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Elucidation of protein biomarkers in plasma and urine for epsilon toxin exposure in mouse model.
Babele, Prabhakar; Verma, Smarti; Kumar, Ravi Bhushan; Bhagyawant, Sameer Suresh; Kamboj, Dev Vrat; Alam, Syed Imteyaz.
Affiliation
  • Babele P; Biotechnology Division, Defence Research & Development Establishment, Gwalior, 474002, India.
  • Verma S; Biotechnology Division, Defence Research & Development Establishment, Gwalior, 474002, India.
  • Kumar RB; Biotechnology Division, Defence Research & Development Establishment, Gwalior, 474002, India.
  • Bhagyawant SS; School of Studies in Biotechnology, Jiwaji University, Gwalior, India.
  • Kamboj DV; Biotechnology Division, Defence Research & Development Establishment, Gwalior, 474002, India.
  • Alam SI; Biotechnology Division, Defence Research & Development Establishment, Gwalior, 474002, India. Electronic address: syimteyaz@gmail.com.
Anaerobe ; 59: 76-91, 2019 Oct.
Article in En | MEDLINE | ID: mdl-31145997
ABSTRACT
Epsilon toxin (ETX) is the major virulence determinant of C. perfringens type B or type D strains, causing diseases in animals, besides being a listed biological and toxin warfare (BTW) agent. Keeping in mind the high lethality and the rapid onset of clinical manifestations, early diagnosis of epsilon toxin exposure is of paramount importance for implementation of appropriate medical countermeasures. Using a 2DE-MS approach, the present study is the first comprehensive proteomic elucidation of ETX-induced protein markers in the mouse model, providing putative targets for early diagnosis of ETX exposure. A total of 52 unique proteins showing ETX-induced modulations were identified in plasma and urine samples. Fibrinogen, apolipoprotein, serum amyloid protein, plasminogen, serum albumin, glutathione peroxidase, transferrin, major urinary protein 2, haptoglobin, transthyretin, and vitamin D-binding protein were among the proteins observed in more than one dataset with altered abundance after the ETX-intoxication. The predicted localization, function, and interaction of the ETX-modulated proteins in the plasma and urine indicated involvement of multiple pathways; extracellular proteins, followed by macromolecular complexes associated with blood coagulation and plasminogen activating cascade, being the most prominent among others. The putative markers elucidated here warrants further validation and can be of immense value for the early diagnosis of ETX exposure.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Poisoning / Bacterial Toxins / Biomarkers / Proteins Type of study: Prognostic_studies / Screening_studies Limits: Animals Language: En Journal: Anaerobe Year: 2019 Type: Article Affiliation country: India

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Poisoning / Bacterial Toxins / Biomarkers / Proteins Type of study: Prognostic_studies / Screening_studies Limits: Animals Language: En Journal: Anaerobe Year: 2019 Type: Article Affiliation country: India