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Imaz-Iglesia I, Carmona M, García-Carpintero EE, Pedrosa-Pérez L, Martínez-Portillo A, Alcalde-Cabero E, Linertová R, García-Pérez L. Updating and Refining of Economic Evaluation of Rotavirus Vaccination in Spain: A Cost-Utility and Budget Impact Analysis. Viruses 2024; 16:1194. [PMID: 39205168 PMCID: PMC11360725 DOI: 10.3390/v16081194] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/08/2024] [Revised: 07/19/2024] [Accepted: 07/22/2024] [Indexed: 09/04/2024] Open
Abstract
Two vaccines against rotavirus diseases, Rotarix® and RotaTeq®, are being marketed in Spain; but rotavirus is not presently among the diseases covered by universal vaccination in Spain. The aim of this study was to assess the efficiency of extending Spain's current targeted rotavirus vaccination strategy including only preterm babies, to a policy of universal vaccination. A de novo cohort-based Markov model was built to evaluate the efficiency of three compared rotavirus vaccination strategies in Spain: targeted, universal, and no vaccination. Using Rotarix® or RotaTeq®, we compared the cost-utility of these strategies from both a societal perspective and Spanish National Health System (SNHS) perspective. The model represents the most important clinical events conceivably linked to rotavirus infection. Efficacy, effectiveness, safety, costs, and utilities were identified by systematic reviews. Incremental cost-utility ratio (ICUR) is EUR 23,638/QALY (Quality-Adjusted Life Year) for targeted vaccination with Rotarix® compared with no vaccination. The ICUR for the rest of the strategies evaluated are above EUR 30,000/QALY. The sensitivity analysis shows price as the only parameter that could make the universal vaccination strategy efficient. Considering a threshold of EUR 25,000/QALY, only targeted vaccination with Rotarix® would be efficient from societal perspective. Price drops of 36.9% for Rotarix® and 44.6% for RotaTeq® would make universal vaccination efficient.
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Affiliation(s)
- Iñaki Imaz-Iglesia
- National Health School, Carlos III Institute of Health (Instituto de Salud Carlos III), 28029 Madrid, Spain; (I.I.-I.)
- Chronicity, Primary Healthcare and Health Promotion Research Network (Red de Investigación en Cronicidad, Atención Primaria y Promoción de la Salud/RICAPPS), 28029 Madrid, Spain; (E.E.G.-C.); (R.L.); (L.G.-P.)
| | - Montserrat Carmona
- Chronicity, Primary Healthcare and Health Promotion Research Network (Red de Investigación en Cronicidad, Atención Primaria y Promoción de la Salud/RICAPPS), 28029 Madrid, Spain; (E.E.G.-C.); (R.L.); (L.G.-P.)
- Health Technology Assessment Agency, Carlos III Institute of Health (Instituto de Salud Carlos III), 28029 Madrid, Spain;
| | - Esther E. García-Carpintero
- Chronicity, Primary Healthcare and Health Promotion Research Network (Red de Investigación en Cronicidad, Atención Primaria y Promoción de la Salud/RICAPPS), 28029 Madrid, Spain; (E.E.G.-C.); (R.L.); (L.G.-P.)
- Health Technology Assessment Agency, Carlos III Institute of Health (Instituto de Salud Carlos III), 28029 Madrid, Spain;
| | - Lucía Pedrosa-Pérez
- Health Technology Assessment Agency, Carlos III Institute of Health (Instituto de Salud Carlos III), 28029 Madrid, Spain;
| | - Alejandro Martínez-Portillo
- National Health School, Carlos III Institute of Health (Instituto de Salud Carlos III), 28029 Madrid, Spain; (I.I.-I.)
| | - Enrique Alcalde-Cabero
- National Centre of Epidemiology, Carlos III Institute of Health (Instituto de Salud Carlos III), 28029 Madrid, Spain;
- Center for Biomedical Research in Neurodegenerative Diseases (CIBERNED), 28029 Madrid, Spain
| | - Renata Linertová
- Chronicity, Primary Healthcare and Health Promotion Research Network (Red de Investigación en Cronicidad, Atención Primaria y Promoción de la Salud/RICAPPS), 28029 Madrid, Spain; (E.E.G.-C.); (R.L.); (L.G.-P.)
- Assessment Service of the Canary Islands Health Service (Servicio de Evaluación del Servicio Canario de Salud/SESCS), 38109 Tenerife, Spain
| | - Lidia García-Pérez
- Chronicity, Primary Healthcare and Health Promotion Research Network (Red de Investigación en Cronicidad, Atención Primaria y Promoción de la Salud/RICAPPS), 28029 Madrid, Spain; (E.E.G.-C.); (R.L.); (L.G.-P.)
