genetic Engineering and Biotechnology of Sancti Spíritus, Circunvalante Norte, Olivos III, Sancti Spíritus, Cuba.
  • Pérez JJ; Center for Genetic Engineering and Biotechnology of Sancti Spíritus, Circunvalante Norte, Olivos III, Sancti Spíritus, Cuba.
  • Benítez L; Center for Genetic Engineering and Biotechnology of Sancti Spíritus, Circunvalante Norte, Olivos III, Sancti Spíritus, Cuba.
  • Bequet-Romero M; Center for Genetic Engineering and Biotechnology, Ave. 31 e/ 158 y 190, Playa, Havana, Cuba.
  • Fragas A; Civilian Defense Scientific Research Center, Carretera de Jamaica y Autopista 15 Nacional, San José de las Lajas, Mayabeque, Cuba.
  • Cabrera Y; Center for Genetic Engineering and Biotechnology of Sancti Spíritus, Circunvalante Norte, Olivos III, Sancti Spíritus, Cuba. Electronic address: yeosvany.cabrera@cigb.edu.cu.
  • Pérez ER; Center for Genetic Engineering and Biotechnology of Sancti Spíritus, Circunvalante Norte, Olivos III, Sancti Spíritus, Cuba.
J Immunol Methods ; 500: 113195, 2022 01.
Article in English | MEDLINE | ID: covidwho-1536656
ABSTRACT
COVID-19 pandemic poses a serious threat to human health; it has completely disrupted global stability, making vaccine development an important goal to achieve. Monoclonal antibodies play an important role in subunit vaccines strategies. In this work, nine murine MAbs against the RBD of the SARS-CoV-2 spike protein were obtained by hybridoma technology. Characterization of purified antibodies demonstrated that five of them have affinities in the order of 108 L/mol. Six MAbs showed specific recognition of different recombinant RBD-S antigens in solution. Studies of the additivity index of anti-RBD antibodies, by using a novel procedure to determine the additivity cut point, showed recognition of at least five different epitopes. The MAbs CBSSRBD-S.11 and CBSSRBD-S.8 revealed significant neutralizing capacity against SARS-CoV-2 in an ACE2-RBD binding inhibition assay (IC50 = 85.5pM and IC50 = 122.7pM, respectively) and in a virus neutralizing test with intact SARS-CoV-2 (VN50 = 0.552 nM and VN50 = 4.854 nM, respectively) when D614G strain was used to infect Vero cells. Also CBSSRBD-S.11 neutralized the SARS-CoV-2 strains Alpha and Beta VN50 = 0.707 nM and VN50 = 0.132 nM, respectively. The high affinity CBSSRBD-S.8 and CBSSRBD-S.7 recognized different epitopes, so they are suitable for the development of a sandwich ELISA to quantitate RBD-S recombinant antigens in biomanufacturing processes, as well as in pharmacokinetic studies in clinical and preclinical trials.
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Full text: Available Collection: International databases Database: MEDLINE Main subject: COVID-19 Vaccines / SARS-CoV-2 / COVID-19 / Antibodies, Monoclonal Type of study: Diagnostic study / Prognostic study / Randomized controlled trials Topics: Vaccines Limits: Animals / Female / Humans Language: English Journal: J Immunol Methods Year: 2022 Document Type: Article Affiliation country: J.jim.2021.113195

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Full text: Available Collection: International databases Database: MEDLINE Main subject: COVID-19 Vaccines / SARS-CoV-2 / COVID-19 / Antibodies, Monoclonal Type of study: Diagnostic study / Prognostic study / Randomized controlled trials Topics: Vaccines Limits: Animals / Female / Humans Language: English Journal: J Immunol Methods Year: 2022 Document Type: Article Affiliation country: J.jim.2021.113195