Trends in uptake and impact of thermostable vaccines in Africa.

Q2 Medicine
Therapeutic Advances in Vaccines and Immunotherapy Pub Date : 2025-06-18 eCollection Date: 2025-01-01 DOI:10.1177/25151355251341662
Sophia Khalayi Kitui, Evans Juma, Maureen Tayamika Ndalama, Dagmawi Chilot, Dejene Tolossa, Betelhiem Woldemedhin, Seke G Y Muzazu, Kidist Digamo, Job Mungania, Tsegahun Manyazewal
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引用次数: 0

Abstract

Vaccination in Africa faces significant challenges due to inadequate cold chain infrastructure, particularly in regions lacking reliable electricity. Approximately 80% of prequalified vaccines require cold chain systems to maintain their potency, which is often unfeasible in remote areas. Exposure to extreme temperatures can lead to a loss of vaccine potency, making it crucial to explore alternatives. Thermostable vaccines represent a technological advancement that addresses these challenges by eliminating the need for cold chain mechanisms during transport and storage. This narrative review analyzes trends in the uptake of thermostable vaccines and their impact across Africa. A total of 10 studies were reviewed, encompassing 14 African countries, revealing critical insights into the potential of thermostable vaccines to enhance immunization coverage in settings with limited access to traditional cold chain facilities. These vaccines, which maintain their efficacy even when exposed to higher temperatures for short periods, offer a promising solution to the logistical and economic hurdles of vaccine delivery in resource-limited settings.

非洲使用耐热疫苗的趋势和影响。
由于冷链基础设施不足,特别是在缺乏可靠电力的地区,非洲的疫苗接种面临重大挑战。大约80%的资格预审疫苗需要冷链系统来保持其效力,这在偏远地区往往是不可行的。暴露在极端温度下可能导致疫苗效力丧失,因此探索替代方案至关重要。耐热疫苗代表了一项技术进步,通过消除运输和储存过程中对冷链机制的需求,解决了这些挑战。本综述分析了在整个非洲使用耐热性疫苗的趋势及其影响。总共审查了10项研究,涉及14个非洲国家,揭示了耐热疫苗在传统冷链设施有限的环境中提高免疫覆盖率的潜力的重要见解。这些疫苗即使短期暴露在较高温度下也能保持其效力,为解决在资源有限的情况下疫苗交付的后勤和经济障碍提供了一个有希望的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Therapeutic Advances in Vaccines and Immunotherapy
Therapeutic Advances in Vaccines and Immunotherapy Medicine-Pharmacology (medical)
CiteScore
5.10
自引率
0.00%
发文量
15
审稿时长
8 weeks
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