- Assessment Service of the Canary Islands Health Service (Servicio de Evaluación del Servicio Canario de Salud/SESCS), 38109 Tenerife, Spain
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Lamsal R, Yeh EA, Pullenayegum E, Ungar WJ. A Systematic Review of Methods Used by Pediatric Cost-Utility Analyses to Include Family Spillover Effects. PHARMACOECONOMICS 2024; 42:199-217. [PMID: 37945777 PMCID: PMC10810985 DOI: 10.1007/s40273-023-01331-1] [Citation(s) in RCA: 4] [Impact Index Per Article: 4.0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Subscribe] [Scholar Register] [Accepted: 10/25/2023] [Indexed: 11/12/2023]
Abstract
BACKGROUND A child's health condition affects family members' health and well-being. However, pediatric cost-utility analysis (CUA) commonly ignores these family spillover effects leading to an incomplete understanding of the cost and benefits of a child's health intervention. Methodological challenges exist in assessing, valuing, and incorporating family spillover effects. OBJECTIVE This study systematically reviews and compare methods used to include family spillover effects in pediatric CUAs. METHODS A literature search was conducted in MEDLINE, Embase, EconLit, Cochrane collection, CINAHL, INAHTA, and the Pediatric Economic Database Evaluation (PEDE) database from inception to 2020 to identify pediatric CUAs that included family spillover effects. The search was updated to 2021 using PEDE. The data describing in which family members spillover effects were measured, and how family spillover effects were measured, incorporated, and reported, were extracted. Common approaches were grouped conceptually. Further, this review identified theories or theoretical frameworks used to justify approaches for integrating family spillover effects into CUA. RESULTS Of 878 pediatric CUAs identified, 35 included family spillover effects. Most pediatric CUAs considered family spillover effects on one family member. Pediatric CUAs reported eight different approaches to measure the family spillover effects. The most common method was measuring the quality-adjusted life years (QALY) loss of the caregiver(s) or parent(s) due to a child's illness or disability using an isolated approach whereby family spillover effects were quantified in individual family members separately from other health effects. Studies used four approaches to integrate family spillover effects into CUA. The most common method was to sum children's and parents/caregivers' QALYs. Only two studies used a theoretical framework for incorporation of family spillover effects. CONCLUSIONS Few pediatric CUAs included family spillover effects and the observed variation indicated no consensus among researchers on how family spillover effects should be measured and incorporated. This heterogeneity is mirrored by a lack of practical guidelines by Health Technology Assessment (HTA) agencies or a theoretical foundation for including family spillover effects in pediatric CUA. The results from this review may encourage researchers to develop a theoretical framework and HTA agencies to develop guidelines for including family spillover effects. Such guidance may lead to more rigorous and standardized methods for including family spillover effects and better-quality evidence to inform decision-makers on the cost-effectiveness of pediatric health interventions.
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Affiliation(s)
- Ramesh Lamsal
- Child Health Evaluative Sciences, Peter Gilgan Centre for Research and Learning, The Hospital for Sick Children, 686 Bay Street, 11th Floor, Toronto, ON, M5G 0A4, Canada
- Institute of Health Policy, Management and Evaluation, University of Toronto, Toronto, ON, Canada
| | - E Ann Yeh
- Division of Neurology, Department of Pediatrics, University of Toronto, Toronto, ON, Canada
- Neurosciences and Mental Health, SickKids Research Institute, Toronto, ON, Canada
| | - Eleanor Pullenayegum
- Child Health Evaluative Sciences, Peter Gilgan Centre for Research and Learning, The Hospital for Sick Children, 686 Bay Street, 11th Floor, Toronto, ON, M5G 0A4, Canada
- Dalla Lana School of Public Health, University of Toronto, Toronto, ON, Canada
| | - Wendy J Ungar
- Child Health Evaluative Sciences, Peter Gilgan Centre for Research and Learning, The Hospital for Sick Children, 686 Bay Street, 11th Floor, Toronto, ON, M5G 0A4, Canada.
- Institute of Health Policy, Management and Evaluation, University of Toronto, Toronto, ON, Canada.
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Jesudason T, Rodarte A, Tordrup D, Carias C, Chen YH. Systematic review of rotavirus vaccination cost-effectiveness in high income settings utilising dynamic transmission modelling techniques. Vaccine 2023; 41:5221-5232. [PMID: 37479614 DOI: 10.1016/j.vaccine.2023.06.064] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/31/2022] [Revised: 06/16/2023] [Accepted: 06/16/2023] [Indexed: 07/23/2023]
Abstract
PURPOSE This systematic review presents cost-effectiveness studies of rotavirus vaccination in high-income settings based on dynamic transmission modelling to inform policy decisions about implementing rotavirus vaccination programmes. METHODS We searched CEA Registry, MEDLINE, Embase, Health Technology Assessment Database, Scopus, and the National Health Service Economic Evaluation Database for studies published since 2002. Full economic evaluation studies based on dynamic transmission models, focusing on high-income countries, live oral rotavirus vaccine and children ≤ 5 years of age were eligible for inclusion. Included studies were appraised for quality and risk of bias using the Consensus on Health Economic Criteria (CHEC) list and the Philips checklist. The review protocol was prospectively registered with PROSPERO (CRD42020208406). RESULTS A total of four economic evaluations were identified. Study settings included England and Wales, France, Norway, and the United States. All studies compared either pentavalent or monovalent rotavirus vaccines to no intervention. All studies were cost-utility analyses that reported incremental cost per quality-adjusted life year (QALY) gained. Included studies consistently concluded that rotavirus vaccination is cost-effective compared with no vaccination relative to the respective country's willingness to pay threshold when herd protection benefits are incorporated in the modelling framework. CONCLUSIONS Rotavirus vaccination was found to be cost-effective in all identified studies that used dynamic transmission models in high-income settings where child mortality rates due to rotavirus gastroenteritis are close to zero. Previous systematic reviews of economic evaluations considered mostly static models and had less conclusive findings than the current study. This review suggests that modelling choices influence cost-effectiveness results for rotavirus vaccination. Specifically, the review suggests that dynamic transmission models are more likely to account for the full impact of rotavirus vaccination than static models in cost-effectiveness analyses.
