Immunogenicity of norovirus VP1-expressing silkworm (Bombyx mori) pupae as an edible vaccine candidate

Norovirus (NV) gastroenteritis remains a global health challenge, particularly affecting infants and the elderly. Despite its significant clinical impact, no licensed vaccine is currently available. This study explores a novel approach to NV vaccine development using the silkworm-baculovirus expression vector system (silkworm-BEVS), focusing on non-purified VP1-expressing silkworm pupae as a potential edible vaccine candidate. We assessed the immunogenicity of orally administered VP1-expressing silkworm pupae in mice using two delivery formats: crude pupal suspensions administered by oral gavage and freeze-dried whole pupae provided by free-feeding. Oral gavage induced dose- and time-dependent antigen-specific IgG in serum and IgA in intestinal lavage fluid (ILF). The serum antibodies also showed HBGA-blocking activity. Importantly, free-feeding also elicited robust antigen-specific IgG and IgA responses. Pooled sera and ILF from free-fed mice showed neutralizing activity against NV in a human induced pluripotent stem cell (iPSC)-derived intestinal epithelial cell-based assay. Our findings demonstrate that oral administration of VP1-expressing silkworm pupal preparations induces both systemic and mucosal immune responses, which may be relevant to protective immunity against NV. Collectively, these results support the potential of non-purified VP1-expressing silkworm pupae as an edible vaccine candidate and provide a foundation for further development of silkworm-BEVS-based edible vaccines.

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Publication Details

Journal
Vaccine
Published
2026-09-18
DOI
https://doi.org/10.1016/j.vaccine.2026.129108
Primary Topic
Viral Infectious Diseases and Gene Expression in Insects
Type
article
Field-Weighted Citation Impact
0.00

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article

Immunogenicity of norovirus VP1-expressing silkworm (Bombyx mori) pupae as an edible vaccine candidate

Hiroaki Mon, Takahiro Kusakabe, Naomi Sakon, Jae Man Lee et al.
Vaccine
Viral Infectious Diseases and Gene Expression in Insects
article

Immunogenicity of norovirus VP1-expressing silkworm (Bombyx mori) pupae as an edible vaccine candidate

Hiroaki Mon, Takahiro Kusakabe, Naomi Sakon, Jae Man Lee, Takeru Ebihara, Shintaro Sato, Akitsu Masuda, Kiyotada Naitou, Shigeyuki Tamiya, Yuuka Chieda, Hiroshi Ushijima, Takeshi Miyata, Masahiro Taniguchi, Ako Kimura, Yusaku Mikaki, Tomoki Sasaki
article en

Abstract

Norovirus (NV) gastroenteritis remains a global health challenge, particularly affecting infants and the elderly. Despite its significant clinical impact, no licensed vaccine is currently available. This study explores a novel approach to NV vaccine development using the silkworm-baculovirus expression vector system (silkworm-BEVS), focusing on non-purified VP1-expressing silkworm pupae as a potential edible vaccine candidate. We assessed the immunogenicity of orally administered VP1-expressing silkworm pupae in mice using two delivery formats: crude pupal suspensions administered by oral gavage and freeze-dried whole pupae provided by free-feeding. Oral gavage induced dose- and time-dependent antigen-specific IgG in serum and IgA in intestinal lavage fluid (ILF). The serum antibodies also showed HBGA-blocking activity. Importantly, free-feeding also elicited robust antigen-specific IgG and IgA responses. Pooled sera and ILF from free-fed mice showed neutralizing activity against NV in a human induced pluripotent stem cell (iPSC)-derived intestinal epithelial cell-based assay. Our findings demonstrate that oral administration of VP1-expressing silkworm pupal preparations induces both systemic and mucosal immune responses, which may be relevant to protective immunity against NV. Collectively, these results support the potential of non-purified VP1-expressing silkworm pupae as an edible vaccine candidate and provide a foundation for further development of silkworm-BEVS-based edible vaccines.

VaccineVol. 92
Nihon University (JP), Kagoshima University (JP), Kyushu University (JP), Wakayama Medical University (JP), Osaka Prefectural Institute of Public Health (JP)
Japan Agency for Medical Research and Development, Ministry of Economy, Trade and Industry, Japan Society for the Promotion of Science
Zero hunger
Openalex Percentile: Top 18%
Viral Infectious Diseases and Gene Expression in Insects
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