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SARS-COV-2 antibody responses to AZD1222 vaccination in West Africa

Author

Listed:
  • Adam Abdullahi

    (Cambridge Institute of Therapeutic Immunology & Infectious Disease (CITIID)
    University of Cambridge
    Institute of Human Virology)

  • David Oladele

    (Nigeria Institute of Medical Research (NIMR))

  • Michael Owusu

    (Kwame Nkrumah University of Science and Technology
    Kumasi Centre for Collaborative Research in Tropical Medicine)

  • Steven A. Kemp

    (Cambridge Institute of Therapeutic Immunology & Infectious Disease (CITIID)
    University of Cambridge)

  • James Ayorinde

    (Nigeria Institute of Medical Research (NIMR))

  • Abideen Salako

    (Nigeria Institute of Medical Research (NIMR))

  • Douglas Fink

    (London School of Hygiene and Tropical Medicine
    University College London)

  • Fehintola Ige

    (Nigeria Institute of Medical Research (NIMR))

  • Isabella A. T. M. Ferreira

    (Cambridge Institute of Therapeutic Immunology & Infectious Disease (CITIID)
    University of Cambridge)

  • Bo Meng

    (Cambridge Institute of Therapeutic Immunology & Infectious Disease (CITIID)
    University of Cambridge)

  • Augustina Angelina Sylverken

    (Kwame Nkrumah University of Science and Technology
    Kumasi Centre for Collaborative Research in Tropical Medicine)

  • Chika Onwuamah

    (Nigeria Institute of Medical Research (NIMR))

  • Kwame Ofori Boadu

    (Kumasi South Hospital)

  • Kazeem Osuolale

    (Nigeria Institute of Medical Research (NIMR))

  • James Opoku Frimpong

    (Kwame Nkrumah University of Science and Technology)

  • Rufai Abubakar

    (Nigeria Institute of Medical Research (NIMR))

  • Azuka Okuruawe

    (Nigeria Institute of Medical Research (NIMR))

  • Haruna Wisso Abdullahi

    (Institute of Human Virology)

  • Gideon Liboro

    (Nigeria Institute of Medical Research (NIMR))

  • Lawrence Duah Agyemang

    (Komfo Anokye Teaching Hospital)

  • Nana Kwame Ayisi-Boateng

    (Kwame Nkrumah University of Science and Technology)

  • Oluwatosin Odubela

    (Nigeria Institute of Medical Research (NIMR))

  • Gregory Ohihoin

    (Nigeria Institute of Medical Research (NIMR))

  • Oliver Ezechi

    (Nigeria Institute of Medical Research (NIMR))

  • Japhet Senyo Kamasah

    (Kwame Nkrumah University of Science and Technology)

  • Emmanuel Ameyaw

    (Kwame Nkrumah University of Science and Technology)

  • Joshua Arthur

    (Komfo Anokye Teaching Hospital)

  • Derrick Boakye Kyei

    (Kumasi Centre for Collaborative Research in Tropical Medicine)

  • Dorcas Ohui Owusu

    (Kwame Nkrumah University of Science and Technology)

  • Olagoke Usman

    (Federal Medical Centre)

  • Sunday Mogaji

    (Federal Medical Centre)

  • Adedamola Dada

    (Federal Medical Centre)

  • George Agyei

    (Kwadaso Seventh Day Adventist Hospital)

  • Soraya Ebrahimi

    (Cambridge University Hospitals NHS Foundation Trust)

  • Lourdes Ceron Gutierrez

    (Cambridge University Hospitals NHS Foundation Trust)

  • Sani H. Aliyu

    (Cambridge University Hospitals NHS Foundation Trust)

  • Rainer Doffinger

    (Cambridge University Hospitals NHS Foundation Trust)

  • Rosemary Audu

    (Nigeria Institute of Medical Research (NIMR))

  • Richard Adegbola

    (Nigeria Institute of Medical Research (NIMR))

  • Petra Mlcochova

    (Cambridge Institute of Therapeutic Immunology & Infectious Disease (CITIID)
    University of Cambridge)

  • Richard Odame Phillips

    (Kwame Nkrumah University of Science and Technology
    Kumasi Centre for Collaborative Research in Tropical Medicine)

  • Babatunde Lawal Solako

    (Nigeria Institute of Medical Research (NIMR))

  • Ravindra K. Gupta

    (Cambridge Institute of Therapeutic Immunology & Infectious Disease (CITIID)
    University of Cambridge
    Africa Health Research Institute)

Abstract

Real-world data on vaccine-elicited neutralising antibody responses for two-dose AZD1222 in African populations are limited. We assessed baseline SARS-CoV-2 seroprevalence and levels of protective neutralizing antibodies prior to vaccination rollout using binding antibodies analysis coupled with pseudotyped virus neutralisation assays in two cohorts from West Africa: Nigerian healthcare workers (n = 140) and a Ghanaian community cohort (n = 527) pre and post vaccination. We found 44 and 28% of pre-vaccination participants showed IgG anti-N positivity, increasing to 59 and 39% respectively with anti-receptor binding domain (RBD) IgG-specific antibodies. Previous IgG anti-N positivity significantly increased post two-dose neutralizing antibody titres in both populations. Serological evidence of breakthrough infection was observed in 8/49 (16%). Neutralising antibodies were observed to wane in both populations, especially in anti-N negative participants with an observed waning rate of 20% highlighting the need for a combination of additional markers to characterise previous infection. We conclude that AZD1222 is immunogenic in two independent West African cohorts with high background seroprevalence and incidence of breakthrough infection in 2021. Waning titres post second dose indicates the need for booster dosing after AZD1222 in the African setting despite hybrid immunity from previous infection.

