Materials with a high atomic number (Z) are shown to cause an increase in the level of cell kill by ionizing radiation when introduced into tumor cells. This study uses in vitro experiments to investigate the differences in radiosensitization between two cell lines (MCF‐7 and U87) and three commercially available nanoparticles (gold, gadolinium, and iron oxide) irradiated by 6 MV X‐rays. To assess cell survival, clonogenic assays are carried out for all variables considered, with a concentration of 0.5 mg mL−1 for each nanoparticle material used. This study demonstrates differences in cell survival between nanoparticles and cell line. U87 shows the greatest enhancement with gadolinium nanoparticles (2.02 ± 0.36), whereas MCF‐7 cells have hi...
Nanoparticles (NPs) are 1-100 nm constructs explored for their application in cancer diagnosis and t...
Nanoparticles (NPs) are 1-100 nm constructs explored for their application in cancer diagnosis and t...
Radiosensitization effects caused by high atomic number (Z) metallic nanoparticles have been extensi...
Materials with a high atomic number (Z) are shown to cause an increase in the level of cell kill by ...
Jonathan A Coulter,1 Suneil Jain,2 Karl T Butterworth,2 Laura Taggart,2 Glenn Dickson,2 Stephen J Mc...
In the context of improving radiation therapy, high-atomic number (Z) metallic nanoparticles and, mo...
From the very beginnings of radiotherapy, a crucial question persists with how to target the radiati...
Gold nanoparticle radiosensitization represents a novel technique in enhancement of ionising radiati...
Gold nanoparticles (AuNPs) can be used with megavolt (MV) X-rays to exert radiosensitization effects...
Gold nanoparticles (AuNPs) can be used with megavolt (MV) X-rays to exert radiosensitization effects...
Gold nanomaterials have been shown to augment radiation therapy both in vitro and in vivo. However, ...
Purpose: Gold nanoparticles (GNP) act as a radiosensitizer in radiation therapy. However, recent stu...
Radiotherapy is a prominent tool in oncology but it can be held responsible for important biological...
Internalized gold nanoparticles were quantified in large numbers of individual prostate cancer cells...
Nanoparticle radiosensitization has been demonstrated well to enhance the effects of radiotherapy, m...
Nanoparticles (NPs) are 1-100 nm constructs explored for their application in cancer diagnosis and t...
Nanoparticles (NPs) are 1-100 nm constructs explored for their application in cancer diagnosis and t...
Radiosensitization effects caused by high atomic number (Z) metallic nanoparticles have been extensi...
Materials with a high atomic number (Z) are shown to cause an increase in the level of cell kill by ...
Jonathan A Coulter,1 Suneil Jain,2 Karl T Butterworth,2 Laura Taggart,2 Glenn Dickson,2 Stephen J Mc...
In the context of improving radiation therapy, high-atomic number (Z) metallic nanoparticles and, mo...
From the very beginnings of radiotherapy, a crucial question persists with how to target the radiati...
Gold nanoparticle radiosensitization represents a novel technique in enhancement of ionising radiati...
Gold nanoparticles (AuNPs) can be used with megavolt (MV) X-rays to exert radiosensitization effects...
Gold nanoparticles (AuNPs) can be used with megavolt (MV) X-rays to exert radiosensitization effects...
Gold nanomaterials have been shown to augment radiation therapy both in vitro and in vivo. However, ...
Purpose: Gold nanoparticles (GNP) act as a radiosensitizer in radiation therapy. However, recent stu...
Radiotherapy is a prominent tool in oncology but it can be held responsible for important biological...
Internalized gold nanoparticles were quantified in large numbers of individual prostate cancer cells...
Nanoparticle radiosensitization has been demonstrated well to enhance the effects of radiotherapy, m...
Nanoparticles (NPs) are 1-100 nm constructs explored for their application in cancer diagnosis and t...
Nanoparticles (NPs) are 1-100 nm constructs explored for their application in cancer diagnosis and t...
Radiosensitization effects caused by high atomic number (Z) metallic nanoparticles have been extensi...