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Tuberculosis (TB) is the leading cause of death from a single infectious microorganism and Bacillus Calmette Guerin (BCG), the only authorized vaccine, does not confer protection against pulmonary TB. Based on the hypothesis that mucosal protection could help to prevent the infection at the site of entrance, the objective of this work was to develop an intranasal vaccine against (Mtb) the microorganism that causes TB. Our approach consisted of the use of polymeric nanocapsules (NCs) with an oily core and a polymer shell made of chitosan (CS) or inulin/polyarginine (INU/pArg). The immunostimulant Imiquimod, a Toll-like receptor-7 (TLR-7) agonist, was encapsulated in the oily core and a fusion protein, formed by two antigens of Mtb, was absorbed either onto the NC surface (CS:Ag and INU:pArg:Ag) or between two polymer layers (INU:Ag:pArg) in order to assess the influence of the antigen positioning on the immune response. Although CS NCs were more immunostimulant than the INU/pArg NCs , the experiments showed that INU:pArg:Ag NCs were the only prototype inducing an adequate immunoglobulin A (IgA) response. Moreover, a previous immunization with BCG increased the immune response for CS NCs but, conversely, decreased for INU/pArg NCs. Further optimization of the antigen and the vaccination regime could provide an efficacious vaccine, using the INU:pArg:Ag NC prototype as nanocarrier.
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http://dx.doi.org/10.3390/pharmaceutics12060489 | DOI Listing |
Sci Rep
August 2025
Department of Plant Protection, Faculty of Agriculture, Urmia University, Urmia, Iran.
New formulation of diflubenzuron, was carried out through a simple and green route using polyethylene glycol (PEG). The insecticidal efficacy of PEG nano-capsules loaded with diflubenzuron (DFB) pesticide was evaluated against Helicoverpa armigera (Heb). The loaded nanoparticles had the spherical-shape and an average size of 80 ± 20 nm.
View Article and Find Full Text PDFInt J Biol Macromol
September 2025
Department of Pharmacy, Guru Ghasidas Vishwavidyalaya (A Central University), Bilaspur, Chhattisgarh 495009, India. Electronic address:
This study aimed to develop Nystatin-loaded chitosan/guar gum cationic polyelectrolyte nanocapsules (CGGNCs) for the treatment of fungal keratitis (FK). CGGNCs were prepared using the polyelectrolyte complex coacervation technique and characterized for size, surface charge, entrapment efficiency, viscosity, pH, and in vitro release profile. The in vitro antifungal activity of CGGNCs and drug suspension was studied in Candida albicans, and ex vivo permeation was assessed using goat cornea.
View Article and Find Full Text PDFDrug Dev Ind Pharm
August 2025
Centre for Pharmacology, Amity Institute of Pharmacy, Amity University, Noida, Uttar Pradesh, India, 201301.
Objectives: The advent of nanotechnology has transformed drug development, providing innovative solutions for designing and administering therapeutic agents with improved accuracy and efficacy in managing diabetes. This review aims to critically analyse the progress, mechanisms, and therapeutic uses of nanotechnology-based treatments against the diseases.
Significance: The application of nanotechnology in diabetes therapy represents a significant breakthrough in contemporary medicine.
J Chem Phys
August 2025
School of Intelligent Medicine, China Medical University, Shenyang, Liaoning 110122, People's Republic of China.
In this study, Ni-TiN@CN nanocapsules were successfully prepared by the DC arc method and the self-polymerization reaction of dopamine. The effect of material composition on their microwave absorbing properties was systematically investigated. The crystal structure, core-shell morphology, and the successful construction of the nitrogen-doped carbon layer of samples were confirmed by x-ray diffractometer, Raman spectroscopy, x-ray photoelectron spectroscopy, transmission electron microscopy, and scanning electron microscopy.
View Article and Find Full Text PDFCurr Drug Deliv
July 2025
Faculty of Pharmacy, Chiang Mai University, Chiang Mai 50200, Thailand.
Nanotechnology has transformed drug delivery systems, leading to the creation of various nanocarriers that offer significant advantages over traditional methods. This review explores key techniques and methods for producing nanocarriers like liposomes, niosomes, dendrimers, nanocapsules, carbon nanotubes, polymeric micelles, and solid lipid nanoparticles. Operating within the nanoscale range (1-100 nm), these nanocarriers enhance drug efficacy, reduce side effects, and improve bioavailability.
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