Institute of Biomedical Engineering and Nanomedicine, National Health Research Institutes, Zhunan 350, Taiwan.
Department of Cosmeceutics, China Medical University, Taichung 40402, Taiwan.
Int J Mol Sci. 2019 Jul 16;20(14):3490. doi: 10.3390/ijms20143490.
Biomedical imaging modalities in clinical practice have revolutionized oncology for several decades. State-of-the-art biomedical techniques allow visualizing both normal physiological and pathological architectures of the human body. The use of nanoparticles (NP) as contrast agents enabled visualization of refined contrast images with superior resolution, which assists clinicians in more accurate diagnoses and in planning appropriate therapy. These desirable features are due to the ability of NPs to carry high payloads (contrast agents or drugs), increased in vivo half-life, and disease-specific accumulation. We review the various NP-based interventions for treatments of deep-seated tumors, involving "seeing better" to precisely visualize early diagnosis and "going deeper" to activate selective therapeutics in situ.
几十年来,临床实践中的生物医学成像模式使肿瘤学发生了革命性变化。最先进的生物医学技术可以同时观察人体正常的生理和病理结构。纳米颗粒 (NP) 作为对比剂的使用使得可以可视化具有更高分辨率的精细对比图像,这有助于临床医生进行更准确的诊断和制定适当的治疗计划。这些理想的特性归因于 NPs 携带高载药量(对比剂或药物)、体内半衰期延长和疾病特异性积累的能力。我们综述了各种基于 NP 的深部肿瘤治疗干预措施,包括“看得更清楚”以精确定位早期诊断,以及“深入”原位激活选择性治疗。