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Volume 32, Number 10—October 2026

Research Letter

Age Differences in Pertussis Epidemics, New South Wales, Australia, 2015 and 2024

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Author affiliation: New South Wales Ministry of Health, St. Leonards, New South Wales, Australia (E.F. Madden, S.L. Ellis, A. Parisi, C.E. Selvey, J. Amin); University of Sydney, Sydney, New South Wales, Australia (A. Parisi); Australian National University, Canberra, Australian Capital Territory, Australia (A. Parisi); Macquarie University, Sydney (J. Amin); University of New South Wales, Kensington, New South Wales, Australia (J. Amin).

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Abstract

We compared data from the 2015 and 2024 pertussis epidemics in New South Wales, Australia. In 2024, we found twice as many notifications and a shift in distribution to older children. COVID-19 interventions and lack of circulation of pertussis likely contributed to an age cohort immunity gap and increased infections.

Pertussis (whooping cough) is a highly contagious respiratory disease caused by Bordetella pertussis bacteria. Although infants <6 months of age are at greatest risk for severe disease and death (1), infections occur across all age groups. Immunity from both immunization and infection wanes over time. Consequently, pertussis remains endemic in New South Wales (NSW), Australia, and causes epidemics every 3–4 years (2,3).

Pertussis vaccines are funded in Australia under the national immunization program. Since 2009, pertussis vaccines are administered at 6 weeks, 4 months, 6 months, 18 months, and 4 years of age in NSW; vaccination during pregnancy has been funded since 2015. A booster dose is given at age 12–13 through the NSW school vaccination program (4). The COVID-19 pandemic disrupted infection cycles, likely because of widespread nonpharmaceutical interventions that have reduced transmission of multiple respiratory pathogens (5). From 2020–2023, NSW reported historically low pertussis activity, with <600 notifications annually (3). We describe age- and sex-specific patterns across 2 epidemics in NSW, in 2015 and 2024, and discuss the potential results of pandemic-related interventions and waning immunity as likely contributors to observed pattern changes.

We calculated age-specific rates by using annual NSW population estimates (6). Confirmed pertussis cases (7) are reported to the NSW notifiable conditions information management system, a statutory public health register of infectious diseases legally notifiable to NSW Health (8). Our review of those data reveals NSW experienced a resurgence in 2024, recording the highest annual total since pertussis became notifiable in 1991. After 1991, the most recent NSW epidemic occurred in 2015. During 2015–2024, a total of 68,842 confirmed pertussis cases were reported in NSW, including 12,007 in 2015 and 25,695 in 2024. Compared with 2015, notifications in 2024 more than doubled, and the age distribution shifted toward older children, with the greatest proportion of notifications in 10–14-year-olds. The notification rate in 2024 (314.7/100,000 population) was almost double the rate of 2015 (157.7/100,000 population) (Table). The ratio of male to female notifications in 2015 was 0.88; in 2024, the ratio of male to female notifications was 1.08.

In 2015, the highest proportion of cases occurred in children 5–9 years of age (25.2%), followed by those 10–14 years of age (22.2%). By contrast, children 10–14 years of age dominated the 2024 epidemic caseload (38.0%), followed by those 5–9 years of age (23.2%). The percentage of cases in children <5 years of age declined from 15.1% in 2015 to 8.3% in 2024 and in children <6 months of age from 1.4% in 2015 to 0.9% in 2024. Conversely, the notification rate for children 10–14 years of age more than tripled, from 594.2 cases/100,000 population in 2015 to 1,904.4 cases/100,000 population in 2024 (incidence rate ratio [IRR] 3.21 [95% CI 3.07–3.35]) (Table). That increase was not observed to the same extent in other age groups, particularly those >25 years of age. The median age at notification remained consistent at 11 years in both epidemics. However, the interquartile range for age narrowed substantially, from 7–33 in 2015 to 9–17 in 2024 (Table), reflecting a more concentrated distribution of cases among school-age children in 2024.

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Age-specific pertussis notification rates per 100,000 population for persons 0–20 years of age, by year notified, New South Wales, Australia, 2015 and 2024. Because no population data were available for children 0–5 months and 6–11 months, the total population estimates for children <1 year of age in 2015 and 2024 was halved. These populations were used for the rate calculations.

Figure. Age-specific pertussis notification rates per 100,000 population for persons 0–20 years of age, by year notified, New South Wales, Australia, 2015 and 2024. Because no population data were available for...

