| Literature DB >> 34117667 |
Erving Ximendes1,2, Riccardo Marin1, Yingli Shen1, Diego Ruiz3, Diego Gómez-Cerezo3, Paloma Rodríguez-Sevilla1, Jose Lifante1, Perla X Viveros-Méndez4, Francisco Gámez5, David García-Soriano3, Gorka Salas3,6, Carmen Zalbidea3,5, Ana Espinosa3,6, Antonio Benayas1,2, Nuria García-Carrillo7, Lorena Cussó8,9,10,11, Manuel Desco8,9,10,11, Francisco J Teran3,6, Beatriz H Juárez3,5, Daniel Jaque1,2.
Abstract
Deliberate and local increase of the temperature within solid tumors represents an effective therapeutic approach. Thermal therapies embrace this concept leveraging the capability of some species to convert the absorbed energy into heat. To that end, magnetic hyperthermia (MHT) uses magnetic nanoparticles (MNPs) that can effectively dissipate the energy absorbed under alternating magnetic fields. However, MNPs fail to provide real-time thermal feedback with the risk of unwanted overheating and impeding on-the-fly adjustment of the therapeutic parameters. Localization of MNPs within a tissue in an accurate, rapid, and cost-effective way represents another challenge for increasing the efficacy of MHT. In this work, MNPs are combined with state-of-the-art infrared luminescent nanothermometers (LNTh; Ag2 S nanoparticles) in a nanocapsule that simultaneously overcomes these limitations. The novel optomagnetic nanocapsule acts as multimodal contrast agents for different imaging techniques (magnetic resonance, photoacoustic and near-infrared fluorescence imaging, optical and X-ray computed tomography). Most crucially, these nanocapsules provide accurate (0.2 °C resolution) and real-time subcutaneous thermal feedback during in vivo MHT, also enabling the attainment of thermal maps of the area of interest. These findings are a milestone on the road toward controlled magnetothermal therapies with minimal side effects.Entities:
Keywords: in vivo imaging; luminescence thermometry; magnetic hyperthermia; near-infrared fluorescence; silver sulfide nanoparticles
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Year: 2021 PMID: 34117667 DOI: 10.1002/adma.202100077
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849