Wastewater surveillance reveals true scale of COVID-19 spread as clinical testing declines
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Wastewater surveillance reveals true scale of COVID-19 spread as clinical testing declines


A study in Japan demonstrates that sewage analysis provides a more accurate picture of community infection levels, countering the underestimation caused by reduced testing

Osaka, Japan - As COVID-19 testing becomes less routine, official case numbers can make outbreaks look smaller than they really are. A research team led by Professor Michio Murakami has now shown that wastewater surveillance can uncover this “invisible” spread, providing a more objective picture of community infections and offering early warning signs for hospital-acquired cases.

Traditionally, public health authorities have relied on data from clinical tests, such as PCR, to monitor infectious disease outbreaks. However, this approach has limitations. When the number of tests performed decreases. For instance, after a change in public health policy or a drop in public concern, the official statistics may no longer reflect the true prevalence of the virus. Infections in asymptomatic individuals or those who do not seek testing go unrecorded, leading to a potential underestimation of the infection risk.

The research team compared viral concentrations in wastewater with the number of reported cases and clinical tests conducted in Sapporo, Japan. They found that after COVID-19 was reclassified to a lower alert level in Japan, the number of reported infections diverged significantly from the high viral loads still present in sewage. The study quantitatively confirmed that this disparity was directly attributable to the sharp decrease in the number of clinical tests being performed. This finding indicates that statistics based solely on clinical testing can be misleading.

This study underscores the critical importance of a multi-layered surveillance system that does not depend too heavily on clinical testing. Wastewater surveillance offers an objective tool for grasping the overall infection situation in a community. The findings can help strengthen the basis for public health decisions, such as adjusting alert levels, implementing infection control measures in healthcare facilities, and guiding public information campaigns. The research contributes to future public health policy by highlighting a robust method for monitoring infectious diseases, even when testing capacity is limited.

"A decrease in reported cases doesn't always mean a lower infection risk," says lead author Professor Michio Murakami. "Our study uses independent wastewater data to show how a decline in testing can obscure the true scale of an outbreak. Wastewater surveillance offers an objective view of community-wide infection levels, unaffected by changes in testing policies or public behavior. It highlights the need for a multi-layered surveillance system."
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The article, “Insights from wastewater surveillance into testing-related underreporting and hospital-acquired SARS-CoV-2 infections,” was published in Environment International at DOI: https://doi.org/10.1016/j.envint.2025.110028

About The University of Osaka
The University of Osaka was founded in 1931 as one of the seven imperial universities of Japan and is now one of Japan's leading comprehensive universities with a broad disciplinary spectrum. This strength is coupled with a singular drive for innovation that extends throughout the scientific process, from fundamental research to the creation of applied technology with positive economic impacts. Its commitment to innovation has been recognized in Japan and around the world. Now, The University of Osaka is leveraging its role as a Designated National University Corporation selected by the Ministry of Education, Culture, Sports, Science and Technology to contribute to innovation for human welfare, sustainable development of society, and social transformation.
Website: https://resou.osaka-u.ac.jp/en
Title: Insights from wastewater surveillance into testing-related underreporting and hospital-acquired SARS-CoV-2 infections
Journal: Environment International
Authors: Michio Murakami, Nobuhisa Ishiguro, Hiroki Ando, Mutsumi Ishida, Toshihiro Hamada, Sho Nakakubo, Reiko Oyamada, Takahiro Hayashi, Yusuke Niinuma, Keisuke Kagami, Tatsuya Fukumoto, Keisuke Taki, Tomoyuki Endo, and Masaaki Kitajima
DOI: 10.1016/j.envint.2025.110028
Funded by:
Japan Agency for Medical Research and Development
Japan Science and Technology Agency
The Nippon Foundation -Osaka University Project for Infectious Disease Prevention
Article publication date: 24-December-2025
Related links:
Center for Infectious Disease Education and Research
https://www.cider.osaka-u.ac.jp/
Fichiers joints
  • Fig. 1 SARS-CoV-2 RNA concentrations in wastewater, and community-acquired infection cases and hospital-acquired infections reported at a university hospital©Original content, Only noncommercial uses of the work are permitted., Michio Murakami, Nobuhisa Ishiguro, Hiroki Ando, Mutsumi Ishida, Toshihiro Hamada, Sho Nakakubo, Reiko Oyamada, Takahiro Hayashi, Yusuke Niinuma, Keisuke Kagami, Tatsuya Fukumoto, Keisuke Taki, Tomoyuki Endo, Masaaki Kitajima: Insights from wastewater surveillance into testing-related underreporting and hospital-acquired SARS-CoV-2 infections, Environment International, 207, 110028, 2026. doi: 10.1016/j.envint.2025.110028.
Regions: Asia, Japan
Keywords: Health, Covid-19, Medical

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