Suggested Citation

  • Adam Abdullahi & David Oladele & Michael Owusu & Steven A. Kemp & James Ayorinde & Abideen Salako & Douglas Fink & Fehintola Ige & Isabella A. T. M. Ferreira & Bo Meng & Augustina Angelina Sylverken &, 2022. "SARS-COV-2 antibody responses to AZD1222 vaccination in West Africa," Nature Communications, Nature, vol. 13(1), pages 1-11, December.
  • Handle: RePEc:nat:natcom:v:13:y:2022:i:1:d:10.1038_s41467-022-33792-x
    DOI: 10.1038/s41467-022-33792-x
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    References listed on IDEAS

    as
    1. Raquel Viana & Sikhulile Moyo & Daniel G. Amoako & Houriiyah Tegally & Cathrine Scheepers & Christian L. Althaus & Ugochukwu J. Anyaneji & Phillip A. Bester & Maciej F. Boni & Mohammed Chand & Wonderf, 2022. "Rapid epidemic expansion of the SARS-CoV-2 Omicron variant in southern Africa," Nature, Nature, vol. 603(7902), pages 679-686, March.
    2. Petra Mlcochova & Steven A. Kemp & Mahesh Shanker Dhar & Guido Papa & Bo Meng & Isabella A. T. M. Ferreira & Rawlings Datir & Dami A. Collier & Anna Albecka & Sujeet Singh & Rajesh Pandey & Jonathan B, 2021. "SARS-CoV-2 B.1.617.2 Delta variant replication and immune evasion," Nature, Nature, vol. 599(7883), pages 114-119, November.
    3. Rigel Suzuki & Daichi Yamasoba & Izumi Kimura & Lei Wang & Mai Kishimoto & Jumpei Ito & Yuhei Morioka & Naganori Nao & Hesham Nasser & Keiya Uriu & Yusuke Kosugi & Masumi Tsuda & Yasuko Orba & Michihi, 2022. "Attenuated fusogenicity and pathogenicity of SARS-CoV-2 Omicron variant," Nature, Nature, vol. 603(7902), pages 700-705, March.
    4. Dami A. Collier & Anna Marco & Isabella A. T. M. Ferreira & Bo Meng & Rawlings P. Datir & Alexandra C. Walls & Steven A. Kemp & Jessica Bassi & Dora Pinto & Chiara Silacci-Fregni & Siro Bianchi & M. A, 2021. "Sensitivity of SARS-CoV-2 B.1.1.7 to mRNA vaccine-elicited antibodies," Nature, Nature, vol. 593(7857), pages 136-141, May.
    5. Frauke Muecksch & Zijun Wang & Alice Cho & Christian Gaebler & Tarek Tanfous & Justin DaSilva & Eva Bednarski & Victor Ramos & Shuai Zong & Brianna Johnson & Raphael Raspe & Dennis Schaefer-Babajew & , 2022. "Increased memory B cell potency and breadth after a SARS-CoV-2 mRNA boost," Nature, Nature, vol. 607(7917), pages 128-134, July.
    6. Dami A. Collier & Isabella A. T. M. Ferreira & Prasanti Kotagiri & Rawlings P. Datir & Eleanor Y. Lim & Emma Touizer & Bo Meng & Adam Abdullahi & Anne Elmer & Nathalie Kingston & Barbara Graves & Emma, 2021. "Age-related immune response heterogeneity to SARS-CoV-2 vaccine BNT162b2," Nature, Nature, vol. 596(7872), pages 417-422, August.
    7. Bo Meng & Adam Abdullahi & Isabella A. T. M. Ferreira & Niluka Goonawardane & Akatsuki Saito & Izumi Kimura & Daichi Yamasoba & Pehuén Pereyra Gerber & Saman Fatihi & Surabhi Rathore & Samantha K. Zep, 2022. "Altered TMPRSS2 usage by SARS-CoV-2 Omicron impacts infectivity and fusogenicity," Nature, Nature, vol. 603(7902), pages 706-714, March.
    8. Steven A. Kemp & Dami A. Collier & Rawlings P. Datir & Isabella A. T. M. Ferreira & Salma Gayed & Aminu Jahun & Myra Hosmillo & Chloe Rees-Spear & Petra Mlcochova & Ines Ushiro Lumb & David J. Roberts, 2021. "SARS-CoV-2 evolution during treatment of chronic infection," Nature, Nature, vol. 592(7853), pages 277-282, April.
    9. Sandile Cele & Inbal Gazy & Laurelle Jackson & Shi-Hsia Hwa & Houriiyah Tegally & Gila Lustig & Jennifer Giandhari & Sureshnee Pillay & Eduan Wilkinson & Yeshnee Naidoo & Farina Karim & Yashica Ganga , 2021. "Escape of SARS-CoV-2 501Y.V2 from neutralization by convalescent plasma," Nature, Nature, vol. 593(7857), pages 142-146, May.
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