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Affiliation(s)
| | | | | | | | - Yao-Hsuan Chen
- Health Economic and Decision Sciences, MSD (UK) Limited, London, United Kingdom.
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Gomez J, Velázquez FR, Guzman-Holst A, Cervantes Apolinar MY, Van Bellinghen LA, Van Vlaenderen I, van Oorschot D. Cost-effectiveness analysis measuring the total costs against the health benefits of three different rotavirus vaccines for Mexico. Hum Vaccin Immunother 2023:2219189. [PMID: 37339232 DOI: 10.1080/21645515.2023.2219189] [Citation(s) in RCA: 4] [Impact Index Per Article: 2.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/10/2023] [Revised: 05/05/2023] [Accepted: 05/23/2023] [Indexed: 06/22/2023] Open
Abstract
Rotavirus (RV) infection causes acute rotavirus gastroenteritis (RVGE) in infants. Safe and effective RV vaccines are available, of which Mexico has included one in its national immunization program (NIP) since 2007. Health outcome gains, expressed in quality-adjusted life years (QALYs), and cost improvements are important additional factors for the selection of a NIP vaccine. These two factors were analyzed here for Mexico over one year implementing three RV vaccines: 2-dose Rotarix (HRV), versus 3-dose RotaTeq (HBRV), and 3-dose Rotasiil (BRV-PV), presented in a 1-dose or 2-dose vial). HRV would annually result in discounted QALY gains of 263 extra years compared with the other vaccines by averting an extra 24,022 homecare cases, 10779 medical visits, 392 hospitalizations, and 12 deaths. From a payer's perspective and compared with HRV, BRV-PV 2-dose vial and BRV-PV 1-dose vial would annually result in $13.5 million and $4.6 million net savings, respectively, while HBRV would result in $3.4 million extra costs. The societal perspective may also show savings compared with HRV for BRV-PV 2-dose vial of $4.9 million, while BRV-PV 1-dose vial and HBRV may show extra costs of $4.0 million and $12.1 million respectively. HRV and HBRV were both approved in Mexico, with HRV requiring less investment than HBRV with higher QALY gains and cost savings. The HRV vaccine produced those higher health gains due to its earlier protection and greater coverage achieved after its schedule completion with two doses only, providing full protection at four months of age instead of longer periods for the other vaccines.
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Doggen K, van Hoek AJ, Luyten J. Accounting for Adverse Events Following Immunization in Economic Evaluation: Systematic Review of Economic Evaluations of Pediatric Vaccines Against Pneumococcus, Rotavirus, Human Papillomavirus, Meningococcus and Measles-Mumps-Rubella-Varicella. PHARMACOECONOMICS 2023; 41:481-497. [PMID: 36809673 DOI: 10.1007/s40273-023-01252-z] [Citation(s) in RCA: 2] [Impact Index Per Article: 1.0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Accepted: 02/09/2023] [Indexed: 05/10/2023]
Abstract
OBJECTIVES Economic evaluations of vaccines should accurately represent all relevant economic and health consequences of vaccination, including losses due to adverse events following immunization (AEFI). We investigated to what extent economic evaluations of pediatric vaccines account for AEFI, which methods are used to do so and whether inclusion of AEFI is associated with study characteristics and the vaccine's safety profile. METHODS A systematic literature search (MEDLINE, EMBASE, Cochrane Systematic Reviews and Trials, Database of the Centre for Reviews and Dissemination of the University of York, EconPapers, Paediatric Economic Database Evaluation, Tufts New England Cost-Effectiveness Analysis Registry, Tufts New England Global Health CEA, International Network of Agencies for Health Technology Assessment Database) was performed for economic evaluations published between 2014 and 29 April 2021 (date of search) pertaining to the five groups of pediatric vaccines licensed in Europe and the United States since 1998: the human papillomavirus (HPV) vaccines, the meningococcal vaccines (MCV), the measles-mumps-rubella-varicella (MMRV) combination vaccines, the pneumococcal conjugate vaccines (PCV) and the rotavirus vaccines (RV). Rates of accounting for AEFI were calculated, stratified by study characteristics (e.g., region, publication year, journal impact factor, level of industry involvement) and triangulated with the vaccine's safety profile (Advisory Committee on Immunization Practices [ACIP] recommendations and information on safety-related product label changes). The studies accounting for AEFI were analyzed in terms of the methods used to account for both cost and effect implications of AEFI. RESULTS We identified 112 economic evaluations, of which 28 (25%) accounted for AEFI. This proportion was significantly higher for MMRV (80%, four out of five evaluations), MCV (61%, 11 out of 18 evaluations) and RV (60%, nine out of 15 evaluations) compared to HPV (6%, three out of 53 evaluations) and PCV (5%, one out of 21 evaluations). No other study characteristics were associated with a study's likelihood of accounting for AEFI. Vaccines for which AEFI were more frequently accounted for also had a higher frequency of label changes and a higher level of attention to AEFI in ACIP recommendations. Nine studies accounted for both the cost and health implications of AEFI, 18 studies considered only costs and one only health outcomes. While the cost impact was usually estimated based on routine billing data, the adverse health impact of AEFI was usually estimated based on assumptions. DISCUSSION Although (mild) AEFI were demonstrated for all five studied vaccines, only a quarter of reviewed studies accounted for these, mostly in an incomplete and inaccurate manner. We provide guidance on which methods to use to better quantify the impact of AEFI on both costs and health outcomes. Policymakers should be aware that the impact of AEFI on cost-effectiveness is likely to be underestimated in the majority of economic evaluations.
