Mucoadhesive chitosan-catechol as an efficient vaccine delivery system for intranasal immunization.

Int J Biol Macromol

Center for Infectious Diseases Control (CIDC), Sichuan Agricultural University, Chengdu 611130, China; Key Laboratory of Animal Disease and Human Health of Sichuan Province, Sichuan Agricultural University, Chengdu 611130, China; Center for Sustainable Antimicrobials, Department of Pharmacy, Sichuan Agricultural University, Chengdu 611130, China. Electronic address:

Published: July 2024

AI Article Synopsis

  • The study addresses challenges in mucosal immunization, specifically the mucosal barrier and scavenging effects, by developing a bio-inspired mucoadhesive material called chitosan-catechol (ChiC) for modifying PEDV.
  • ChiC effectively creates nanoparticles (Chic-Ps) from inactive PEDV, enhancing retention in the nasal mucosa and promoting dendritic cell recruitment through specific chemokines and disruption of epithelial protein distribution.
  • The results indicate that Chic-Ps improve immune responses, producing higher levels of neutralizing antibodies compared to unmodified PEDV, suggesting their potential as a nasal vaccine delivery system for various vaccines.

Article Abstract

The mucosal barrier and scavenging effect of the mucosal layer are two main obstacles in inducing mucosal immunization. To overcome these obstacles, we synthesized a bio-inspired mucoadhesive material, chitosan-catechol (ChiC), for surface modification of inactive porcine epidemic diarrhea virus (PEDV). Studies have revealed that PEDV particles can be facilely and mildly modified by Chi-C forming Chi-C-PEDV nanoparticles (Chic-Ps) through the covalent and electrostatic bond, which effectively prolongs the retention time of PEDV in the nasal mucosa. The cell co-culture model demonstrated that Chic-Ps exhibit enhanced recruitment of dendritic cells via the secretion of stimulating chemokine CCL20 and improving antigen permeability by disruption the distribution of ZO-1 protein in epithelial cells. Additionally, the flow cytometry (FCM) analysis revealed that Chic-Ps facilitate trafficking to lymph nodes and induce stronger cellular and humoral immune responses compared to unmodified PEDV. Notably, Chic-Ps induced a higher level of PEDV neutralizing antibody was induced by Chic-Ps in the nasal washes, as confirmed by a plaque reduction neutralization test. These results demonstrate that Chi-C is a promising nasal delivery system for vaccines. Proof of principle was obtained for inactivated PEDV, but similar delivery mechanisms could be applied in other vaccines when intranasal administration is needed.

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Source
http://dx.doi.org/10.1016/j.ijbiomac.2024.133008DOI Listing

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