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  4. Atomic-Scale Description of Interfaces between Antigen and Aluminum-Based Adjuvants Used in Vaccines by Dynamic Nuclear Polarization (DNP) Enhanced NMR Spectroscopy
 
research article

Atomic-Scale Description of Interfaces between Antigen and Aluminum-Based Adjuvants Used in Vaccines by Dynamic Nuclear Polarization (DNP) Enhanced NMR Spectroscopy

Viger-Gravel, Jasmine  
•
Paruzzo, Federico M.  
•
Cazaux, Corine
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July 8, 2020
Chemistry-A European Journal

The addition of aluminum-based adjuvants in vaccines enhances the immune response to antigens. The strength of antigen adsorption on adjuvant gels is known to modulate vaccine efficacy. However, a detailed understanding of the mechanisms of interaction between aluminum gels and antigens is still missing. Herein, a new analytical approach based on dynamic nuclear polarization (DNP) enhanced NMR spectroscopy under magic angle spinning (MAS) is implemented to provide a molecular description of the antigen-adjuvant interface. This approach is demonstrated on hepatitis B surface antigen particles in combination with three aluminum gels obtained from different suppliers. Both noncovalent and covalent interactions between the phospholipids of the antigen particles and the surface of the aluminum gels are identified by using MAS DNP (NMRAl)-Al-27 and(31)P correlation experiments. Although covalent interactions were detected for only one of the formulations, dipolar recoupling rotational echo adiabatic passage double resonance (REAPDOR) experiments reveal significant differences in the strength of weak interactions.

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Type
research article
DOI
10.1002/chem.202001141
Web of Science ID

WOS:000546091700001

Author(s)
Viger-Gravel, Jasmine  
Paruzzo, Federico M.  
Cazaux, Corine
Jabbour, Ribal
Leleu, Amandine
Canini, Francoise
Florian, Pierre
Ronzon, Frederic
Gajan, David
Lesage, Anne
Date Issued

2020-07-08

Publisher

WILEY-V C H VERLAG GMBH

Published in
Chemistry-A European Journal
Volume

26

Issue

41

Start page

8976

End page

8982

Subjects

Chemistry, Multidisciplinary

•

Chemistry

•

aluminium

•

nmr spectroscopy

•

noncovalent interactions

•

phosphorus

•

vaccine formulations

•

solid-state nmr

•

signal enhancement

•

quadrupolar nuclei

•

rotational-echo

•

adsorption

•

nanoparticles

•

mechanism

•

c-13

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LRM  
Available on Infoscience
July 17, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/170205
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