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Design and engineering of magneto-responsive devices for cancer theranostics: Nano to macro perspective

机译:癌症治疗磁响应装置的设计与工程:纳米到宏观视角

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Design, research, and development of new and improved smart multifunctional devices is one of the main topics in the advanced functional materials agenda for the next decade. Smart materials that can be triggered by external stimuli are seen with high potential for innovative treatments and improved drug delivery systems by regulatory agencies like the FDA and EMA. The incorporation of magnetic nanostructures into complex systems produces multifunctional devices that can be spatiotemporally controlled by an external magnetic field. These magneto-responsive devices can be used for a multitude of biomedical applications, from diagnostic to the treatment of tumors, and are actively being developed and tested for cancer theranostics. Herein, we review the development of magneto-responsive devices for cancer theranostics, starting from the most straightforward architecture, single nanoparticles. We give some theoretical concepts about the design and production of such systems while providing a critical review of applications in clinical practice. Naturally, the review evolves to more complex architectures, from one-dimensional to three-dimensional magneto-responsive systems, demonstrating higher complexity and multi-functionality, and consequently, higher interest for clinical practice. The review ends with the main challenges in the design and engineering of magneto-responsive devices for cancer theranostics and future trends in this biomedical field.y
机译:新的和改进的智能多功能设备的设计,研究和开发是未来十年的高级功能材料议程中的主要主题之一。可以通过外部刺激触发的智能材料,具有高潜力,可通过FDA和EMA等监管机构和改进的药物交付系统改进。将磁性纳米结构掺入复杂的系统中产生多功能器件,其可以由外部磁场施加瞬发装置。这些磁响应装置可用于众多生物医学应用,从诊断到肿瘤的治疗,并积极开发和测试癌症治疗。在此,我们审查了从最简单的架构,单个纳米颗粒开始的癌症治疗器的磁响应装置的开发。我们为这些系统的设计和制作提供了一些关于这些系统的理论概念,同时在临床实践中对应用进行了批判性审查。当然,审查发展到更复杂的架构,从一维到三维磁响应系统,展示更高的复杂性和多功能,因此对临床实践的兴趣更高。审查以磁反应装置的设计和工程为主要挑战,在这种生物医学领域的癌症治疗术和未来趋势的设计和工程.Y

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