Background: The new oral polio vaccine type 2 (nOPV2), authorized by WHO in November 2020, was deployed in Benin in 2025 as part of response campaigns against circulating vaccine-derived poliovirus type 2 (cVDPV2). The factors associated with serious adverse events following immunization (AEFI) reported after this campaign remain poorly documented in the French-speaking West African context. Method: We conducted a national case-control study that was conducted from August 2025 to November 2025 in the twelve departments of Benin. A total of 1067 children were included in the study. Cases (n=510) were children 0 to 5 years of age with severe AEFI following nOPV2 administration and controls (n=557) were nOPV2-vaccinated children without AEFI. The associated factors were searched for by multivariate logistic regression, after selection of candidate variables in univariate analysis. Results: In multivariate analysis, five independent determinants were identified. History of past malnutrition was associated with higher odds ratios of severe AEFI (aOR = 12.37; 95% CI: [1.51-18.10]; p = 0.019). Loss or unavailability of the vaccination record (ORa = 1.76; 95% CI: [1.11-2.78]; p = 0.016) and vaccine incompleteness (ORa = 1.77; 95% CI: [1.10-2.87]; p = 0.020) were also associated with higher odds. Conversely, the verification of the health record (ORa = 0.36; 95% CI: [0.26-0.50]; p < 0.001) and the question about the child's health status before vaccination (ORa = 0.64; 95% CI: [0.45-0.92]; p = 0.016) were associated with lower odds. Age, which was significant in univariate analysis, was no longer significant after adjustment (ORa = 1.01; 95% CI: [1.00-1.02]; p = 0.2). Conclusion: Our results suggest that the occurrence of severe AEFIs for nOPV2 in Benin is mainly associated with children's nutritional vulnerability, vaccination status and the quality of pre-vaccination practices. These associations do not allow a causal relationship to be established between the vaccine and the events observed.
| Published in | Science Journal of Public Health (Volume 14, Issue 4) |
| DOI | 10.11648/j.sjph.20261404.15 |
| Page(s) | 193-201 |
| Creative Commons |
This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited. |
| Copyright |
Copyright © The Author(s), 2026. Published by Science Publishing Group |
AEFI Severe, NOPV2, Malnutrition, Associated Factors, Pre-vaccination Practices, Benin
Variables | Serious AEFI, Yes (n=510) | Serious AEFI, No (n=557) | p-value |
|---|---|---|---|
Average age | 25.2 months | 22 months | < 0.001 |
Gender | 0.391 | ||
Male | 268 (52.5%) | 277 (49.7%) | |
Female | 242 (47.5%) | 280 (50.3%) | |
Average weight (kg) | 10.5 | 10.1 | 0.215 |
Underweight | 0.518 | ||
Yes | 179 (35.1%) | 184 (33.0%) | |
No | 331 (64.9%) | 373 (67.0%) | |
Area of residence (Departements) | 0.159 | ||
Alibori | 5 (1.0%) | 17 (3.1%) | |
Atacora | 8 (1.6%) | 9 (1.6%) | |
Atlantique | 84 (16.5%) | 104 (18.7%) | |
Borgou | 12 (2.4%) | 24 (4.3%) | |
Collines | 42 (8.2%) | 41 (7.4%) | |
Couffo | 69 (13.5%) | 69 (12.4%) | |
Donga | 17 (3.3%) | 17 (3.1%) | |
Littoral | 68 (13.3%) | 71 (12.7%) | |
Mono | 27 (5.3%) | 42 (7.5%) | |
Ouémé | 73 (14.3%) | 71 (12.7%) | |
Plateau | 55 (10.8%) | 43 (7.7%) | |
Zou | 50 (9.8%) | 49 (8.8%) | |
Parents' level of education | 0.008 | ||
Primary | 166 (32.5%) | 132 (23.7%) | |
Secondary | 146 (28.6%) | 192 (34.5%) | |
Superior | 19 (3.7%) | 29 (5.2%) | |
Non-schoolchildren | 179 (35.5%) | 204 (36.6%) |
Variables | Serious AEFI, Yes (n=510) | Serious AEFI, No (n=557) | p-value |
|---|---|---|---|
Past malnutrition | 0.010 | ||
Yes | 10 (2.0%) | 1 (0.2%) | |
No | 500 (98.0%) | 556 (99.8%) | |
Previous hospitalization | 0.358 | ||
Yes | 24 (4.7%) | 19 (3.4%) | |
No | 486 (95.3%) | 538 (96.6%) | |
Prematurity | 0.057 | ||
Yes | 7 (1.4%) | 1 (0.2%) | |
No | 503 (98.6%) | 556 (99.8%) | |
Low birth weight | 1.00 | ||
Yes | 5 (1.0%) | 5 (0.9%) | |
No | 505 (99.0%) | 552 (99.1%) |
Variables | Serious AEFI, Yes (n=510) | Serious AEFI, No (n=557) | p-value |
|---|---|---|---|
Health record check | < 0.001 | ||
Yes | 222 (43.5%) | 372 (67.0%) | |
Variables | Serious AEFI, Yes (n = 510) | Serious AEFI, No (n = 557) | p-value |
