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Folic acid functionalized nanoparticles as pharmaceutical carriers in drug delivery systems

Asghar NarmaniDepartment of Life Science Engineering, Faculty of New Sciences and Technologies University of Tehran Tehran IranMelina RezvaniDepartment of Biology, Faculty of Sciences Payame Noor University Tehran IranBagher FarhoodDepartment of Medical Physics and Radiology, Faculty of Paramedical Sciences Kashan University of Medical Sciences Kashan IranParvaneh DarkhorDepartment of Medical Physics Tabriz University of Medical Sciences Tabriz IranJavad MohammadnejadDepartment of Life Science Engineering, Faculty of New Sciences and Technologies University of Tehran Tehran IranBahram AminiDepartment of Biology, Science and Research Branch Islamic Azad University Tehran IranSoheila RefahiDepartment of Medical Physics, Faculty of Medicine Ardabil University of Medical Sciences Ardabil IranNouraddin Abdi GoushbolaghDepartment of Medical Physics, Faculty of Medicine Shahid Sadoughi University of Medical Sciences Yazd Iran
2019en
ABI

Аннотация

Conventional chemotherapeutic approaches in cancer therapy such as surgery, chemotherapy, and radiotherapy have several disadvantages due to their nontargeted distributions in the whole body. On the other hand, nanoparticles (NPs) based therapies are remarkably progressing to solve several limitations of conventional drug delivery systems (DDSs) including nonspecific biodistribution and targeting, poor water solubility, weak bioavailability and biodegradability, low pharmacokinetic properties, and so forth. The enhanced permeability and retention effect escape from P-glycoprotein trap in cancer cells as a passive targeting mechanism, and active targeting strategies are also other most important advantages of NPs in cancer diagnosis and therapy. Folic acid (FA) is one of the biologic molecules which has been targeted overexpressed-folic acid receptor (FR) on the surface of cancer cells. Therefore, conjugation of FA to NPs most easily enhances the FR-mediated targeting delivery of therapeutic agents. Here, the recent works in FA which have been decorated NPs-based DDSs are discussed and cancer therapy potency of these NPs in clinical trials are presented.

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