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Food Environ Virol . Evaluation of the Efficacy of Low-Concentration Gaseous Chlorine Dioxide in Inactivating Airborne H5 High Pathogenicity Avian I

tetano

Editor, Senior Moderator
Food Environ Virol


. 2026 Jan 23;18(1):4.
doi: 10.1007/s12560-026-09677-3.
Evaluation of the Efficacy of Low-Concentration Gaseous Chlorine Dioxide in Inactivating Airborne H5 High Pathogenicity Avian Influenza Virus in Vivo Model

Yik Lim Hew[SUP] 1 [/SUP], Norikazu Isoda[SUP] 2 3 4 5 [/SUP], Takanori Miura[SUP] 6 [/SUP], Takahiro Hiono[SUP] 1 7 8 9 [/SUP], Yoshihiro Sakoda[SUP] 1 7 8 9 [/SUP]


Affiliations
Abstract

H5 high pathogenicity avian influenza virus (HPAIV) continues to spread globally, causing several high pathogenicity avian influenza (HPAI) outbreaks in poultry and significant economic losses. Biosecurity measures that prevent the introduction of HPAIV represent a top priority for controlling HPAI outbreaks on poultry farms. Although these measures are crucial for minimizing HPAI introduction, outbreaks of viral infection on poultry farms persist, underscoring the importance of continuously improving biosecurity protocols. Therefore, safe and effective microbicide disinfectants could play an essential role in reducing viral spread by inactivating viral particles on surfaces and in the air. This study assessed the efficacy of gaseous chlorine dioxide (ClO[SUB]2[/SUB]) against H5 HPAIV under both gaseous ClO[SUB]2[/SUB] inactivation setting and in vivo conditions. In the gaseous ClO[SUB]2[/SUB] inactivation setting, only low virus titers were recovered (< 0.5-1.5 log[SUB]10[/SUB] TCID[SUB]50[/SUB]/mL) when H5 HPAIV aerosols were exposed to gaseous ClO[SUB]2[/SUB] (0.05 ppmv, 0.14 mg/m[SUP]3[/SUP]) for 5 min, corresponding to an approximately 2.0-3.0 log[SUB]10[/SUB] reduction. Furthermore, in vivo, all chicks exposed to aerosolized H5 HPAIV, which were treated with 0.1 ppmv gaseous ClO[SUB]2,[/SUB] survived for 14 days post-challenge, demonstrating complete protection against the virus. The minimum effective concentration of gaseous ClO[SUB]2[/SUB] was 0.01 ppmv for 5 min of inactivation in the inactivation setting, and 0.05 ppmv for 5 min in vivo, indicating that relatively low concentrations are sufficient for effective viral inactivation. Therefore, gaseous ClO[SUB]2[/SUB] was effective at inactivating aerosolized H5 HPAIV and has potential for use as a disinfectant to prevent HPAIV introduction into poultry. (245/250) words.

Keywords: Chick model; Disinfectants; Gaseous ClO2; H5 HPAIV; Poultry; TCID50.

 
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