Porous structures made up of Fe3O4 nanoparticles were used to adsorb methyl blue in water. Controlled release of the methyl blue to water was then achieved by application of a magnetic field. Application of a pure DC field did not result in any release. Application of a pure AC field caused released of the methyl blue. However, a combination of both DC and AC fields resulted in much faster release. The mechanism by which this operated is believed to result from viscous friction. Nanoparticles are strongly aligned in the DC field and oscillate under the influence of the AC field. This study demonstrates a concept for controlled drug delivery, where pharmaceutical molecules, similar to methyl blue, would be adsorbed onto porous Fe3O4 structur...
We demonstrate a single-step facile approach for the fabrication of citric acid functionalized (citr...
Pramod Kumar, Shrish Agnihotri, Indrajit Roy Department of Chemistry, University of Delhi, Delhi, I...
Click on the DOI link to access the article (may not be free).In the present study, drug carrying ma...
5-Fluorouracil loaded magnetic field sensitive methylcellulose and polycaprolactone gels were prepar...
5-Fluorouracil loaded magnetic field sensitive methylcellulose and polycaprolactone gels were prepar...
5-Fluorouracil loaded magnetic field sensitive methylcellulose and polycaprolactone gels were prepar...
5-Fluorouracil loaded magnetic field sensitive methylcellulose and polycaprolactone gels were prepar...
Mesoporous silica nanoparticles are useful nanomaterials that have demonstrated the ability to conta...
International audienceHerein, original magnetic drug delivery nanomaterials for cancer therapy are d...
Herein, original magnetic drug delivery nanomaterials for cancer therapy are developed and compared,...
Herein, original magnetic drug delivery nanomaterials for cancer therapy are developed and compared,...
Herein, we designed chitosan–coated Fe3O4 nanocomposites for the control release of drugs by an alte...
We demonstrate a single-step facile approach for the fabrication of citric acid functionalized (citr...
The objective of this study was to describe the magnetic nanoparticle–drug conjugates for improved c...
Herein, we designed chitosan–coated Fe3O4 nanocomposites for the control release of drugs by an alte...
We demonstrate a single-step facile approach for the fabrication of citric acid functionalized (citr...
Pramod Kumar, Shrish Agnihotri, Indrajit Roy Department of Chemistry, University of Delhi, Delhi, I...
Click on the DOI link to access the article (may not be free).In the present study, drug carrying ma...
5-Fluorouracil loaded magnetic field sensitive methylcellulose and polycaprolactone gels were prepar...
5-Fluorouracil loaded magnetic field sensitive methylcellulose and polycaprolactone gels were prepar...
5-Fluorouracil loaded magnetic field sensitive methylcellulose and polycaprolactone gels were prepar...
5-Fluorouracil loaded magnetic field sensitive methylcellulose and polycaprolactone gels were prepar...
Mesoporous silica nanoparticles are useful nanomaterials that have demonstrated the ability to conta...
International audienceHerein, original magnetic drug delivery nanomaterials for cancer therapy are d...
Herein, original magnetic drug delivery nanomaterials for cancer therapy are developed and compared,...
Herein, original magnetic drug delivery nanomaterials for cancer therapy are developed and compared,...
Herein, we designed chitosan–coated Fe3O4 nanocomposites for the control release of drugs by an alte...
We demonstrate a single-step facile approach for the fabrication of citric acid functionalized (citr...
The objective of this study was to describe the magnetic nanoparticle–drug conjugates for improved c...
Herein, we designed chitosan–coated Fe3O4 nanocomposites for the control release of drugs by an alte...
We demonstrate a single-step facile approach for the fabrication of citric acid functionalized (citr...
Pramod Kumar, Shrish Agnihotri, Indrajit Roy Department of Chemistry, University of Delhi, Delhi, I...
Click on the DOI link to access the article (may not be free).In the present study, drug carrying ma...