2020
DOI: 10.1016/j.molimm.2020.02.008
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In silico design of a vaccine candidate based on autotransporters and HSP against the causal agent of shigellosis, Shigella flexneri

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Cited by 7 publications
(11 citation statements)
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“…S. flexneri is one of the most important causing agents of shigellosis, and increasing bacterial antibiotic resistance prompts the development of safe and effective vaccines. Previously, we made an in silico design of a vaccine that contained an adjuvant, HSP-GroEL of S. Typhi, fused with highly immunodominant epitopes from the passenger domain of SigA, Pic, and Sap autotransporters proteins of Shigella [ 16 ]. The autotransporters that were chosen for the vaccine construction are well conserved in Shigella spp.…”
Section: Discussionmentioning
confidence: 99%
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“…S. flexneri is one of the most important causing agents of shigellosis, and increasing bacterial antibiotic resistance prompts the development of safe and effective vaccines. Previously, we made an in silico design of a vaccine that contained an adjuvant, HSP-GroEL of S. Typhi, fused with highly immunodominant epitopes from the passenger domain of SigA, Pic, and Sap autotransporters proteins of Shigella [ 16 ]. The autotransporters that were chosen for the vaccine construction are well conserved in Shigella spp.…”
Section: Discussionmentioning
confidence: 99%
“…We had previously designed an in silico gene construction with the sequences of the HSP GroEL of S. Typhi and the highly antigenic epitopes that were selected from three passenger domains of SigA, Pic, and Sap autotransporters of S. flexneri . These sequences were linked together with different proper linkers, EAAAK, GSGSAAY, and HEYGAEALERAG, according to the in silico design of vaccine that was described in León et al [ 16 ]. The constructed gene was named multiepitope S. flexneri (MESF).…”
Section: Methodsmentioning
confidence: 99%
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