Cancer is a leading cause of death worldwide and it is caused by the interaction of genomic, environmental, and lifestyle factors. Although chemotherapy is one way of treating cancers, it also damages healthy cells and may cause severe side effects. Therefore, it is beneficial in drug delivery in the human body to increase the proportion of the drugs at the target site while limiting its exposure at the rest of body through Magnetic Drug Targeting (MDT). Superparamagnetic iron oxide nanoparticles (SPIONs) are derived from polyol methods and coated with oleic acid and can be used as magnetic drug carrier particles (MDCPs) in an MDT system. Here, we develop a mathematical model for studying the interactions between the MDCPs enriched with thr...
Magnetic nanoparticles (MNP) can be used as drug carriers in novel cancer treatment approaches such ...
Magnetic drug targeting is a technique that involves the binding of medicine to magnetizable particl...
A highly selective and efficient cancer therapy can be achieved using magnetically directed superpar...
Cancer is a leading cause of death worldwide and it is caused by the interaction of genomic, environ...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
Drug delivery technologies are an important area within biomedicine. Targeted drug delivery aims to ...
Wahajuddin,1,2 Sumit Arora21Pharmacokinetics and Metabolism Division, CSIR-Central Drug Research Ins...
The lack of drug selectivity to a specific site has been one of the major limitations in current the...
Superparamagnetic iron oxide nanoparticles with proper surface coatings are increasingly being evalu...
Background: Magnetic drug targeting (MDT) is an effective alternative for common drug applications, ...
Magnetic drug targeting (MDT) and magnetic-based drug/cargo delivery are emerging treatment methods ...
Intraperitoneal (IP) chemotherapy has emerged as a promising method for the treatment of peritoneal ...
The implant assisted magnetic targeted drug delivery system of Avilés, Ebner and Ritter is considere...
A sound theoretical rationale for the design of a magnetic nanocarrier capable of magnetic capture i...
Focusing medicine to disease locations is a needed ability to treat a variety of pathologies. During...
Magnetic nanoparticles (MNP) can be used as drug carriers in novel cancer treatment approaches such ...
Magnetic drug targeting is a technique that involves the binding of medicine to magnetizable particl...
A highly selective and efficient cancer therapy can be achieved using magnetically directed superpar...
Cancer is a leading cause of death worldwide and it is caused by the interaction of genomic, environ...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
Drug delivery technologies are an important area within biomedicine. Targeted drug delivery aims to ...
Wahajuddin,1,2 Sumit Arora21Pharmacokinetics and Metabolism Division, CSIR-Central Drug Research Ins...
The lack of drug selectivity to a specific site has been one of the major limitations in current the...
Superparamagnetic iron oxide nanoparticles with proper surface coatings are increasingly being evalu...
Background: Magnetic drug targeting (MDT) is an effective alternative for common drug applications, ...
Magnetic drug targeting (MDT) and magnetic-based drug/cargo delivery are emerging treatment methods ...
Intraperitoneal (IP) chemotherapy has emerged as a promising method for the treatment of peritoneal ...
The implant assisted magnetic targeted drug delivery system of Avilés, Ebner and Ritter is considere...
A sound theoretical rationale for the design of a magnetic nanocarrier capable of magnetic capture i...
Focusing medicine to disease locations is a needed ability to treat a variety of pathologies. During...
Magnetic nanoparticles (MNP) can be used as drug carriers in novel cancer treatment approaches such ...
Magnetic drug targeting is a technique that involves the binding of medicine to magnetizable particl...
A highly selective and efficient cancer therapy can be achieved using magnetically directed superpar...