Shivanna Anilkumar Thaghalli, Dash Banendu Sunder, Chen Jyh-Ping
Department of Chemical and Materials Engineering, Chang Gung University, Kwei-San, Taoyuan 33302, Taiwan.
Department of Neurosurgery, Chang Gung Memorial Hospital at Linkou, Kwei-San, Taoyuan 33305, Taiwan.
Micromachines (Basel). 2022 Aug 8;13(8):1279. doi: 10.3390/mi13081279.
The multi-faceted nature of functionalized magnetic nanoparticles (fMNPs) is well-suited for cancer therapy. These nanocomposites can also provide a multimodal platform for targeted cancer therapy due to their unique magnetic guidance characteristics. When induced by an alternating magnetic field (AMF), fMNPs can convert the magnetostatic energy to heat for magnetic hyperthermia (MHT), as well as for controlled drug release. Furthermore, with the ability to convert near-infrared (NIR) light energy to heat energy, fMNPs have attracted interest for photothermal therapy (PTT). Other than MHT and PTT, fMNPs also have a place in combination cancer therapies, such as chemo-MHT, chemo-PTT, and chemo-PTT-photodynamic therapy, among others, due to their versatile properties. Thus, this review presents multifunctional nanocomposites based on fMNPs for cancer therapies, induced by an AMF or NIR light. We will first discuss the different fMNPs induced with an AMF for cancer MHT and chemo-MHT. Secondly, we will discuss fMNPs irradiated with NIR lasers for cancer PTT and chemo-PTT. Finally, fMNPs used for dual-mode AMF + NIR-laser-induced magneto-photo-hyperthermia (MPHT) will be discussed.
功能化磁性纳米颗粒(fMNPs)的多面性非常适合癌症治疗。由于其独特的磁导向特性,这些纳米复合材料还可为靶向癌症治疗提供一个多模态平台。当受到交变磁场(AMF)诱导时,fMNPs可将静磁能转化为热量用于磁热疗(MHT)以及控制药物释放。此外,由于能够将近红外(NIR)光能转化为热能,fMNPs在光热疗法(PTT)方面也引起了人们的兴趣。除了MHT和PTT,fMNPs因其多功能特性在联合癌症治疗中也占有一席之地,如化疗-MHT、化疗-PTT以及化疗-PTT-光动力疗法等。因此,本综述介绍了基于fMNPs的多功能纳米复合材料,用于由AMF或NIR光诱导的癌症治疗。我们将首先讨论由AMF诱导用于癌症MHT和化疗-MHT的不同fMNPs。其次,我们将讨论用NIR激光照射用于癌症PTT和化疗-PTT的fMNPs。最后,将讨论用于双模AMF + NIR激光诱导的磁光热疗(MPHT)的fMNPs。