No | 288 (56.5%) | 185 (33.2%) | |
Vaccination location | 0.496 | ||
Door-to-door | 498 (97.6%) | 538 (96.6%) | |
Health Center | 11 (2.2%) | 16 (2.9%) | |
Fixed location | 1 (0.2%) | 3 (0.5%) | |
Informed parents | < 0.001 | ||
Yes | 277 (54.3%) | 373 (67.0%) | |
No | 233 (47.5%) | 184 (33.0%) | |
Questioning about the child's health | < 0.001 | ||
Yes | 371 (72.7%) | 481 (86.4%) | |
Not | 139 (27.3%) | 76 (13.6%) | |
Vaccination status | < 0.001 | ||
Complete vaccination record according to age | 365 (71.6%) | 464 (83.3%) | |
Lost / unavailable notebook | 76 (14.9%) | 41 (7.4%) | |
Incomplete vaccinations | 54 (10.6%) | 36 (6.5%) | |
Never vaccinated in the past | 5 (1.0%) | 2 (0.4%) | |
Other non-EPI vaccines | 10 (2.0%) | 14 (2.5%) |
Variables | Serious AEFI | p-value | |
|---|---|---|---|
Adjusted OR | IC 95% | ||
Age (months) | 1.01 | [1.00-1,02] | 0.2 |
Past malnutrition | 12.37 | [1.51-18.10] | 0.019 |
Lost / unavailable notebook | 1.76 | [1.10-2.78] | 0.016 |
Incomplete vaccinations | 1.77 | [1.10-2.87] | 0.020 |
Checking the child's notebook | 0.36 | [0.26-0.50] | <0.001 |
Health Questioning | 0.64 | [0.45-0.92] | 0.016 |
CNERS | National Research Ethics Committee |
cVDPV2 | Vaccine-Derived Poliovirus Type 2 |
GACVS | Global Advisory Committee On Vaccine Safety |
nOPV2 | Novel Oral Polio Vaccine Type 2 |
MAPI | Manifestation Adverse Post-Immunisation |
WHO | World Health Organization |
| [1] |
GPEI. Variant Poliovirus Outbreaks and the Type 2 Novel Oral Polio Vaccine (nOPV2). Available from:
http://polioeradication.org/wp-content/uploads/2025/11/GPEI-nOPV2-Factsheet-20251120 (accessed 19 February 2026). |
| [2] | Zaman, K., Bandyopadhyay, AS., Hoque, M. Evaluation of the safety, immunogenicity, and faecal shedding of novel oral polio vaccine type 2 in healthy newborn infants in Bangladesh: a randomised, controlled, phase 2 clinical trial. Lancet. 2023; 401(10371): 131‑9. |
| [3] | Wilkinson, AL., Zaman, K., Hoque, M. Immunogenicity of novel oral poliovirus vaccine type 2 administered concomitantly with bivalent oral poliovirus vaccine: an open-label, non-inferiority, randomised, controlled trial. Lancet Infect Dis. 2023; 23(9): 1062‑71. |
| [4] | Ochoge, M., Futa, AC., Umesi, A. Safety of the novel oral poliovirus vaccine type 2 (nOPV2) in infants and young children aged 1 to <5 years and lot-to-lot consistency of the immune response to nOPV2 in infants in The Gambia: a phase 3, double-blind, randomised controlled trial. Lancet. 2024; 403(10432): 1164‑75. |
| [5] |
World Health Organization. Poliovirus vaccines. Available from:
https://www.who.int/groups/global-advisory-committee-on-vaccine-safety/topics/poliovirus-vaccines (accessed 15 July 2026). |
| [6] | Ngoie Mwamba, G., Kabamba Nzaji, M., Luboya Numbi, O. Micronutrient and protein-energy supplementation enhance vaccine responses in undernourished children: Evidence from a systematic review. F1000Res. 2025; 14: 507. |
| [7] | Prendergast, AJ. Malnutrition and vaccination in developing countries. Phil Trans R Soc B. 2015; 370(1671): 20140141. |
| [8] | Nicol, E., Turawa, E., Bonsu, G. Pre- and in-service training of health care workers on immunization data management in LMICs: a scoping review. Hum Resour Health. 2019; 17(1): 92. |
| [9] |
World Health Organization. health-minister-launches-landmark-polio-vaccination-campaign-protect-4-million-children-benin. Available from:
www.afro.who.int/countries/benin/news/health-minister-launches-landmark-polio-vaccination-campaign-protect-4-million-children-benin (accessed 19 February 2026). |
| [10] | Abbott, SL., Etapelong, SG., Gidado, S. Implementing a robust adverse event of special interest surveillance for novel oral polio vaccine type 2 rollout, Nigeria, March-July 2021. Pan Afr Med J. 2023; 45(Suppl 2): 6. |
| [11] | Thomas, F., Abiri, O., Kallon, J. Adverse Events Following Immunization with Novel Oral Polio Vaccine Type 2, and the Experience and Challenges of Reporting in Sierra Leone. DHPS. juin 2024; Volume 16: 61‑73. |
| [12] | World Health Organization. User manual for the revised WHO classification. 2nd ed. Geneva, Switzerland: WHO press; 2019. p. 44. |
