Nanoscale polymers systems have dominated the revolution of drug delivery advancement. Their potential in the fight against cancer is unrivalled with other technologies. Their functionality increase, targeting ability and stimuli responsive nature have led to a major boom in research focus. This review article concentrates on the use of these smart polymers in cancer therapy. Nanotechnologies have shown potential as drug carriers leading to increased drug efficacy and penetration. Multifunctional smart carriers which can release their payload upon an external or internal trigger such as pH or temperature are proving to be major frontrunners in the development of effective strategies to overcome this disease with minimal patient side effects
Chemotherapy is a cornerstone of cancer therapy. Irrespective of the administered drug, it is crucia...
One of the greatest challenges in cancer drug therapy is to maximize the effectiveness of the active...
A smart drug delivery system consists of intelligent nanocarriers, process selection, and relaxation...
Nanoscale polymers systems have dominated the revolution of drug delivery advancement. Their potenti...
Nanoscale polymers systems have dominated the revolution of drug delivery advancement. Their potenti...
The conventional chemotherapeutic agents, used for cancer chemotherapy, have major limitations inclu...
Conventional chemotherapy is the most common therapeutic method for treating cancer by the applicati...
Advancement in science and technology has brought a remarkable change in therapy of cancer. Particle...
Polymeric nanoparticles have been widely used as carriers of drugs and bioimaging agents due to thei...
Polymeric nanomaterials have the potential to improve upon present chemotherapy delivery methods. Th...
© 2020 The Authors. WIREs Nanomedicine and Nanobiotechnology published by Wiley Periodicals LLC. Amo...
Research into advanced therapeutic materials is of growing importance worldwide, particularly in the...
Cancer has been one of the leading factors of death around the world. Cancer patients usually have l...
Cancer develops with unexpected mutations and causes death in many patients. Among the different can...
As research uncovers the underpinnings of cancer biology, new targeted therapies have been developed...
Chemotherapy is a cornerstone of cancer therapy. Irrespective of the administered drug, it is crucia...
One of the greatest challenges in cancer drug therapy is to maximize the effectiveness of the active...
A smart drug delivery system consists of intelligent nanocarriers, process selection, and relaxation...
Nanoscale polymers systems have dominated the revolution of drug delivery advancement. Their potenti...
Nanoscale polymers systems have dominated the revolution of drug delivery advancement. Their potenti...
The conventional chemotherapeutic agents, used for cancer chemotherapy, have major limitations inclu...
Conventional chemotherapy is the most common therapeutic method for treating cancer by the applicati...
Advancement in science and technology has brought a remarkable change in therapy of cancer. Particle...
Polymeric nanoparticles have been widely used as carriers of drugs and bioimaging agents due to thei...
Polymeric nanomaterials have the potential to improve upon present chemotherapy delivery methods. Th...
© 2020 The Authors. WIREs Nanomedicine and Nanobiotechnology published by Wiley Periodicals LLC. Amo...
Research into advanced therapeutic materials is of growing importance worldwide, particularly in the...
Cancer has been one of the leading factors of death around the world. Cancer patients usually have l...
Cancer develops with unexpected mutations and causes death in many patients. Among the different can...
As research uncovers the underpinnings of cancer biology, new targeted therapies have been developed...
Chemotherapy is a cornerstone of cancer therapy. Irrespective of the administered drug, it is crucia...
One of the greatest challenges in cancer drug therapy is to maximize the effectiveness of the active...
A smart drug delivery system consists of intelligent nanocarriers, process selection, and relaxation...