The COVID-19 pandemic likely changed health-seeking and testing behaviors, resulting in a higher proportion of persons with laboratory-confirmed pertussis. That behavior change might have contributed to higher notifications in 2024, but it is unlikely to explain the pronounced shift in age distribution. Several factors possibly contributed. The near absence of circulating pertussis during the pandemic could have disrupted natural immune boosting from exposure to Bordetella pertussis. That disruption probably had the greatest effect on children approaching adolescence, as reflected in the age-specific rates (Figure). In 2024, the risk of infection increased with each year of age among school-age children, particularly in those 8–12 years of age, who were several years past their last scheduled vaccine dose and therefore more susceptible to illness because of waning immunity. That immunity gap likely enabled rapid transmission through school populations. In contrast, the relative reduction in the age-specific rates from age 13 years onward, seen in both epidemics but more noticeably in 2024, signals the effect of the adolescent booster and its importance in maintaining immunity (Figure). The NSW pertussis resurgence in 2024 aligns with international observations after the easing of COVID-19 restrictions, with increased incidence among older children reported by several countries (9). Those parallels point to global immunity gaps attributable to reduced pathogen circulation during the pandemic.

In conclusion, the 2024 NSW pertussis epidemic differed substantially from the 2015 epidemic in both magnitude and age profile. Waning immunity, exacerbated by reduced natural boosting during the COVID-19 pandemic, likely contributed to the increased effects, particularly in children 8–12 years of age. Future research should explore vaccine effectiveness during extended inter-epidemic periods and the role of adolescent boosters to mitigate transmission. Adjustments should be made to surveillance and outbreak response strategies to prevent and reduce the effects of future outbreaks.

Ms. Madden is a senior public health advisor at Health Protection NSW, within the NSW Ministry of Health. Her work focuses on surveillance, reporting, and policy for vaccine-preventable and respiratory diseases.

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References

  1. Parisi  A, Nuñez  O, López-Perea  N, Masa-Calles  J. Reduced pertussis disease severity in infants following the introduction of pertussis vaccination of pregnant women in Spain, 2015–2019. Vaccine. 2024;42:28106. DOIPubMedGoogle Scholar
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  3. NSW Health Communicable Diseases Branch and Centre for Epidemiology and Evidence. Pertussis notifications in NSW residents by year of disease onset and age group. January 2015 to December 2024 [cited 2025 Jul 25]. https://www.health.nsw.gov.au/IDD/#/PERT/periodandagegroup
  4. Health  NSW. NSW immunisation schedule. 2025 [cited 2025 Sep 22]. https://www.health.nsw.gov.au/immunisation/publications/nsw-immunisation-schedule.pdf
  5. van der Kooi  S, Beard  F, Dey  A, McIntyre  P, Imai  C, Amin  J. Pertussis notifications decline in Australia during COVID-19 non-pharmaceutical interventions, 2020–2021. Commun Dis Intell. 2024;48:24. DOIPubMedGoogle Scholar
  6. Australian Bureau of Statistics. Population at 30 June, by sex and single year of age, NSW, from 1971 onwards. June 2025 ed. Canberra (Australia): Australian Government; 2025 [cited 2025 Dec 22]. https://www.abs.gov.au/statistics/people/population/national-state-and-territory-population/jun-2025
  7. Australian Centre for Disease Control. Pertussis (whooping cough) surveillance case definition. Canberra (Australia): Australian Government Department of Health; 2025 [cited 2025 Dec 17]. https://www.cdc.gov.au/resources/publications/surveillance-case-definition-pertussis
  8. New South Wales Government. Public health act 2010 no. 127 [cited 2025 Feb 25]. https://legislation.nsw.gov.au/view/html/inforce/current/act-2010-127
  9. Gorringe  A, Cavell  B, Beard  F, Tsukada  K, Otsuka  N, Fu  P, et al. Global incidence of pertussis after the COVID-19 pandemic. JAMA Netw Open. 2025;8:e2545963. DOIPubMedGoogle Scholar

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Suggested citation for this article: Madden EF, Ellis SL, Parisi A, Selvey CE, Amin, J. Age differences in pertussis epidemics, New South Wales, Australia, 2015 and 2024. Emerg Infect Dis. 2026 Oct [date cited]. https://doi.org/10.3201/eid3210.260332

DOI: 10.3201/eid3210.260332

Original Publication Date: September 22, 2026

Table of Contents – Volume 32, Number 10—October 2026

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Ella Madden, Health Protection NSW, NSW Ministry of Health, Locked Mail Bag 2030, St. Leonards, NSW 1590, Australia

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Page created: August 07, 2026
Page updated: September 22, 2026
Page reviewed: September 22, 2026
The conclusions, findings, and opinions expressed by authors contributing to this journal do not necessarily reflect the official position of the U.S. Department of Health and Human Services, the Public Health Service, the Centers for Disease Control and Prevention, or the authors' affiliated institutions. Use of trade names is for identification only and does not imply endorsement by any of the groups named above.
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