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Affiliation(s)
- Kris Doggen
- Faculty of Medicine, KU Leuven, Leuven, Belgium
- Belgian Intermutualistic Agency, Brussels, Belgium
| | - Albert Jan van Hoek
- Centre for Infectious Disease Control, National Institute for Public Health and the Environment (RIVM), Bilthoven, The Netherlands
| | - Jeroen Luyten
- Leuven Institute for Healthcare Policy, Department of Public Health and Primary Care, Faculty of Medicine, KU Leuven, Kapucijnenvoer 35, 3000, Leuven, Belgium.
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Standaert B. The Economic Value of Rotavirus Vaccination When Optimally Implemented in a High-Income Country. Vaccines (Basel) 2023; 11:vaccines11050917. [PMID: 37243021 DOI: 10.3390/vaccines11050917] [Citation(s) in RCA: 4] [Impact Index Per Article: 2.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/24/2023] [Revised: 04/18/2023] [Accepted: 04/26/2023] [Indexed: 05/28/2023] Open
Abstract
Rotavirus vaccination was introduced in high-income countries starting in 2006, with no recommendation for optimal implementation. Economic evaluations were presented before launch projecting potential impacts. Few economic reassessments have been reported following reimbursement. This study compares the short- to long-term economic value of rotavirus vaccination between pre-launch predictions and real-world evidence collected over 15 years, proposing recommendations for optimal vaccine launch. A cost-impact analysis compared rotavirus hospitalisation data after the introduction of vaccination between pre-launch modelled projections and observed data collected in the RotaBIS study in Belgium. A best model fit of the observed data was used to simulate launch scenarios to identify the optimal strategy. Data from other countries in Europe were used to confirm the potential optimal launch assessment. The Belgian analysis in the short term (first 8 years) indicated a more favourable impact for the observed data than predicted pre-launch model results. The long-term assessment (15 years) showed bigger economic disparities in favour of the model-predicted scenario. A simulated optimal vaccine launch, initiating the vaccination at least 6 months prior the next seasonal disease peak with an immediate very high vaccine coverage, indicated important additional potential gains, which would make vaccination very cost impactful. Finland and the UK are on such a route leading to long-term vaccination success, whereas Spain and Belgium have difficulties in achieving optimum vaccine benefits. An optimal launch of rotavirus vaccination may generate substantial economic gains over time. For high-income countries that are considering implementing rotavirus vaccination, achieving an optimal launch is a critical factor for long-term economic success.
