TY - JOUR
T1 - Antibody and cellular therapies for treatment of covid-19
T2 - a living systematic review and network meta-analysis
AU - Siemieniuk, Reed Ac
AU - Bartoszko, Jessica J
AU - Díaz Martinez, Juan Pablo
AU - Kum, Elena
AU - Qasim, Anila
AU - Zeraatkar, Dena
AU - Izcovich, Ariel
AU - Mangala, Sophia
AU - Ge, Long
AU - Han, Mi Ah
AU - Agoritsas, Thomas
AU - Arnold, Donald
AU - Ávila, Camila
AU - Chu, Derek K
AU - Couban, Rachel
AU - Cusano, Ellen
AU - Darzi, Andrea J
AU - Devji, Tahira
AU - Foroutan, Farid
AU - Ghadimi, Maryam
AU - Khamis, Assem
AU - Lamontagne, Francois
AU - Loeb, Mark
AU - Miroshnychenko, Anna
AU - Motaghi, Sharhzad
AU - Murthy, Srinivas
AU - Mustafa, Reem A
AU - Rada, Gabriel
AU - Rochwerg, Bram
AU - Switzer, Charlotte
AU - Vandvik, Per O
AU - Vernooij, Robin Wm
AU - Wang, Ying
AU - Yao, Liang
AU - Guyatt, Gordon H
AU - Brignardello-Petersen, Romina
N1 - Funding Information:
Funding: This study was supported by the Canadian Institutes of Health Research (grant CIHR-IRSC:0579001321). The funders had no role in considering the study design or in the collection, analysis, interpretation of data, writing of the report, or decision to submit the article for publication.
Funding Information:
Competing interests: All authors have completed the ICMJE uniform disclosure form at www.icm-je.org/coi_disclosure.pdf and declare: support from the Canadian Institutes of Health Research for the submitted work; ML reports personal fees and non-financial support from Sanofi, grants and personal fees from Seqirus, personal fees from Pfizer, and personal fees from Medicago outside the submitted work, and is a co-investigator on ACT randomised trial of covid-19 therapy; LG reports grants from Ministry of Science and Technology of China outside the submitted work.
Publisher Copyright:
© 2021 BMJ Publishing Group. All rights reserved.
PY - 2021/9/23
Y1 - 2021/9/23
N2 - AbstractObjective To evaluate the efficacy and safety of antiviral antibody therapies and blood products for the treatment of novel coronavirus disease 2019 (covid-19). Design Living systematic review and network meta-analysis, with pairwise meta-analysis for outcomes with insufficient data. Data sources WHO covid-19 database, a comprehensive multilingual source of global covid-19 literature, and six Chinese databases (up to 21 July 2021). Study selection Trials randomising people with suspected, probable, or confirmed covid-19 to antiviral antibody therapies, blood products, or standard care or placebo. Paired reviewers determined eligibility of trials independently and in duplicate. Methods After duplicate data abstraction, we performed random effects bayesian meta-analysis, including network meta-analysis for outcomes with sufficient data. We assessed risk of bias using a modification of the Cochrane risk of bias 2.0 tool. The certainty of the evidence was assessed using the grading of recommendations assessment, development, and evaluation (GRADE) approach. We meta-analysed interventions with ≥100 patients randomised or ≥20 events per treatment arm. Results As of 21 July 2021, we identified 47 trials evaluating convalescent plasma (21 trials), intravenous immunoglobulin (IVIg) (5 trials), umbilical cord mesenchymal stem cells (5 trials), bamlanivimab (4 trials), casirivimab-imdevimab (4 trials), bamlanivimab-etesevimab (2 trials), control plasma (2 trials), peripheral blood non-haematopoietic enriched stem cells (2 trials), sotrovimab (1 trial), anti-SARS-CoV-2 IVIg (1 trial), therapeutic plasma exchange (1 trial), XAV-19 polyclonal antibody (1 trial), CT-P59 monoclonal antibody (1 trial) and INM005 polyclonal antibody (1 trial) for the treatment of covid-19. Patients with non-severe disease randomised to antiviral monoclonal antibodies had lower risk of hospitalisation than those who received placebo: casirivimab-imdevimab (odds ratio (OR) 0.29 (95% CI 0.17 to 0.47); risk difference (RD) -4.2%; moderate certainty), bamlanivimab (OR 0.24 (0.06 to 0.86); RD -4.1%; low certainty), bamlanivimab-etesevimab (OR 0.31 (0.11 to 0.81); RD -3.8%; low certainty), and sotrovimab (OR 0.17 (0.04 to 0.57); RD -4.8%; low certainty). They did not have an important impact on any other outcome. There was no notable difference between monoclonal antibodies. No other intervention had any meaningful effect on any outcome in patients with non-severe covid-19. No intervention, including antiviral antibodies, had an important impact on any outcome in patients with severe or critical covid-19, except casirivimab-imdevimab, which may reduce mortality in patients who are seronegative. Conclusion In patients with non-severe covid-19, casirivimab-imdevimab probably reduces hospitalisation; bamlanivimab-etesevimab, bamlanivimab, and sotrovimab may reduce hospitalisation. Convalescent plasma, IVIg, and other antibody and cellular interventions may not confer any meaningful benefit. Systematic review registration This review was not registered. The protocol established a priori is included as a data supplement. Funding This study was supported by the Canadian Institutes of Health Research (grant CIHR- IRSC:0579001321). Readers' note This article is a living systematic review that will be updated to reflect emerging evidence. Interim updates and additional study data will be posted on our website (www.covid19lnma.com).
