Although the use of graphene and 2-dimensional (2D) materials in biomedicine has been explored for over a decade now, there are still significant knowledge gaps regarding the fate of these materials upon interaction with living systems. Here, the pharmacokinetic profile of graphene oxide (GO) sheets of three different lateral dimensions was studied. The GO materials were functionalized with a PEGylated DOTA (1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid), a radiometal chelating agent for radioisotope attachment for single photon emission computed tomography (SPECT/CT) imaging. Our results revealed that GO materials with three distinct size distributions, large (l-GO-DOTA), small (s-GO-DOTA) and ultra-small (us-GO-DOTA), were sequ...
As a representative two-dimensional (2D) nanomaterial, graphene oxide (GO) has shown high potential ...
The interest in graphene and its translation into commercial products has been expanding at a high p...
Renal excretion is expected to be the major route for the elimination of biomedically applied nanopa...
From PubMed via Jisc Publications RouterHistory: received 2020-05-02, revised 2021-08-11, accepted 2...
Although the use of graphene and 2-dimensional (2D) materials in biomedicine has been explored for o...
Aim: Graphene oxide (GO) has promising applications in bioimaging, diagnostics and therapeutics. Thi...
Carbon nanomaterials, including 2D graphene-based materials, have shown promising applicability to d...
Graphene oxide (GO) holds great potential for biomedical applications, however fundamental understan...
Safety assessment of graphene-based materials (GBMs) including graphene oxide (GO) is essential for ...
Graphene oxide (GO) is increasingly used in biomedical applications because it possesses not only th...
The nanomaterial graphene oxide (GO) has attracted explosive interests in various areas. However, it...
The nanomaterial graphene oxide (GO) has attracted explosive interests in various areas. However, it...
Altres ajuts: the ICN2 is funded by the CERCA programme, Generalitat de Catalunya.Graphene has drawn...
Graphene and graphene oxide (GO) are two-dimensional nanomaterials with promising biomedical applica...
Graphene oxide (GO) shows great promise in in vivo drug delivery and therapy applications. However, ...
As a representative two-dimensional (2D) nanomaterial, graphene oxide (GO) has shown high potential ...
The interest in graphene and its translation into commercial products has been expanding at a high p...
Renal excretion is expected to be the major route for the elimination of biomedically applied nanopa...
From PubMed via Jisc Publications RouterHistory: received 2020-05-02, revised 2021-08-11, accepted 2...
Although the use of graphene and 2-dimensional (2D) materials in biomedicine has been explored for o...
Aim: Graphene oxide (GO) has promising applications in bioimaging, diagnostics and therapeutics. Thi...
Carbon nanomaterials, including 2D graphene-based materials, have shown promising applicability to d...
Graphene oxide (GO) holds great potential for biomedical applications, however fundamental understan...
Safety assessment of graphene-based materials (GBMs) including graphene oxide (GO) is essential for ...
Graphene oxide (GO) is increasingly used in biomedical applications because it possesses not only th...
The nanomaterial graphene oxide (GO) has attracted explosive interests in various areas. However, it...
The nanomaterial graphene oxide (GO) has attracted explosive interests in various areas. However, it...
Altres ajuts: the ICN2 is funded by the CERCA programme, Generalitat de Catalunya.Graphene has drawn...
Graphene and graphene oxide (GO) are two-dimensional nanomaterials with promising biomedical applica...
Graphene oxide (GO) shows great promise in in vivo drug delivery and therapy applications. However, ...
As a representative two-dimensional (2D) nanomaterial, graphene oxide (GO) has shown high potential ...
The interest in graphene and its translation into commercial products has been expanding at a high p...
Renal excretion is expected to be the major route for the elimination of biomedically applied nanopa...