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Affiliation(s)
- Baudouin Standaert
- Department Care and Ethics, Faculty of Medicine and Life Sciences, University Hasselt, 3590 Diepenbeek, Belgium
- HEBO bv, 2020 Antwerpen, Belgium
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Rudakova AV, Kharit SM, Rychkova SV, Lobzin YV. Сost-effectiveness of pentavalent rotavirus vaccination in the Russian Federation. JOURNAL INFECTOLOGY 2023. [DOI: 10.22625/2072-6732-2022-14-5-69-77] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 01/02/2023]
Abstract
One of the main causes of acute gastroenteritis in children under 5 years of age is rotavirus infection (RVI). Vaccines against RVI significantly reduce the incidence. Aim. To evaluate the cost-effectiveness of mass vaccination of children with a 5-valent RVI vaccine in the Russian Federation. Materials and methods. The assessment was carried out using modeling based on published data on the effectiveness of the vaccine and epidemiological indicators in the Russian Federation. The analysis was carried out from the perspective of the health care system and society as a whole with a 5-year horizon. The cost of RVI therapy corresponded to the compulsory health insurance tariffs for St. Petersburg for 2022, the price of 1 dose of the vaccine was the registered price, including VAT. Costs and life expectancy, taking into account quality, were discounted at 3.5 % per year. Results. Given the assumptions made, routine vaccination will prevent an average of 468,637 cases of RVI over 5 years. Avoided direct medical costs, i. e. RVI treatment costs will amount to 53,4 %, and lost income due to temporary disability – 46,6 % of the total avoided costs. At the same time, the volume of avoided costs is 61,4 % due to a decrease in morbidity in the vaccinated population, and 38.6 % due to the development of a indirect effect. The predicted avoided costs per 1 vaccinated person is 2,975 thousand rubles. From a societal perspective, the cost-effectiveness of the Rota-V-Aid vaccine will be 364,813 thousand rubles / QALY (quality-adjusted life year), and from a healthcare perspective – 1726,399 thousand rubles / QALY. Thus, in both cases, the cost-effectiveness of RVI vaccination will not exceed the generally accepted threshold of willingness to pay, equal to three times the gross domestic product per capita in the Russian Federation (according to data for 2021 – ~2,7 million rubles). The predicted cost-effectiveness of selective vaccination is significantly lower than that of mass vaccination. Conclusions. Mass vaccination of children with a 5-valent vaccine against RVI will not only reduce the incidence in the Russian Federation, but, taking into account the assumptions made, can also be considered as a cost-effective intervention.
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Affiliation(s)
- A. V. Rudakova
- Pediatric Research and Clinical Center for Infectious Diseases
| | - S. M. Kharit
- Pediatric Research and Clinical Center for Infectious Diseases
| | - S. V. Rychkova
- Pediatric Research and Clinical Center for Infectious Diseases
| | - Yu. V. Lobzin
- Pediatric Research and Clinical Center for Infectious Diseases
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Cost-effectiveness of rotavirus vaccination in Mozambique. Vaccine 2022; 40:5338-5346. [PMID: 35933279 PMCID: PMC9421418 DOI: 10.1016/j.vaccine.2022.07.044] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/03/2022] [Revised: 07/23/2022] [Accepted: 07/27/2022] [Indexed: 11/20/2022]
Abstract
Introduction Rotavirus is one of the most common cause of severe gastroenteritis in children, with the largest mortality burden in low- and middle-income countries. To prevent rotavirus gastroenteritis, Mozambique introduced ROTARIX® vaccine in 2015, however, its cost-effectiveness has never been established in the country. In 2018, additional vaccines became available globally. This study estimates the cost-effectiveness of the recently introduced ROTARIX in Mozambique and compares the cost-effectiveness of ROTARIX®, ROTAVAC®, and ROTASIIL® to inform future use. Methods We used a decision-support model to calculate the potential cost-effectiveness of vaccination with ROTARIX compared to no vaccination over a five-year period (2016–2020) and to compare the cost-effectiveness of ROTARIX, ROTAVAC, and ROTASIIL to no vaccination and to each other over a ten-year period (2021–2030). The primary outcome was the incremental cost per disability-adjusted life-year (DALY) averted from a government perspective. We assessed uncertainty through sensitivity analyses. Results From 2016 to 2020, we estimate the vaccine program with ROTARIX cost US$12.3 million, prevented 4,628 deaths, and averted US$3.1 million in healthcare costs. The cost per DALY averted was US$70. From 2021 to 2030, we estimate all three vaccines could prevent 9,000 deaths and avert US$7.8 million in healthcare costs. With Global Alliance for Vaccines and Immunization (Gavi) support, ROTARIX would have the lowest vaccine program cost (US$31 million) and 98 % probability of being cost-effective at a willingness-to-pay threshold of 0.5x GDP per capita. Without Gavi support, ROTASIIL would have the lowest vaccine program cost (US$75.8 million) and 30 % probability of being cost-effective at the same threshold. Conclusion ROTARIX vaccination had a substantial public health impact in Mozambique between 2016 and 2020. ROTARIX is currently estimated to be the most cost-effective product, but the choice of vaccine should be re-evaluated as more evidence emerges on the price, incremental delivery cost, wastage, and impact associated with each of the different rotavirus vaccines.
