Glycovaccine Design: Optimization of Model and Antitubercular Carrier Glycosylation via Disuccinimidyl Homobifunctional Linker.

Ag85B antigen antitubercular vaccines chemical glycosylation disuccinimidyl linkers glycoconjugate characterization glycoconjugate vaccines glycosylation optimization

Journal

Pharmaceutics
ISSN: 1999-4923
Titre abrégé: Pharmaceutics
Pays: Switzerland
ID NLM: 101534003

Informations de publication

Date de publication:
23 Apr 2023
Historique:
received: 10 03 2023
revised: 31 03 2023
accepted: 21 04 2023
medline: 27 5 2023
pubmed: 27 5 2023
entrez: 27 5 2023
Statut: epublish

Résumé

Conjugation via disuccinimidyl homobifunctional linkers is reported in the literature as a convenient approach for the synthesis of glycoconjugate vaccines. However, the high tendency for hydrolysis of disuccinimidyl linkers hampers their extensive purification, which unavoidably results in side-reactions and non-pure glycoconjugates. In this paper, conjugation of 3-aminopropyl saccharides via disuccinimidyl glutarate (DSG) was exploited for the synthesis of glycoconjugates. A model protein, ribonuclease A (RNase A), was first considered to set up the conjugation strategy with mono- to tri- mannose saccharides. Through a detailed characterization of synthetized glycoconjugates, purification protocols and conjugation conditions have been revised and optimized with a dual aim: ensure high sugar-loading and avoid the presence of side reaction products. An alternative purification approach based on hydrophilic interaction liquid chromatography (HILIC) allowed the formation of glutaric acid conjugates to be avoided, and a design of experiment (DoE) approach led to optimal glycan loading. Once its suitability was proven, the developed conjugation strategy was applied to the chemical glycosylation of two recombinant antigens, native Ag85B and its variant Ag85B-dm, that are candidate carriers for the development of a novel antitubercular vaccine. Pure glycoconjugates (≥99.5%) were obtained. Altogether, the results suggest that, with an adequate protocol, conjugation via disuccinimidyl linkers can be a valuable approach to produce high sugar-loaded and well-defined glycovaccines.

Identifiants

pubmed: 37242563
pii: pharmaceutics15051321
doi: 10.3390/pharmaceutics15051321
pmc: PMC10223089
pii:
doi:

Types de publication

Journal Article

Langues

eng

Subventions

Organisme : Italian Ministry of Health
ID : T4-CN-02

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Auteurs

Sara Tengattini (S)

Department of Drug Sciences, University of Pavia, Via Taramelli 12, 27100 Pavia, Italy.

Davide Rubes (D)

Department of Drug Sciences, University of Pavia, Via Taramelli 12, 27100 Pavia, Italy.

Massimo Serra (M)

Department of Drug Sciences, University of Pavia, Via Taramelli 12, 27100 Pavia, Italy.

Luciano Piubelli (L)

Department of Biotechnology and Life Sciences, University of Insubria, Via Dunant 3, 21100 Varese, Italy.

Loredano Pollegioni (L)

Department of Biotechnology and Life Sciences, University of Insubria, Via Dunant 3, 21100 Varese, Italy.

Enrica Calleri (E)

Department of Drug Sciences, University of Pavia, Via Taramelli 12, 27100 Pavia, Italy.

Teodora Bavaro (T)

Department of Drug Sciences, University of Pavia, Via Taramelli 12, 27100 Pavia, Italy.

Gabriella Massolini (G)

Department of Drug Sciences, University of Pavia, Via Taramelli 12, 27100 Pavia, Italy.

Marco Terreni (M)

Department of Drug Sciences, University of Pavia, Via Taramelli 12, 27100 Pavia, Italy.

Caterina Temporini (C)

Department of Drug Sciences, University of Pavia, Via Taramelli 12, 27100 Pavia, Italy.

Classifications MeSH