The abuse of antibiotics has led to the emergence of antibiotic resistant bacteria and high threats to human health. The search for safe and effective alternatives to traditional antibiotics is growing worldwide. In this article, we report the synthesis of large pore dendritic mesoporous silica nanoparticles (DMSNs) with controllable particle sizes and investigate the relationship between the particle size of DMSNs and their antibacterial enzyme delivery performance. The choice of dual-functional perfluorocarbon anions with both low surface tension and interaction with cationic surfactants enables the synthesis of DMSNs with tunable particle size and pore size. After loading with lysozyme, a naturally occurring antimicrobial enzyme, DMSNs w...
Therapeutic proteins are widely used in clinic for numerous therapies such as cancer therapy, immune...
The use of nanocarriers to deliver poorly soluble drugs to the sites of diseases is an attractive an...
Drug-resistant bacterial infections exhibit a major threat to public health. Thus, exploring a novel...
Nature's creations with spiky topological features typically exhibit intriguing surface adhesive pro...
Bacterial infections are the main cause of chronic infections and even mortality. In fact, due to ex...
The delivery of bactericidal proteins into biofilms is challenging. Hollow mesoporous silica nanopar...
This thesis involves synthesis, derivatization and biomedical applications of mesoporous silica nano...
Dendritic mesoporous silica nanoparticles (DMSNs) with a small diameter (similar to 50 nm) and a lar...
Recent advancements in drug delivery technologies utilizing a variety of carriers have resulted in a...
Immobilized enzymes on silica nano-carriers are stable biocatalysts with the potential for use in a ...
In this project, native and functionalised mesoporous silica nanoparticles (MSNs) are synthesised an...
80% of infections are estimated to be biofilm related, which are extremely resistant to anti-microbi...
In this project, native and functionalised mesoporous silica nanoparticles (MSNs) are synthesised an...
Nature’s creations with spiky topological features typically exhibit intriguing surface adhesive pro...
Intracellular delivery of proteins is a promising strategy of intervention in disease, which relies ...
Therapeutic proteins are widely used in clinic for numerous therapies such as cancer therapy, immune...
The use of nanocarriers to deliver poorly soluble drugs to the sites of diseases is an attractive an...
Drug-resistant bacterial infections exhibit a major threat to public health. Thus, exploring a novel...
Nature's creations with spiky topological features typically exhibit intriguing surface adhesive pro...
Bacterial infections are the main cause of chronic infections and even mortality. In fact, due to ex...
The delivery of bactericidal proteins into biofilms is challenging. Hollow mesoporous silica nanopar...
This thesis involves synthesis, derivatization and biomedical applications of mesoporous silica nano...
Dendritic mesoporous silica nanoparticles (DMSNs) with a small diameter (similar to 50 nm) and a lar...
Recent advancements in drug delivery technologies utilizing a variety of carriers have resulted in a...
Immobilized enzymes on silica nano-carriers are stable biocatalysts with the potential for use in a ...
In this project, native and functionalised mesoporous silica nanoparticles (MSNs) are synthesised an...
80% of infections are estimated to be biofilm related, which are extremely resistant to anti-microbi...
In this project, native and functionalised mesoporous silica nanoparticles (MSNs) are synthesised an...
Nature’s creations with spiky topological features typically exhibit intriguing surface adhesive pro...
Intracellular delivery of proteins is a promising strategy of intervention in disease, which relies ...
Therapeutic proteins are widely used in clinic for numerous therapies such as cancer therapy, immune...
The use of nanocarriers to deliver poorly soluble drugs to the sites of diseases is an attractive an...
Drug-resistant bacterial infections exhibit a major threat to public health. Thus, exploring a novel...