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Broadly neutralizing antibodies against Omicron variants of SARS-CoV-2 derived from mRNA-lipid nanoparticle-immunized mice.
Lu, Ruei-Min; Liang, Kang-Hao; Chiang, Hsiao-Ling; Hsu, Fu-Fei; Lin, Hsiu-Ting; Chen, Wan-Yu; Ke, Feng-Yi; Kumari, Monika; Chou, Yu-Chi; Tao, Mi-Hua; Wu, Han-Chung.
  • Lu RM; Biomedical Translation Research Center (BioTReC), Academia Sinica, Taipei, Taiwan.
  • Liang KH; Biomedical Translation Research Center (BioTReC), Academia Sinica, Taipei, Taiwan.
  • Chiang HL; Biomedical Translation Research Center (BioTReC), Academia Sinica, Taipei, Taiwan.
  • Hsu FF; Biomedical Translation Research Center (BioTReC), Academia Sinica, Taipei, Taiwan.
  • Lin HT; Institute of Cellular and Organismic Biology (ICOB), Academia Sinica, Taipei, Taiwan.
  • Chen WY; Institute of Cellular and Organismic Biology (ICOB), Academia Sinica, Taipei, Taiwan.
  • Ke FY; Biomedical Translation Research Center (BioTReC), Academia Sinica, Taipei, Taiwan.
  • Kumari M; Institute of Cellular and Organismic Biology (ICOB), Academia Sinica, Taipei, Taiwan.
  • Chou YC; Biomedical Translation Research Center (BioTReC), Academia Sinica, Taipei, Taiwan.
  • Tao MH; Biomedical Translation Research Center (BioTReC), Academia Sinica, Taipei, Taiwan.
  • Yi-Ling Lin; Institute of Biomedical Sciences (IBMS), Academia Sinica, Taipei, Taiwan.
  • Wu HC; Biomedical Translation Research Center (BioTReC), Academia Sinica, Taipei, Taiwan.
Heliyon ; 9(5): e15587, 2023 May.
Article in English | MEDLINE | ID: covidwho-2299164
ABSTRACT
The COVID-19 pandemic continues to threaten human health worldwide as new variants of the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) emerge. Currently, the predominant circulating strains around the world are Omicron variants, which can evade many therapeutic antibodies. Thus, the development of new broadly neutralizing antibodies remains an urgent need. In this work, we address this need by using the mRNA-lipid nanoparticle immunization method to generate a set of Omicron-targeting monoclonal antibodies. Five of our novel K-RBD-mAbs show strong binding and neutralizing activities toward all SARS-CoV-2 variants of concern (Alpha, Beta, Gamma, Delta and Omicron). Notably, the epitopes of these five K-RBD-mAbs are overlapping and localized around Y453 and F486 of the spike protein receptor binding domain (RBD). Chimeric derivatives of the five antibodies (K-RBD-chAbs) neutralize Omicron sublineages BA.1 and BA.2 with low IC50 values ranging from 5.7 to 12.9 ng/mL. Additionally, we performed antibody humanization on broadly neutralizing chimeric antibodies to create K-RBD-hAb-60 and -62, which still retain excellent neutralizing activity against Omicron. Our results collectively suggest that these five therapeutic antibodies may effectively combat current and emerging SARS-CoV-2 variants, including Omicron BA.1 and BA.2. Therefore, the antibodies can potentially be used as universal neutralizing antibodies against SARS-CoV-2.
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Full text: Available Collection: International databases Database: MEDLINE Topics: Variants Language: English Journal: Heliyon Year: 2023 Document Type: Article Affiliation country: J.heliyon.2023.e15587

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Full text: Available Collection: International databases Database: MEDLINE Topics: Variants Language: English Journal: Heliyon Year: 2023 Document Type: Article Affiliation country: J.heliyon.2023.e15587