El-Sherbiny Ibrahim M, Elbaz Nancy M, Sedki Mohammed, Elgammal Abdulaziz, Yacoub Magdi H
Nanomaterials Laboratory, Center for Materials Science, Zewail City of Science & Technology, 6th October City, 12588 Giza, Egypt.
Harefield Heart Science Centre, National Heart & Lung Institute, Imperial College, London, UK.
Nanomedicine (Lond). 2017 Feb;12(4):387-402. doi: 10.2217/nnm-2016-0341. Epub 2017 Jan 12.
Magnetic nanoparticles (MNPs) have gained much attention due to their unique properties such as biocompatibility and biodegradability as well as magnetic and heat-medicated characteristics. Due to these inherent properties, MNPs have been widely used in various biomedical applications including targeted drug delivery and hyperthermia-based therapy. Hyperthermia is a promising approach for the thermal activation therapy of several diseases, including pulmonary diseases. Additionally, due to their large loading capacity and controlled release ability, several MNP-based drug delivery systems have been emerged for treatment of cystic fibrosis and lung cancer. This review provides an overview on the unique properties of MNPs and magnetic-mediated hyperthermia with emphasis on the recent biomedical applications of MNPs in treatment of both lung cancer and cystic fibrosis.
磁性纳米颗粒(MNPs)因其独特的性质,如生物相容性、生物可降解性以及磁和热介导特性而备受关注。由于这些固有特性,MNPs已广泛应用于各种生物医学领域,包括靶向给药和基于热疗的治疗。热疗是治疗包括肺部疾病在内的多种疾病的一种有前景的热激活疗法。此外,由于其高负载能力和控释能力,已出现了几种基于MNP的药物递送系统用于治疗囊性纤维化和肺癌。本综述概述了MNPs的独特性质以及磁介导热疗,重点介绍了MNPs在肺癌和囊性纤维化治疗中的最新生物医学应用。