It is confirmed that enhanced host immune activation and direct antibacterial activity result in a significant reduction of intracellular S. aureus in primary murine osteoblasts, highlighting the therapeutic potential of this platform.
Abstract
Intracellular bacterial infections, such as those caused by S. aureus, are particularly challenging to treat because pathogens reside within host cells, evading immune defenses and limiting antibiotic efficacy, subsequently promoting drug resistance. To address this, we developed immunostimulatory nucleic acid nanoparticles (NANPs) functionalized with antibacterial silver nanoclusters to enable a dual mechanism of antibacterial action. These NANPs are engineered to activate RIG-I-mediated innate immune responses, which are often bypassed by intracellular bacteria to avoid host clearance. The embedded DNA-templated and -stabilized fluorescent silver nanoclusters, composed of approximately ten silver atoms, exhibit intrinsic antibacterial activity. We systematically evaluated different architectural configurations of silver nanoclusters within NANPs and assessed their relative stabilities, immunostimulatory potentials, and effects against planktonic bacteria and biofilms. We also confirmed that enhanced host immune activation and direct antibacterial activity result in a significant reduction of intracellular S. aureus in primary murine osteoblasts, highlighting the therapeutic potential of this platform.
Purpose The limited cellular penetration of vancomycin (Van) restricts its intracellular availability and represents a major challenge for treating infections caused by intracellular Gram-positive bacteria. We investigated whether the engineered ferritin nanocage HFn-D93G could improve intracellular Van delivery while...
Bin-Wang Cao, Man-Xian Wang, Tao Li et al.· International Journal of Nan...· 0 citations
E engineered metal NPs represent a promising platform for next-generation antimicrobial strategies and may help address multidrug resistance through simultaneous molecular and physical effects.
Amir Jalali, Majid Komijani, Zainab Diaa Wahab et al.· Molecular Biology Reports· 0 citations
Nanotechnology offers alternative approaches for combating bacterial resistance against conventional antibiotics via different antibacterial mechanisms that are less likely to acquire resistance. A one-side-functionalized Janus nanoparticle offers a unique binding interaction with the cell membrane that attracts atte...
Puja Garai, Tanushree Mondal, Swapnendu Deb et al.· ACS Applied Nano Materials· 0 citations
Drug-resistant Staphylococcus aureus remains one of the major clinical challenges in both community and hospital settings. Increasing rates of resistance to conventional antibiotics have prompted the development of alternative therapeutic strategies capable of selectively targeting essential bacterial functions. Nuclei...
R. Ghasemi, Hamid Heidari· Infectious Disease and Thera...· 0 citations
Effective eradication of Pseudomonas aeruginosa (P. aeruginosa) infection remains challenging due to its multifaceted antibiotic resistance mechanisms and biofilm-associated protection. Furthermore, inflammatory dysregulation within the infected microenvironment compromises both antibacterial efficacy and tissue repa...
Hao-Jie Chen, Rou-Ye Wang, Fang Liu et al.· ACS Nano· 0 citations
It is suggested that SVM is a promising candidate for combination therapy, warranting further investigation with surface-functionalized formulations to improve its selectivity.
Juliane Zacour Marinho, Luiz Felipe Carreiro Machado, I. P. Ceravolo et al.· GAZI UNIVERSITY JOURNAL OF S...· 0 citations
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