Porous silicon is a nano material in which pores with different sizes, densities and depths are infiltrated in conventional silicon imparting it augmented properties including biodegradability, biocompatibility, photoluminescence. Here, we realized porous silicon substrates in which the pore size and the fractal dimension were varied over a significant range. We loaded the described substrates with a PtCl(O, O′ − acac)(DMSO) antitumor drug and determined its release profile as a function of pore size over time up to 15 days. We observed that the efficacy of delivery augments with the pore size moving from small (∼ 8 nm, efficiency of delivery ∼ 0.2) to large (∼ 55 nm, efficiency of delivery ∼ 0.7). Then, we verified the adhesion of MCF-7 br...
Triple-negative breast cancer (TNBC) is the most challenging breast cancer subtype to treat, and the...
Engineering of the cellular microenvironment has become an attractive strategy to guide cellular act...
The localized irradiation of Si allows a precise patterning at the microscale of nanostructured mate...
Porous silicon is a nano material in which pores with different sizes, densities and depths are infi...
Porous silicon (PSi) is a promising material in several biomedical applications because of its bioco...
Porous silicon (PSi) is a promising material in several biomedical applications because of its bioco...
Porous silicon (PSi) is a promising material in several biomedical applications because of its bioco...
Substrate nanotopography affects cell adhesion and proliferation and is fundamental to the rational ...
Porous silicon nanoparticles have been established as excellent candidates for medical applications ...
There has been a growing interest in the nanomedicine community to develop multi-stage drug delivery...
This thesis describes the fabrication, chemical modification, toxicity studies, and drug loading of ...
A plethora of work has been dedicated to the analysis of cell behavior on substrates with ordered to...
Progress in drug delivery approaches have not adequately translated into clinical advances in the di...
Porous Silicon is a material that is made when an electric potential is applied to silicon using a h...
Manipulating an incorporated scaffold to direct cell behaviors play a key role in tissue engineering...
Triple-negative breast cancer (TNBC) is the most challenging breast cancer subtype to treat, and the...
Engineering of the cellular microenvironment has become an attractive strategy to guide cellular act...
The localized irradiation of Si allows a precise patterning at the microscale of nanostructured mate...
Porous silicon is a nano material in which pores with different sizes, densities and depths are infi...
Porous silicon (PSi) is a promising material in several biomedical applications because of its bioco...
Porous silicon (PSi) is a promising material in several biomedical applications because of its bioco...
Porous silicon (PSi) is a promising material in several biomedical applications because of its bioco...
Substrate nanotopography affects cell adhesion and proliferation and is fundamental to the rational ...
Porous silicon nanoparticles have been established as excellent candidates for medical applications ...
There has been a growing interest in the nanomedicine community to develop multi-stage drug delivery...
This thesis describes the fabrication, chemical modification, toxicity studies, and drug loading of ...
A plethora of work has been dedicated to the analysis of cell behavior on substrates with ordered to...
Progress in drug delivery approaches have not adequately translated into clinical advances in the di...
Porous Silicon is a material that is made when an electric potential is applied to silicon using a h...
Manipulating an incorporated scaffold to direct cell behaviors play a key role in tissue engineering...
Triple-negative breast cancer (TNBC) is the most challenging breast cancer subtype to treat, and the...
Engineering of the cellular microenvironment has become an attractive strategy to guide cellular act...
The localized irradiation of Si allows a precise patterning at the microscale of nanostructured mate...