Remote Control of Energy Transformation‐Based Cancer Imaging and Therapy

材料科学 癌症 磁共振成像 放射治疗 癌症治疗 荧光寿命成像显微镜 生物医学工程 纳米技术 放射科 医学 内科学 光学 荧光 物理
作者
Hai Xu,Dahee Kim,Yuanyuan Zhao,Chowon Kim,Guosheng Song,Qiongzheng Hu,Heemin Kang,Juyoung Yoon
出处
期刊:Advanced Materials [Wiley]
卷期号:36 (27) 被引量:3
标识
DOI:10.1002/adma.202402806
摘要

Cancer treatment requires precise tumor-specific targeting at specific sites that allows for high-resolution diagnostic imaging and long-term patient-tailorable cancer therapy; while, minimizing side effects largely arising from non-targetability. This can be realized by harnessing exogenous remote stimuli, such as tissue-penetrative ultrasound, magnetic field, light, and radiation, that enable local activation for cancer imaging and therapy in deep tumors. A myriad of nanomedicines can be efficiently activated when the energy of such remote stimuli can be transformed into another type of energy. This review discusses the remote control of energy transformation for targetable, efficient, and long-term cancer imaging and therapy. Such ultrasonic, magnetic, photonic, radiative, and radioactive energy can be transformed into mechanical, thermal, chemical, and radiative energy to enable a variety of cancer imaging and treatment modalities. The current review article describes multimodal energy transformation where a serial cascade or multiple types of energy transformation occur. This review includes not only mechanical, chemical, hyperthermia, and radiation therapy but also emerging thermoelectric, pyroelectric, and piezoelectric therapies for cancer treatment. It also illustrates ultrasound, magnetic resonance, fluorescence, computed tomography, photoluminescence, and photoacoustic imaging-guided cancer therapies. It highlights afterglow imaging that can eliminate autofluorescence for sustained signal emission after the excitation.

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