Cell Wall Protein 2 as a Vaccine Candidate Protects Mice Against Clostridioides difficile Infection.

细胞壁蛋白 2 作为疫苗候选物可保护小鼠免受艰难梭菌感染

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作者:Wang Shaohui, Heuler Joshua, Bullock Jessica, Qin Junling, Chakraborty Soumyadeep, Nathaniel Agbendeh Lubem, Wang Shifeng, Sun Xingmin
BACKGROUND/OBJECTIVES: Clostridioides difficile is a Gram-positive, spore-forming enteric pathogen that causes intestinal disorders, including inflammation and diarrhea, primarily through toxin production. Standard treatment options for C. difficile infection (CDI) involve a limited selection of antibiotics that are not fully effective, leading to high recurrence rates. Vaccination presents a promising strategy for preventing both CDI and its recurrence. Cell wall protein 2 (Cwp2), a highly immunogenic and abundant surface-exposed C. difficile cell wall protein, plays an important role in the bacterium's adherence in vitro. In this study, we aimed to analyze the homology and immunogenicity of Cwp2 and its protection efficacy as a vaccine candidate against CDI in mice. METHODS: we conducted in silico analyses to assess the homology and immunogenicity of Cwp2, and we evaluated its potential as a vaccine candidate against CDI using a mouse model of immunization and infection. RESULTS: Our in silico analyses predicted the immunogenic region (functional domain) of Cwp2 and revealed its high homology among various toxinotypes and ribotypes (R.T.s) or sequence types (S.T.s). Immunizations of mice with the Cwp2 functional domain (Cwp2_A) induced potent IgG/A antibody responses against Cwp2_A, protected mice from CDI, and reduced C. difficile spore and toxin levels in feces post-infection. Additionally, anti-Cwp2_A sera inhibited the binding of C. difficile vegetative cells to HCT8 cells. CONCLUSIONS: Our report demonstrates for the first time the potential of Cwp2_A as an effective vaccine candidate against CDI in mice.

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