The applications of nanoparticles (NPs) are increasing exponentially in consumer products, biotechnology and biomedicine, and humans, as well as the environment, are increasingly being exposed to NPs. Analogously, various (pathogenic) microorganisms are present at all the major exposure and entry sites for NPs in the human body as well as in environmental habitats. However, the field has just started to explore the complex interplay between NPs and microbes and the (patho)biological consequences. Based on recent insights, herein, we critically reviewed the available knowledge about the interaction of NPs with microbes and the analytical investigations including the latest intravital imaging tools. We have commented on how the NPs’ character...
In biological media, nanoparticles acquire a coating of biomolecules (proteins, lipids, polysacchari...
Nano-sized materials are being used to address some of humanities greatest challenges— cancer therap...
Thanks to their particular properties due to their size, the nanomaterials (dimension The complexity...
Applications of engineered nanoparticles (NPs) are not only increasing in industry and consumer prod...
Bionanotechnology is an intersection between biology and nanotechnology, a field in which novel appl...
Owing to their unique physical, chemical, and mechanical properties, nanoparticles (NPs) have been u...
Understanding and controlling the biological response to nanoparticles is essential to designing saf...
Colloidal nanoparticles designed for the interactions with cells are very small, nanoscale objects u...
The ascension of nanomaterials in the past decade for sensing, imaging, and delivery platforms in th...
Nanotoxicity studies have shown that both carbon-based and inorganic engineered nanoparticles can be...
The search for understanding the interactions of nanosized materials with living organisms is leadin...
The amount of nanoparticles (NPs) in human environment is increasing. The main sources are the incre...
Abstract Nanomaterials (NMs) have abundant applications in areas such as electronics, energy, enviro...
The application of nanotechnology in medicine signifies one of the most exciting developments in sci...
The immune system contributes to maintaining the body’s functional integrity through its two main fu...
In biological media, nanoparticles acquire a coating of biomolecules (proteins, lipids, polysacchari...
Nano-sized materials are being used to address some of humanities greatest challenges— cancer therap...
Thanks to their particular properties due to their size, the nanomaterials (dimension The complexity...
Applications of engineered nanoparticles (NPs) are not only increasing in industry and consumer prod...
Bionanotechnology is an intersection between biology and nanotechnology, a field in which novel appl...
Owing to their unique physical, chemical, and mechanical properties, nanoparticles (NPs) have been u...
Understanding and controlling the biological response to nanoparticles is essential to designing saf...
Colloidal nanoparticles designed for the interactions with cells are very small, nanoscale objects u...
The ascension of nanomaterials in the past decade for sensing, imaging, and delivery platforms in th...
Nanotoxicity studies have shown that both carbon-based and inorganic engineered nanoparticles can be...
The search for understanding the interactions of nanosized materials with living organisms is leadin...
The amount of nanoparticles (NPs) in human environment is increasing. The main sources are the incre...
Abstract Nanomaterials (NMs) have abundant applications in areas such as electronics, energy, enviro...
The application of nanotechnology in medicine signifies one of the most exciting developments in sci...
The immune system contributes to maintaining the body’s functional integrity through its two main fu...
In biological media, nanoparticles acquire a coating of biomolecules (proteins, lipids, polysacchari...
Nano-sized materials are being used to address some of humanities greatest challenges— cancer therap...
Thanks to their particular properties due to their size, the nanomaterials (dimension The complexity...