Scalable production and immunogenicity of a cholera conjugate vaccine
Suhi Jeon1, Meagan Kelly2, Jeesun Yun1
1Eubiologics Ltd, Gangnam-gu, Seoul, South Korea.
Insights
A new cholera conjugate vaccine (CCV) shows promise for protecting young children. Preclinical studies demonstrate its ability to induce robust immune responses and protection against Vibrio cholerae O1.
Area of Science:
- Vaccinology
- Microbiology
- Immunology
Background:
- Current oral cholera vaccines (OCV) offer limited protection in children under five.
- Young children exhibit poor immune responses to polysaccharide antigens, crucial for cholera immunity.
- Existing vaccines face challenges for integration into Expanded Programme of Immunization (EPI) in endemic regions.
Purpose of the Study:
- To develop and evaluate a novel cholera conjugate vaccine (CCV) for improved efficacy in young children.
- To assess the immunogenicity and protective potential of CCV in preclinical models.
- To investigate the role of aluminum phosphate (alum) as an adjuvant in CCV vaccination.
Main Methods:
- Production of CCV using a scalable manufacturing process, displaying Vibrio cholerae O1 O-specific polysaccharide (OSP).
- Physico-chemical characterization and immunogenicity testing of pilot-scale CCV batches.
- Preclinical evaluation in a Vibrio cholerae O1 challenge model, with and without alum adjuvant.
Main Results:
- CCV induced significant OSP- and lipopolysaccharide (LPS)-specific IgG and IgM, vibriocidal, and memory B cell responses.
- Vaccination with CCV conferred protection in a Vibrio cholerae O1 challenge model.
- The addition of alum as an adjuvant enhanced OSP-specific immune responses.
Conclusions:
- The developed CCV is manufacturable via a scalable process and demonstrates promising preclinical immunogenicity and protection.
- CCV elicits key immune responses against Vibrio cholerae O1, including in the presence of alum.
- These findings support further clinical evaluation of CCV for cholera prevention in vulnerable populations, particularly young children.
Abstract:
There is a need to develop cholera vaccines that are protective in young children under 5 years of age, which induce long-term immunity, and which can be incorporated into the Expanded Programme of Immunization (EPI) in cholera-endemic countries. The degree of protection afforded by currently available oral cholera vaccines (OCV) to young children is significantly lower than that induced by vaccination of older vaccine recipients. Immune responses that protect against cholera target the O-specific polysaccharide (OSP) of Vibrio cholerae, and young children have poor immunological responses to bacterial polysaccharides, which are T cell independent antigens. To overcome this, we have developed a cholera conjugate vaccine (CCV) containing the OSP of V. cholerae O1, the main cause of endemic and epidemic cholera. Here, we describe production of CCV through a scalable manufacturing process and preclinical evaluation of immunogenicity in the presence and absence of aluminum phosphate (alum) as an adjuvant. The vaccine displays V. cholerae O1 Inaba OSP in sun-burst display via single point attachment of core oligosaccharide to a recombinant tetanus toxoid heavy chain fragment (rTTHc). Two different pilot-scale production batches of non-GMP CCV were manufactured and characterized in terms of physico-chemical properties and immunogenicity. In preclinical testing, the vaccine induced OSP- and lipopolysaccharide (LPS)-specific IgG and IgM responses, vibriocidal responses, memory B cell responses, and protection in a V. cholerae O1 challenge model. The addition of alum to the administered vaccine increased OSP-specific immune responses. These results support evaluation of CCV in humans.
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