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Verberk JDM, van Dongen JAP, van de Kassteele J, Andrews NJ, van Gaalen RD, Hahné SJM, Vennema H, Ramsay M, Braeckman T, Ladhani S, Thomas SL, Walker JL, de Melker HE, Fischer TK, Koch J, Bruijning-Verhagen P. Impact analysis of rotavirus vaccination in various geographic regions in Western Europe. Vaccine 2021; 39:6671-6681. [PMID: 34635375 DOI: 10.1016/j.vaccine.2021.09.059] [Citation(s) in RCA: 3] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/01/2021] [Revised: 08/30/2021] [Accepted: 09/22/2021] [Indexed: 11/29/2022]
Abstract
BACKGROUND Universal mass vaccination (UMV) against rotavirus has been implemented in many but not all European countries. This study investigated the impact of UMV on rotavirus incidence trends by comparing European countries with UMV: Belgium, England/Wales and Germany versus countries without UMV: Denmark and the Netherlands. METHODS For this observational retrospective cohort study, time series data (2001-2016) on rotavirus detections, meteorological factors and population demographics were collected. For each country, several meteorological and population factors were investigated as possible predictors of rotavirus incidence. The final set of predictors were incorporated in negative binomial models accounting for seasonality and serial autocorrelation, and time-varying incidence rate ratios (IRR) were calculated for each age group and country separately. The overall vaccination impact two years after vaccine implementation was estimated by pooling the results using a random effects meta-analyses. Independent t-tests were used to compare annual epidemics in the pre-vaccination and post-vaccination era to explore any changes in the timing of rotavirus epidemics. RESULTS The population size and several meteorological factors were predictors for the rotavirus epidemiology. Overall, we estimated a 42% (95%-CI 23;56%) reduction in rotavirus incidence attributable to UMV. Strongest reductions were observed for age-groups 0-, 1- and 2-years (IRR 0.47, 0.48 and 0.63, respectively). No herd effect induced by UMV in neighbouring countries was observed. In all UMV countries, the start and/or stop and corresponding peak of the rotavirus season was delayed by 4-7 weeks. CONCLUSIONS The introduction of rotavirus UMV resulted in an overall reduction of 42% in rotavirus incidence in Western European countries two years after vaccine introduction and caused a change in seasonal pattern. No herd effect induced by UMV neighbouring countries was observed for Denmark and the Netherlands.
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Affiliation(s)
- J D M Verberk
- Centre for Infectious Disease Control, National Institute for Public Health and the Environment (RIVM), Bilthoven, the Netherlands
| | - J A P van Dongen
- Julius Centre for Health Sciences and Primary Care, University Medical Centre Utrecht, Utrecht, the Netherlands
| | - J van de Kassteele
- Centre for Infectious Disease Control, National Institute for Public Health and the Environment (RIVM), Bilthoven, the Netherlands
| | - N J Andrews
- Statistics, Modelling, and Economics Department, Public Health England (PHE), London, United Kingdom
| | - R D van Gaalen
- Centre for Infectious Disease Control, National Institute for Public Health and the Environment (RIVM), Bilthoven, the Netherlands
| | - S J M Hahné
- Centre for Infectious Disease Control, National Institute for Public Health and the Environment (RIVM), Bilthoven, the Netherlands
| | - H Vennema
- Centre for Infectious Disease Control, National Institute for Public Health and the Environment (RIVM), Bilthoven, the Netherlands
| | - M Ramsay
- Statistics, Modelling, and Economics Department, Public Health England (PHE), London, United Kingdom
| | - T Braeckman
- Formerly at Service Epidemiology of Infectious Diseases, Department Public Health and Surveillance, Sciensano Institute, Brussels, Belgium
| | - S Ladhani
- Immunisation Department, Public Health England (PHE), London, United Kingdom
| | - S L Thomas
- Faculty of Epidemiology & Population Health, London School of Hygiene & Tropical Medicine (LSHTM), London, United Kingdom
| | - J L Walker
- Immunisation Department, Public Health England (PHE), London, United Kingdom; Faculty of Epidemiology & Population Health, London School of Hygiene & Tropical Medicine (LSHTM), London, United Kingdom
| | - H E de Melker
- Centre for Infectious Disease Control, National Institute for Public Health and the Environment (RIVM), Bilthoven, the Netherlands
| | - T K Fischer
- Virology Surveillance and Research, Department of Virology and Special Microbiology Diagnostics Statens Serum Institut (SSI), Copenhagen, Denmark and University of Copenhagen, Department of Public Health, Copenhagen, Denmark
| | - J Koch
- Immunization Unit, Department for Infectious Disease Epidemiology, Robert Koch Institute (RKI), Berlin, Germany
| | - P Bruijning-Verhagen
- Centre for Infectious Disease Control, National Institute for Public Health and the Environment (RIVM), Bilthoven, the Netherlands; Julius Centre for Health Sciences and Primary Care, University Medical Centre Utrecht, Utrecht, the Netherlands.
