In this manuscript, we propose a simple and versatile methodology to design nanosystems based on biocompatible and multicomponent mesoporous silica nanoparticles (MSNs) for infection management. This strategy relies on the combination of antibiotic molecules and antimicrobial metal ions into the same nanosystem, affording a significant improvement of the antibiofilm effect compared to that of nanosystems carrying only one of these agents. The multicomponent nanosystem is based on MSNs externally functionalized with a polyamine dendrimer (MSN-G3) that favors internalization inside the bacteria and allows the complexation of multiactive metal ions (MSN-G3-M n+). Importantly, the selection of both the antibiotic and the cation may be done depe...
The application of nanotechnology in medicine has opened new perspectives for the management of diff...
This article is devoted to a novel class of antimicrobial agents: nanocomposites composed of spheric...
The rise of antibiotic resistance and the growing number of biofilm-related infectionsmake bacterial...
This manuscript reports an effective new alternative for the management of bone infection by the dev...
Treatments for infectious bone defects such as periodontitis require antibacterial and osteogenic di...
Mesoporous silica nanoparticles (MSNs) are promising drug nanocarriers for infection treatment. Many...
This manuscript reports an effective new alternative for the management of bone infection by the 5 d...
Bacterial infections are the main cause of chronic infections and even mortality. In fact, due to ex...
This review focuses on the design of mesoporous silica nanoparticles for infection treat‐ment. Writt...
Osteomyelitis is an inflammatory process of bone and bone marrow that may even lead topatient death....
Antimicrobial resistance is a major and growing global problem and new approaches to combat infectio...
Mesoporous calcium-silicate nanoparticles (MCSNs) are excellent biomaterials for controlled drug del...
This review focuses on the design of mesoporous silica nanoparticles for infection treatment. Writte...
The rapid emergence of drug resistance continues to outpace the development of new antibiotics in th...
This article is devoted to a novel class of antimicrobial agents: nanocomposites composed of spheric...
The application of nanotechnology in medicine has opened new perspectives for the management of diff...
This article is devoted to a novel class of antimicrobial agents: nanocomposites composed of spheric...
The rise of antibiotic resistance and the growing number of biofilm-related infectionsmake bacterial...
This manuscript reports an effective new alternative for the management of bone infection by the dev...
Treatments for infectious bone defects such as periodontitis require antibacterial and osteogenic di...
Mesoporous silica nanoparticles (MSNs) are promising drug nanocarriers for infection treatment. Many...
This manuscript reports an effective new alternative for the management of bone infection by the 5 d...
Bacterial infections are the main cause of chronic infections and even mortality. In fact, due to ex...
This review focuses on the design of mesoporous silica nanoparticles for infection treat‐ment. Writt...
Osteomyelitis is an inflammatory process of bone and bone marrow that may even lead topatient death....
Antimicrobial resistance is a major and growing global problem and new approaches to combat infectio...
Mesoporous calcium-silicate nanoparticles (MCSNs) are excellent biomaterials for controlled drug del...
This review focuses on the design of mesoporous silica nanoparticles for infection treatment. Writte...
The rapid emergence of drug resistance continues to outpace the development of new antibiotics in th...
This article is devoted to a novel class of antimicrobial agents: nanocomposites composed of spheric...
The application of nanotechnology in medicine has opened new perspectives for the management of diff...
This article is devoted to a novel class of antimicrobial agents: nanocomposites composed of spheric...
The rise of antibiotic resistance and the growing number of biofilm-related infectionsmake bacterial...