纳米颗粒在热疗和测温中的生物成像技术现状:组织蛋白靶向的可视化

R. Sharma, A. Sharma, Ching-Jen Chen
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引用次数: 10

摘要

利用纳米颗粒加热肿瘤和提高肿瘤细胞对高温的抵抗力是纳米医学在癌症治疗中的一种有效手段。肿瘤不同部位的热成像技术正在成为热疗监测温度和治疗肿瘤的选择性方法。然而,温度测量和肿瘤细胞与纳米颗粒的相互作用可以监测和评估暴露于高生理温度后的肿瘤细胞存活,但显示细胞毒性。10-100纳米尺寸的纳米颗粒在肿瘤热疗中的设计和应用已经成为热疗成像和治疗的有效技术。温度与纳米粒子磁矩的关系是特定的。此外,还有两个主要问题尚未解决。第一个问题是不同纳米粒子磁化肿瘤后肿瘤能量变化的关系。二是纳米颗粒在肿瘤内与热疗联合的换热行为及联合方式对肿瘤组织温升的影响。在本研究中,我们强调体内成像,如磁共振测温,不同肿瘤位置的光触觉成像在一定程度上解决了这些问题。纳米颗粒热疗与缺氧敏感的硝基咪唑放射增敏剂与化疗药物联合使用的技术被强调为替代治疗肿瘤和监测治疗对公共卫生产生重大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
State of Art on Bioimaging by Nanoparticles in Hyperthermia and Thermometry: Visualization of Tissue Protein Targeting
Heating tumors by nanoparticles and resistance in tumor cells to a high temperature is emerging as an effective tool as nanomedicine tool in cancer therapy. The art of thermal mapping in a tumor at various locations is emerging as the selective approach of hyperthermia to monitor temperature and treat the tumor. However, thermometry and tumor cell interaction with nanoparticles may monitor and evaluate the tumor cell survival after exposure to high physiological temperatures but show cytotoxicity. The design and application of 10-100 nano meter sized nanoparticles in tumor hyperthermia has emerged as an effective technology in hyperthermia imaging and treatment. The temperature and nanoparticle magnetic moment relationship is specific. Furthermore, there are two main issues that are unsolved as of yet. First issue is the relationship of tumor energy changes due to tumor magnetization by different nanoparticles. The second issue is the heat transfer behavior of the nanoparticle inside the tumor combined with hyperthermia and efficacy of combined modality on the tumor tissue temperature rise. In present study, we highlight that in vivo imaging such as MR thermometry, photoacuastic mapping of different tumor locations solve these issues to some extent. The art of combined use of hyperthermia by nanoparticles with hypoxia sensitive nitroimidazole radiosensitizers with chemotherapeutic drugs is highlighted to have a great impact on public health as alternative therapeutic oncology and monitoring therapy.
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