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10
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Burden of rotavirus disease in young children in Iceland - Time to vaccinate? Vaccine 2021; 39:5422-5427. [PMID: 34384634 DOI: 10.1016/j.vaccine.2021.07.053] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/17/2021] [Revised: 06/22/2021] [Accepted: 07/20/2021] [Indexed: 11/21/2022]
Abstract
BACKGROUND Acute gastroenteritis poses a significant burden on young children, families, health care facilities and societies. Rotavirus is the most common pathogen, but rotavirus infections are vaccine preventable. Information on the epidemiology of gastroenteritis in Icelandic children has until now not been available and rotavirus vaccination is currently not offered to Icelandic infants. The objective of this study was to assess the burden of rotavirus acute gastroenteritis in young children in Iceland and determine the potential benefit of adding rotavirus vaccine to the Icelandic childhood immunization schedule. METHODS For a two-year period, children < 6 years old attending a children's emergency department for acute gastroenteritis were recruited at the Children's Hospital in Reykjavík, Iceland. Demographic information and Vesikari scores were registered. Stool samples were analyzed for pathogens. Duration of symptoms, treatment given, and secondary household infections were among the collected information. Annual cost of the infections in young children was estimated based on health care expenditures and lost days of parental work. RESULTS 325 children were included in the study, 75% of which were ≤ 24 months old. A pathogen was identified in 80% of cases, of which rotavirus was identified in 54%. Rotavirus caused a more severe disease than other pathogens, more often leading to fluid treatment in the emergency department and admissions. Median duration of rotavirus-illness was six days and caused a median of four days lost from work by parents. The estimated annual cost of rotavirus acute gastroenteritis was €2.9 million. CONCLUSIONS Rotavirus causes significant disease burden in young children. Although rarely life-threatening in high income countries, the costs for society are substantial. The inclusion of rotavirus vaccine in the national immunization schedule will reduce the disease burden and would be cost-saving in Iceland.
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Gibory M, Dembinski JL, Flem E, Haltbakk I, Dudman SG. Effect of rotavirus vaccine implementation on the prevalence of coinfections with enteric viruses in Norway. J Med Virol 2020; 92:3151-3156. [PMID: 32410230 DOI: 10.1002/jmv.26013] [Citation(s) in RCA: 3] [Impact Index Per Article: 0.6] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 10/17/2019] [Revised: 05/06/2020] [Accepted: 05/08/2020] [Indexed: 01/10/2023]
Abstract
Acute gastroenteritis (AGE) is a common illness in both adults and children worldwide and is caused by several microorganisms including viruses, bacteria, and parasites. Rotavirus (RV), which is the main cause of AGE, can occur as a mixed infection with other viruses. The aim of this study is to assess the molecular epidemiology of viral enteric viruses and assess RV coinfections with other enteric viruses and their influence on disease severity before and after RV vaccine introduction in children under 5 years of age. A total of 600 samples collected from children hospitalized for AGE in five large hospitals in Norway, and were analyzed for viral gastroenteritis agents by enzyme immunoassay and quantitative real-time polymerase chain reaction (qRT-PCR). Positive results confirmed either by Sanger sequencing or genotyped by multiplex semi-nested RT-PCR. In total, 243 of the 300 (81%) samples, collected from the prevaccine cohort, were positive for at least one of the four viruses tested in this study. RV was most frequently identified in 82.6% of the samples. In the postvaccine cohort, 114 of the 300 (38%) samples were positive for at least one of the viruses tested. RV found in 36.5% of the samples. Coinfections found less frequently in the postvaccine cohort. Among circulating enteric viruses in Norway, RV is the most important cause of viral gastrointestinal infection. As expected, there were fewer RV positive and fewer coinfections after RV vaccine implementation. The results provide valuable data that can aid in further evaluation of the vaccine impact.
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Affiliation(s)
- Moustafa Gibory
- Department of Microbiology, Faculty of Medicine, Institute of Clinical Medicine, University of Oslo, Oslo, Norway
- Department of Virology, Norwegian Institute of Public Health, Oslo, Norway
| | | | - Elmira Flem
- Department of Infection Epidemiology and Modeling, Norwegian Institute of Public Health, Oslo, Norway
| | - Ildri Haltbakk
- Department of Virology, Norwegian Institute of Public Health, Oslo, Norway
| | - Susanne G Dudman
- Department of Microbiology, Faculty of Medicine, Institute of Clinical Medicine, University of Oslo, Oslo, Norway
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Badur S, Ota M, Öztürk S, Adegbola R, Dutta A. Vaccine confidence: the keys to restoring trust. Hum Vaccin Immunother 2020; 16:1007-1017. [PMID: 32298198 PMCID: PMC7227637 DOI: 10.1080/21645515.2020.1740559] [Citation(s) in RCA: 58] [Impact Index Per Article: 11.6] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/04/2019] [Revised: 02/27/2020] [Accepted: 03/04/2020] [Indexed: 12/14/2022] Open
Abstract
During the 20th century, the discovery of modern vaccines and ensuing mass vaccination dramatically decreased the incidence of many infectious diseases and in some cases eliminated them. Despite this, we are now witnessing a decrease in vaccine confidence that threatens to reverse the progress made. Considering the different extents of low vaccine confidence in different countries of the world, both developed and developing, we aim to contribute to the discussion of the reasons for this, and to propose some viable scientific solutions to build or help restore vaccine confidence worldwide.