| [13] | Duclos, P., Hockin, J., Pless, R. Reporting vaccine-associated adverse events. Can Fam Physician. 1997; 43: 1551‑6, 1559‑60. |
| [14] | Meranus, D., Stergachis, A., Arnold, J. Assessing vaccine safety communication with healthcare providers in a large urban county. Pharmacoepidemiology and Drug. 2012; 21(3): 269‑75. |
| [15] | Puspitarani, F., Sitaresmi, MN., Ahmad, RA. Adverse events following immunization of COVID-19 vaccine among children aged 6-11 years. Front Public Health. 2022; 10: 999354. |
| [16] | Pandey, D., Mehta, G., Sachdeva, M. Adverse Event Following Immunization (AEFI) in Children: An Analysis of Reporting in VigiAccess. Drug Res (Stuttg). 2022; 72(8): 435‑40. |
| [17] | Eskenazi, B., Rauch, S., Elsiwi, B. Undernutrition and antibody response to measles, tetanus and Haemophilus Influenzae type b (Hib) vaccination in pre-school south African children: The VHEMBE birth cohort study. Vaccine. 2025; 46: 126564. |
| [18] | Tripathy, SK., Das, S., Malik, A. Vaccine and malnutrition: A narrative review. J Family Med Prim Care. 2023; 12(9): 1808‑13. |
| [19] |
Concepción, F. E. Immunogenicity of supplemental doses of poliovirus vaccine for children aged 6—9 months in Moradabad, India. Available from:
https://www.technet-21.org/fr/ressources/article-de-revue/immunogenicity-of-supplemental-doses-of-poliovirus-vaccine-for-children-aged-6-9-months-in-moradabad-india (accessed 16 July 2026). |
| [20] | Yamoah, P., Mensah, KB., Padayachee, N. Assessment of adherence to pre-vaccination precautions and AEFI reporting practices during BCG vaccination in 4 hospitals in Ghana. Human Vaccines & Immunotherapeutics. 2023; 19(1): 2199654. |
| [21] | Laryea, E. B., Frimpong, JA., Noora, C. L. Evaluation of the adverse events following immunization surveillance system, Ghana, 2019. PLoS One. 2022; 17(3): e0264697. |
| [22] | Adamu, A. A., Ndwandwe, D., Ndoutabe, M. Exploring the Contextual Factors That Influence Polio Supplementary Immunisation Activities in the WHO African Region: A Rapid Review. Vaccines (Basel). 2025; 13(8): 870. |
| [23] |
World Health Organization regional office for Africa. Mid-level management course for EPI managers : immunization safety and false contraindications. Available from:
http://www.afro.who.int/ (accessed 15 July 2026). |
| [24] |
World Health Organization. Recommandation for an Emergency Use Listing of novel oral polio vaccine type 2 (nOPV2), manufactured by PT Biofarma. Available from:
https://extranet.who.int/prequal/sites/default/files/document_files/nOPV2_EUL_recommendation.pdf (accessed 19 February 2026). |
APA Style
Padonou, S. G. R., Sasse, A., Olofindji, J., Kaucley, L., Aguemon, B. (2026). Factors Associated with the Occurrence of Serious Adverse Events Following Immunization Following Administration of Nopv2 in Children Under Five Years of Age in Benin. Science Journal of Public Health, 14(4), 193-201. https://doi.org/10.11648/j.sjph.20261404.15
ACS Style
Padonou, S. G. R.; Sasse, A.; Olofindji, J.; Kaucley, L.; Aguemon, B. Factors Associated with the Occurrence of Serious Adverse Events Following Immunization Following Administration of Nopv2 in Children Under Five Years of Age in Benin. Sci. J. Public Health 2026, 14(4), 193-201. doi: 10.11648/j.sjph.20261404.15
AMA Style
Padonou SGR, Sasse A, Olofindji J, Kaucley L, Aguemon B. Factors Associated with the Occurrence of Serious Adverse Events Following Immunization Following Administration of Nopv2 in Children Under Five Years of Age in Benin. Sci J Public Health. 2026;14(4):193-201. doi: 10.11648/j.sjph.20261404.15
@article{10.11648/j.sjph.20261404.15,
author = {Setondji Geraud Romeo Padonou and Angela Sasse and Jennifer Olofindji and Landry Kaucley and Badirou Aguemon},
title = {Factors Associated with the Occurrence of Serious Adverse Events Following Immunization Following Administration of Nopv2 in Children Under Five Years of Age in Benin},
journal = {Science Journal of Public Health},
volume = {14},
number = {4},
pages = {193-201},
doi = {10.11648/j.sjph.20261404.15},
url = {https://doi.org/10.11648/j.sjph.20261404.15},
eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.sjph.20261404.15},
