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In silico designing of vaccine candidate against Clostridium difficile.
Basak, Srijita; Deb, Debashrito; Narsaria, Utkarsh; Kar, Tamalika; Castiglione, Filippo; Sanyal, Indraneel; Bade, Pratap D; Srivastava, Anurag P.
Afiliação
  • Basak S; Biopharmaceutical Development Department, Syngene International Limited, Bangalore, India.
  • Deb D; Biopharmaceutical Development Department, Syngene International Limited, Bangalore, India.
  • Narsaria U; Biopharmaceutical Development Department, Syngene International Limited, Bangalore, India.
  • Kar T; Biopharmaceutical Development Department, Syngene International Limited, Bangalore, India.
  • Castiglione F; Institute for Applied Computing (IAC), National Research Council of Italy, Rome, Italy.
  • Sanyal I; Biopharmaceutical Development Department, Syngene International Limited, Bangalore, India.
  • Bade PD; Biopharmaceutical Development Department, Syngene International Limited, Bangalore, India. Pratap.Bade@syngeneintl.com.
  • Srivastava AP; Biopharmaceutical Development Department, Syngene International Limited, Bangalore, India. Anurag.Srivastava@syngeneintl.com.
Sci Rep ; 11(1): 14215, 2021 07 09.
Article em En | MEDLINE | ID: mdl-34244557
ABSTRACT
Clostridium difficile is a spore-forming gram-positive bacterium, recognized as the primary cause of antibiotic-associated nosocomial diarrhoea. Clostridium difficile infection (CDI) has emerged as a major health-associated infection with increased incidence and hospitalization over the years with high mortality rates. Contamination and infection occur after ingestion of vegetative spores, which germinate in the gastro-intestinal tract. The surface layer protein and flagellar proteins are responsible for the bacterial colonization while the spore coat protein, is associated with spore colonization. Both these factors are the main concern of the recurrence of CDI in hospitalized patients. In this study, the CotE, SlpA and FliC proteins are chosen to form a multivalent, multi-epitopic, chimeric vaccine candidate using the immunoinformatics approach. The overall reliability of the candidate vaccine was validated in silico and the molecular dynamics simulation verified the stability of the vaccine designed. Docking studies showed stable vaccine interactions with Toll-Like Receptors of innate immune cells and MHC receptors. In silico codon optimization of the vaccine and its insertion in the cloning vector indicates a competent expression of the modelled vaccine in E. coli expression system. An in silico immune simulation system evaluated the effectiveness of the candidate vaccine to trigger a protective immune response.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Vacinas Bacterianas / Clostridioides difficile / Infecções por Clostridium Tipo de estudo: Prognostic_studies Limite: Humans Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Vacinas Bacterianas / Clostridioides difficile / Infecções por Clostridium Tipo de estudo: Prognostic_studies Limite: Humans Idioma: En Ano de publicação: 2021 Tipo de documento: Article