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Affiliation(s)
- Selim Badur
- EM, Vaccines Scientific Affairs and Public Health, GSK, Istanbul, Turkey
| | - Martin Ota
- EM, Vaccines Scientific Affairs and Public Health, GSK, Wavre, Belgium
| | | | - Richard Adegbola
- Immunisation & Global Health Consulting, RAMBICON, Lagos, Nigeria
| | - Anil Dutta
- Vaccines R&D Medical, GSK, Wavre, Belgium
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Bruun T, Watle SSV, Tveteraas IH, Flem E. Intussusception among Norwegian children: What to expect after introduction of rotavirus vaccination? Vaccine 2019; 37:5717-5723. [PMID: 31255303 DOI: 10.1016/j.vaccine.2019.06.058] [Citation(s) in RCA: 5] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/31/2019] [Revised: 06/14/2019] [Accepted: 06/18/2019] [Indexed: 11/17/2022]
Abstract
BACKGROUND To reduce the risk of vaccine-associated intussusception, rotavirus vaccination in Norway was implemented under strict age limits (the first dose given by 12 weeks of age and the second dose by 16 weeks of age) in 2014. We estimated the incidence of intussusception in children <2 years old before vaccine introduction and the number of vaccine-associated cases under current and extended age limits for vaccine administration in Norway. METHODS To estimate the baseline incidence, we validated all diagnoses in children <2 years old registered in the national hospital registry during the pre-vaccine period of 2008-2013. Using national vaccine coverage data and international estimates of intussusception risk after rotavirus vaccination, we calculated the numbers of expected vaccine-associated intussusception cases to compare with the estimated numbers of averted rotavirus cases. Uncertainty was accounted for by several scenario analyses using current and extended age limits for vaccine administration. RESULTS The pre-vaccine incidence of intussusception was 26.7 (95% CI 23.1-30.6) cases/year per 100,000 children <2 years old and 37.1 (95% CI 31.2-43.8) cases/year per 100,000 children <1 year old. In the 2016 birth cohort (approx. 60,000) vaccinated under the current age limits, 1.3 (95% CI 0.7-2.0) vaccine-associated intussusception cases were expected to occur. If age limits were extended to 16 weeks for the first vaccine dose and 24 weeks for the second dose, leading to more children vaccinated at an older age, 2.2 (95% CI 1.2-3.5) excess cases would be expected in the same cohort. Simultaneously, an estimated 1768 rotavirus hospitalizations/year in children <5 years old would be averted under current age limits, with 98 additional rotavirus hospitalizations averted under extended age limits. CONCLUSIONS Administering rotavirus vaccines beyond current age limits in Norway would lead to a marginal increase in the number of intussusception cases, which would be offset by the benefits of vaccination.
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Affiliation(s)
- Tone Bruun
- Norwegian Institute of Public Health, PO Box 222 Skøyen, N-0213 Oslo, Norway.
| | | | | | - Elmira Flem
- Norwegian Institute of Public Health, PO Box 222 Skøyen, N-0213 Oslo, Norway
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Brouwer AF, Masters NB, Eisenberg JNS. Quantitative Microbial Risk Assessment and Infectious Disease Transmission Modeling of Waterborne Enteric Pathogens. Curr Environ Health Rep 2019; 5:293-304. [PMID: 29679300 DOI: 10.1007/s40572-018-0196-x] [Citation(s) in RCA: 25] [Impact Index Per Article: 4.2] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/20/2022]
Abstract
PURPOSE OF REVIEW Waterborne enteric pathogens remain a global health threat. Increasingly, quantitative microbial risk assessment (QMRA) and infectious disease transmission modeling (IDTM) are used to assess waterborne pathogen risks and evaluate mitigation. These modeling efforts, however, have largely been conducted independently for different purposes and in different settings. In this review, we examine the settings where each modeling strategy is employed. RECENT FINDINGS QMRA research has focused on food contamination and recreational water in high-income countries (HICs) and drinking water and wastewater in low- and middle-income countries (LMICs). IDTM research has focused on large outbreaks (predominately LMICs) and vaccine-preventable diseases (LMICs and HICs). Human ecology determines the niches that pathogens exploit, leading researchers to focus on different risk assessment research strategies in different settings. To enhance risk modeling, QMRA and IDTM approaches should be integrated to include dynamics of pathogens in the environment and pathogen transmission through populations.
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Affiliation(s)
- Andrew F Brouwer
- Department of Epidemiology, University of Michigan, Ann Arbor, MI, 48109, USA
| | - Nina B Masters
- Department of Epidemiology, University of Michigan, Ann Arbor, MI, 48109, USA
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Cost-effectiveness estimates of vaccination against rotavirus in Piedmont, Italy. J Infect Public Health 2018; 11:867-872. [DOI: 10.1016/j.jiph.2018.07.008] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/24/2018] [Revised: 06/29/2018] [Accepted: 07/16/2018] [Indexed: 12/31/2022] Open
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Gibory M, Haltbakk I, Flem E, Vainio K, Salamanca BV, Størdal K, Nordbø SA, Jakobsen K, Haarr E, Dudman SG. Rotavirus detection in bulk stool and rectal swab specimens in children with acute gastroenteritis in Norway. J Clin Virol 2017; 97:50-53. [DOI: 10.1016/j.jcv.2017.10.017] [Citation(s) in RCA: 4] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/20/2017] [Revised: 09/28/2017] [Accepted: 10/31/2017] [Indexed: 11/25/2022]
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