abstract = {Background: The new oral polio vaccine type 2 (nOPV2), authorized by WHO in November 2020, was deployed in Benin in 2025 as part of response campaigns against circulating vaccine-derived poliovirus type 2 (cVDPV2). The factors associated with serious adverse events following immunization (AEFI) reported after this campaign remain poorly documented in the French-speaking West African context. Method: We conducted a national case-control study that was conducted from August 2025 to November 2025 in the twelve departments of Benin. A total of 1067 children were included in the study. Cases (n=510) were children 0 to 5 years of age with severe AEFI following nOPV2 administration and controls (n=557) were nOPV2-vaccinated children without AEFI. The associated factors were searched for by multivariate logistic regression, after selection of candidate variables in univariate analysis. Results: In multivariate analysis, five independent determinants were identified. History of past malnutrition was associated with higher odds ratios of severe AEFI (aOR = 12.37; 95% CI: [1.51-18.10]; p = 0.019). Loss or unavailability of the vaccination record (ORa = 1.76; 95% CI: [1.11-2.78]; p = 0.016) and vaccine incompleteness (ORa = 1.77; 95% CI: [1.10-2.87]; p = 0.020) were also associated with higher odds. Conversely, the verification of the health record (ORa = 0.36; 95% CI: [0.26-0.50]; p Conclusion: Our results suggest that the occurrence of severe AEFIs for nOPV2 in Benin is mainly associated with children's nutritional vulnerability, vaccination status and the quality of pre-vaccination practices. These associations do not allow a causal relationship to be established between the vaccine and the events observed.},
year = {2026}
}
TY - JOUR T1 - Factors Associated with the Occurrence of Serious Adverse Events Following Immunization Following Administration of Nopv2 in Children Under Five Years of Age in Benin AU - Setondji Geraud Romeo Padonou AU - Angela Sasse AU - Jennifer Olofindji AU - Landry Kaucley AU - Badirou Aguemon Y1 - 2026/08/17 PY - 2026 N1 - https://doi.org/10.11648/j.sjph.20261404.15 DO - 10.11648/j.sjph.20261404.15 T2 - Science Journal of Public Health JF - Science Journal of Public Health JO - Science Journal of Public Health SP - 193 EP - 201 PB - Science Publishing Group SN - 2328-7950 UR - https://doi.org/10.11648/j.sjph.20261404.15 AB - Background: The new oral polio vaccine type 2 (nOPV2), authorized by WHO in November 2020, was deployed in Benin in 2025 as part of response campaigns against circulating vaccine-derived poliovirus type 2 (cVDPV2). The factors associated with serious adverse events following immunization (AEFI) reported after this campaign remain poorly documented in the French-speaking West African context. Method: We conducted a national case-control study that was conducted from August 2025 to November 2025 in the twelve departments of Benin. A total of 1067 children were included in the study. Cases (n=510) were children 0 to 5 years of age with severe AEFI following nOPV2 administration and controls (n=557) were nOPV2-vaccinated children without AEFI. The associated factors were searched for by multivariate logistic regression, after selection of candidate variables in univariate analysis. Results: In multivariate analysis, five independent determinants were identified. History of past malnutrition was associated with higher odds ratios of severe AEFI (aOR = 12.37; 95% CI: [1.51-18.10]; p = 0.019). Loss or unavailability of the vaccination record (ORa = 1.76; 95% CI: [1.11-2.78]; p = 0.016) and vaccine incompleteness (ORa = 1.77; 95% CI: [1.10-2.87]; p = 0.020) were also associated with higher odds. Conversely, the verification of the health record (ORa = 0.36; 95% CI: [0.26-0.50]; p Conclusion: Our results suggest that the occurrence of severe AEFIs for nOPV2 in Benin is mainly associated with children's nutritional vulnerability, vaccination status and the quality of pre-vaccination practices. These associations do not allow a causal relationship to be established between the vaccine and the events observed. VL - 14 IS - 4 ER -