The in vitro labeling of stem or therapeutic cells with engineered nanoparticles with the aim of transplanting these cells into live animals and, for example, noninvasively monitoring their migration, is a hot topic in nanomedicine research. It is of crucial importance that cell-nanoparticle interactions are studied in depth in order to exclude any negative effects of the cell labeling procedure. To date, many disparate results can be found in the literature regarding nanoparticle toxicity due to the great versatility of different parameters investigated. In the present work, an overview is presented of different types of nanomaterials, focusing mostly on iron oxide nanoparticles, developed for biomedical research. The difficulties in asses...
Due to their unique physicochemical properties, including superparamagnetism, iron oxide nanoparticl...
In the last decades, nanoscience had a spectacular evolution providing new, versatile engineered nan...
Increasing biomedical applications of iron oxide nanoparticles (IONPs) in academic and commercial se...
The in vitro labeling of stem or therapeutic cells with engineered nanoparticles with the aim of tra...
The in vitro labeling of stem or therapeutic cells with engineered nanoparticles with the aim of tra...
Recent findings have suggested that iron oxide nanoparticles (IONPs) have some exceptional chemical ...
In the last decades, nanoscience had a spectacular evolution providing new, versatile engineered nan...
The use of iron oxide nanoparticles (IONPs) in biomedical research is steadily increasing, leading t...
Abstract Background It is well established that toxic...
Applying validated in vitro assays to the study of nanoparticle toxicity is a growing trend in nanom...
The use of iron oxide nanoparticles (IONPs) in biomedical research is steadily increasing, leading t...
This study presents the toxicological effects of iron nanoparticles (NP Fe2O3) using in vitro and in...
Abstract Background It is well established that toxicological evaluation of engineered nanomaterials...
Saba Naqvi1, Mohammad Samim2, MZ Abdin3, Farhan Jalees Ahmed4, AN Maitra5, CK Prashant6, Amit K Dind...
Increasing biomedical applications of iron oxide nanoparticles (IONPs) in academic and commercial se...
Due to their unique physicochemical properties, including superparamagnetism, iron oxide nanoparticl...
In the last decades, nanoscience had a spectacular evolution providing new, versatile engineered nan...
Increasing biomedical applications of iron oxide nanoparticles (IONPs) in academic and commercial se...
The in vitro labeling of stem or therapeutic cells with engineered nanoparticles with the aim of tra...
The in vitro labeling of stem or therapeutic cells with engineered nanoparticles with the aim of tra...
Recent findings have suggested that iron oxide nanoparticles (IONPs) have some exceptional chemical ...
In the last decades, nanoscience had a spectacular evolution providing new, versatile engineered nan...
The use of iron oxide nanoparticles (IONPs) in biomedical research is steadily increasing, leading t...
Abstract Background It is well established that toxic...
Applying validated in vitro assays to the study of nanoparticle toxicity is a growing trend in nanom...
The use of iron oxide nanoparticles (IONPs) in biomedical research is steadily increasing, leading t...
This study presents the toxicological effects of iron nanoparticles (NP Fe2O3) using in vitro and in...
Abstract Background It is well established that toxicological evaluation of engineered nanomaterials...
Saba Naqvi1, Mohammad Samim2, MZ Abdin3, Farhan Jalees Ahmed4, AN Maitra5, CK Prashant6, Amit K Dind...
Increasing biomedical applications of iron oxide nanoparticles (IONPs) in academic and commercial se...
Due to their unique physicochemical properties, including superparamagnetism, iron oxide nanoparticl...
In the last decades, nanoscience had a spectacular evolution providing new, versatile engineered nan...
Increasing biomedical applications of iron oxide nanoparticles (IONPs) in academic and commercial se...