AB - AbstractObjective To evaluate the efficacy and safety of antiviral antibody therapies and blood products for the treatment of novel coronavirus disease 2019 (covid-19). Design Living systematic review and network meta-analysis, with pairwise meta-analysis for outcomes with insufficient data. Data sources WHO covid-19 database, a comprehensive multilingual source of global covid-19 literature, and six Chinese databases (up to 21 July 2021). Study selection Trials randomising people with suspected, probable, or confirmed covid-19 to antiviral antibody therapies, blood products, or standard care or placebo. Paired reviewers determined eligibility of trials independently and in duplicate. Methods After duplicate data abstraction, we performed random effects bayesian meta-analysis, including network meta-analysis for outcomes with sufficient data. We assessed risk of bias using a modification of the Cochrane risk of bias 2.0 tool. The certainty of the evidence was assessed using the grading of recommendations assessment, development, and evaluation (GRADE) approach. We meta-analysed interventions with ≥100 patients randomised or ≥20 events per treatment arm. Results As of 21 July 2021, we identified 47 trials evaluating convalescent plasma (21 trials), intravenous immunoglobulin (IVIg) (5 trials), umbilical cord mesenchymal stem cells (5 trials), bamlanivimab (4 trials), casirivimab-imdevimab (4 trials), bamlanivimab-etesevimab (2 trials), control plasma (2 trials), peripheral blood non-haematopoietic enriched stem cells (2 trials), sotrovimab (1 trial), anti-SARS-CoV-2 IVIg (1 trial), therapeutic plasma exchange (1 trial), XAV-19 polyclonal antibody (1 trial), CT-P59 monoclonal antibody (1 trial) and INM005 polyclonal antibody (1 trial) for the treatment of covid-19. Patients with non-severe disease randomised to antiviral monoclonal antibodies had lower risk of hospitalisation than those who received placebo: casirivimab-imdevimab (odds ratio (OR) 0.29 (95% CI 0.17 to 0.47); risk difference (RD) -4.2%; moderate certainty), bamlanivimab (OR 0.24 (0.06 to 0.86); RD -4.1%; low certainty), bamlanivimab-etesevimab (OR 0.31 (0.11 to 0.81); RD -3.8%; low certainty), and sotrovimab (OR 0.17 (0.04 to 0.57); RD -4.8%; low certainty). They did not have an important impact on any other outcome. There was no notable difference between monoclonal antibodies. No other intervention had any meaningful effect on any outcome in patients with non-severe covid-19. No intervention, including antiviral antibodies, had an important impact on any outcome in patients with severe or critical covid-19, except casirivimab-imdevimab, which may reduce mortality in patients who are seronegative. Conclusion In patients with non-severe covid-19, casirivimab-imdevimab probably reduces hospitalisation; bamlanivimab-etesevimab, bamlanivimab, and sotrovimab may reduce hospitalisation. Convalescent plasma, IVIg, and other antibody and cellular interventions may not confer any meaningful benefit. Systematic review registration This review was not registered. The protocol established a priori is included as a data supplement. Funding This study was supported by the Canadian Institutes of Health Research (grant CIHR- IRSC:0579001321). Readers' note This article is a living systematic review that will be updated to reflect emerging evidence. Interim updates and additional study data will be posted on our website (www.covid19lnma.com).
KW - Antibodies, Monoclonal/therapeutic use
KW - Antibodies, Viral/therapeutic use
KW - Antiviral Agents/therapeutic use
KW - Bayes Theorem
KW - COVID-19/immunology
KW - Cell- and Tissue-Based Therapy/methods
KW - Clinical Trials as Topic
KW - Humans
KW - Immunization, Passive
KW - Network Meta-Analysis
KW - SARS-CoV-2/immunology
KW - Treatment Outcome
UR - https://www.scopus.com/pages/publications/85116086392
U2 - 10.1136/bmj.n2231
DO - 10.1136/bmj.n2231
M3 - Review article
C2 - 34556486
SN - 1756-1833
VL - 374
SP - 1
EP - 11
JO - BMJ (Clinical research ed.)
JF - BMJ (Clinical research ed.)
M1 - n2231
ER -