Trivalent outer membrane vesicles-based combination vaccine candidate induces protective immunity against Campylobacter and invasive non-typhoidal Salmonella in adult mice

Author:

Banerjee Soumalya1,Halder Prolay1,Das Sanjib1,Maiti Suhrid1,Withey Jeffrey H.2,Mitobe Jiro3,Chowdhury Goutam1,Kitahara Kei4,Miyoshi Shin-ichi4,Mukhopadhyay Asish Kumar1,Dutta Shanta1,Koley Hemanta1

Affiliation:

1. ICMR-National Institute of Cholera and Enteric Diseases

2. Wayne State University School of Medicine

3. Kyorin University School of Medicine

4. Okayama University

Abstract

Abstract Campylobacter and non-typhoidal Salmonella (NTS) are among the most common causative agents of gastroenteritis worldwide. As of now, no single combination licensed vaccine is available for public health use against both NTS and Campylobacterspecies. Outer-membrane vesicles (OMVs) are nanoscale proteoliposomes released from the surface of gram-negative bacteria during log phase and harbor a variety of immunogenic proteins. Based on epidemiology of infections, we formulated a novel trivalent outer membrane vesicles (TOMVs)-based vaccine candidate against Campylobacter jejuni (CJ),Salmonella Typhimurium (ST) andSalmonella Enteritidis (SE). Isolated OMVs from CJ, ST and SE were combined in equal ratios for formulation of TOMVs and 5 µg of the developed vaccine candidate was used for intraperitoneal immunization of adult BALB/c mice. Immunization with TOMVs significantly activated both the humoral and cellular arm of adaptive immune response. Robust bactericidal effect was elicited by TOMVs immunized adult mice sera. TOMVs immunization induced long-term protective efficacy against CJ, ST and SE infections in mice. The study illustrates the ability of TOMVs-based combination immunogen in eliciting broad-spectrum protective immunity against prevalent Campylobacter and NTS pathogens. According to the findings, TOMVs can work as a potent combination-based acellular vaccine candidate for amelioration of Campylobacter and NTS-mediated gastroenteritis.

Publisher

Research Square Platform LLC

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