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Homogeneous Glycoconjugate Produced by Combined Unnatural Amino Acid Incorporation and Click-Chemistry for Vaccine Purposes
Published on: December 19, 2020
Development of capsular polysaccharide-based glycoconjugates for immunization against melioidosis and glanders
Mary N Burtnick1, Christian Heiss, Rosemary A Roberts
1Department of Microbiology and Immunology, University of South Alabama Mobile, AL, USA.
Abstract:
Burkholderia pseudomallei and Burkholderia mallei, the etiologic agents of melioidosis and glanders, respectively, cause severe disease in humans and animals and are considered potential agents of biological warfare and terrorism. Diagnosis and treatment of infections caused by these pathogens can be challenging and, in the absence of chemotherapeutic intervention, acute disease is frequently fatal. At present, there are no human or veterinary vaccines available for immunization against these emerging/re-emerging infectious diseases. One of the long term objectives of our research, therefore, is to identify and characterize protective antigens expressed by B. pseudomallei and B. mallei and use them to develop efficacious vaccine candidates. Previous studies have demonstrated that the 6-deoxy-heptan capsular polysaccharide (CPS) expressed by these bacterial pathogens is both a virulence determinant and a protective antigen. Consequently, this carbohydrate moiety has become an important component of the various subunit vaccines that we are currently developing in our laboratory. In the present study, we describe a reliable method for isolating CPS antigens from O-polysaccharide (OPS) deficient strains of B. pseudomallei; including a derivative of the select agent excluded strain Bp82. Utilizing these purified CPS samples, we also describe a simple procedure for covalently linking these T-cell independent antigens to carrier proteins. In addition, we demonstrate that high titer IgG responses can be raised against the CPS component of such constructs. Collectively, these approaches provide a tangible starting point for the development of novel CPS-based glycoconjugates for immunization against melioidosis and glanders.
Insights
Developing vaccines against Burkholderia pathogens is crucial. Researchers created a method to isolate and link capsular polysaccharides (CPS) to carrier proteins, successfully eliciting strong immune responses for potential melioidosis and glanders vaccines.
Area of Science:
- Microbiology
- Immunology
- Vaccine Development
Background:
- * Burkholderia pseudomallei and Burkholderia mallei cause severe melioidosis and glanders, posing biowarfare threats.
- * Current treatments are limited, and no vaccines exist for these emerging infectious diseases.
- * The 6-deoxy-heptan capsular polysaccharide (CPS) is a known virulence factor and protective antigen.
Purpose of the Study:
- * To develop a reliable method for isolating CPS antigens from O-polysaccharide (OPS) deficient B. pseudomallei strains.
- * To create a procedure for covalently linking these CPS antigens to carrier proteins.
- * To demonstrate the immunogenicity of these novel glycoconjugate constructs.
Main Methods:
- * Isolation of CPS antigens from OPS-deficient B. pseudomallei strains, including Bp82.
- * Covalent conjugation of purified CPS to carrier proteins.
- * Measurement of IgG antibody titers in response to the glycoconjugate vaccines.
Main Results:
- * A reliable method for CPS antigen isolation was established.
- * A simple procedure for linking CPS to carrier proteins was developed.
- * High-titer IgG responses were successfully induced against the CPS component of the glycoconjugates.
Conclusions:
- * The developed methods provide a viable strategy for creating novel CPS-based glycoconjugate vaccines.
- * These vaccines show promise for immunization against melioidosis and glanders.
- * This research offers a tangible starting point for combating these dangerous bacterial infections.

