作者: Yolanda Piñeiro , Zulema Vargas , José Rivas , Manuel Arturo López-Quintela
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摘要: The use of multifunctional nanoparticles (NPs), usually in the range 3–100 nm, with their newly discovered properties – such as superparamagnetic (SPM) behaviour, enhancement activity and selectivity catalytic processes localised surface plasmon resonance (LSPR) offers new technical possibilities for biomedical applications magnetic hyperthermia (MH), plasmonic photothermal therapy (PPTT) enhanced imaging (MRI). In addition, small size NPs presents a unique opportunity to interfere, highly specific way, natural involving viruses, bacteria or cells allows interference development complex diseases like many types cancer neuropathies (Alzheimer's, Parkinson's, Kreutzer–Jacobs'). design biological based on MH is chemical challenge core@shell structures are most often used endow abilities. success MH-based depends functionality core well shell direct interaction medium. this review we will describe important methodologies developed synthesise nanostructures applications.