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基于纳米颗粒的图像引导热疗与温度反馈。

Nanoparticles based image-guided thermal therapy and temperature feedback.

作者信息

Jacinto Carlos, Silva Wagner F, Garcia Joel, Zaragosa Gelo P, Ilem Carlo Nonato D, Sales Tasso O, Santos Harrisson D A, Conde Blessed Isaac C, Barbosa Helliomar Pereira, Malik Sonia, Sharma Surender Kumar

机构信息

Nano-Photonics and Imaging Group, Institute of Physics, Universidade Federal de Alagoas, 57072-900, Maceió-AL, Brazil.

Department of Chemistry, De La Salle University, Manila, Philippines.

出版信息

J Mater Chem B. 2024 Dec 18;13(1):54-102. doi: 10.1039/d4tb01416b.

Abstract

Nanoparticles have emerged as versatile tools in the realm of thermal therapy, offering precise control and feedback mechanisms for targeted treatments. This review explores the intersection of nanotechnology and thermal therapy, focusing on the utilization of nanoparticles for image-guided interventions and temperature monitoring. Starting with an exploration of local temperature dynamics compared to whole-body responses, we delve into the landscape of nanomaterials and their pivotal role in nanomedicine. Various physical stimuli employed in therapy and imaging are scrutinized, laying the foundation for nanothermal therapies and the accompanying challenges. A comprehensive analysis of nanomaterial architecture ensues, delineating the functionalities of magnetic, plasmonic, and luminescent nanomaterials within the context of thermal therapies. Nano-design intricacies, including core-shell structures and monodisperse properties, are dissected for their impact on therapeutic efficacy. Furthermore, considerations in designing nanomaterials, such as hydrodynamic radii and core sizes at sub-tissue levels, are elucidated. The review then delves into specific modalities of thermally induced therapy, including magnetically induced hyperthermia and luminescent-based thermal treatments. Magnetic hyperthermia treatment is explored alongside its imaging and relaxometric properties, emphasizing the implications of imaging formulations on biotransformation and biodistribution. This review also provides an overview of the magnetic hyperthermia treatment using magnetic nanoparticles to induce localized heat in tissues. Similarly, optical and thermal imaging techniques utilizing luminescent nanomaterials are discussed, highlighting their potential for light-induced thermal therapy and cellular-level temperature monitoring. Finally, the application landscape of diagnosis and photothermal therapy (PTT) is surveyed, encompassing diverse areas such as cancer treatment, drug delivery, antibacterial therapy, and immunotherapy. The utility of nanothermometers in elucidating thermal relaxation dynamics as a diagnostic tool is underscored, alongside discussions on PTT hyperthermia protocols. Moreover, the advancements in nanoparticle magnetic imaging and implications of imaging formulations especially in creating positive MRI contrast agents are also presented. This comprehensive review offers insights into the evolving landscape of nanoparticle-based image-guided thermal therapies, promising advancements in precision medicine and targeted interventions, underscoring the importance of continued research in optimization for the full potential of magnetic hyperthermia to improve its efficacy and clinical translation.

摘要

纳米颗粒已成为热疗领域通用的工具,为靶向治疗提供精确控制和反馈机制。本综述探讨了纳米技术与热疗的交叉领域,重点关注纳米颗粒在图像引导干预和温度监测中的应用。首先探索局部温度动态与全身反应的比较,接着深入研究纳米材料领域及其在纳米医学中的关键作用。仔细审查了治疗和成像中使用的各种物理刺激,为纳米热疗及其伴随的挑战奠定基础。随后对纳米材料结构进行全面分析,阐述磁性、等离子体和发光纳米材料在热疗背景下的功能。剖析了纳米设计的复杂性,包括核壳结构和单分散特性对治疗效果的影响。此外,还阐明了在设计纳米材料时的考虑因素,如亚组织水平的流体动力学半径和核尺寸。该综述接着深入探讨热诱导治疗的具体方式,包括磁诱导热疗和基于发光的热处理。探讨了磁热疗及其成像和弛豫特性,强调成像制剂对生物转化和生物分布的影响。本综述还概述了使用磁性纳米颗粒在组织中诱导局部热的磁热疗。同样,讨论了利用发光纳米材料的光学和热成像技术,突出其在光诱导热疗和细胞水平温度监测方面的潜力。最后,考察了诊断和光热疗法(PTT)的应用前景,涵盖癌症治疗、药物递送、抗菌治疗和免疫治疗等不同领域。强调了纳米温度计作为诊断工具在阐明热弛豫动力学方面的效用,同时讨论了PTT热疗方案。此外,还介绍了纳米颗粒磁成像的进展以及成像制剂的影响,特别是在创建阳性MRI造影剂方面。这篇全面的综述深入探讨了基于纳米颗粒的图像引导热疗的发展前景,有望在精准医学和靶向干预方面取得进展,强调了持续研究以优化磁热疗的全部潜力以提高其疗效和临床转化的重要性。

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