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本文引用的文献

1
Intravital microscopy for evaluating tumor perfusion of nanoparticles exposed to non-invasive radiofrequency electric fields.用于评估暴露于非侵入性射频电场的纳米颗粒的肿瘤灌注的活体显微镜检查。
Cancer Nanotechnol. 2016;7:5. doi: 10.1186/s12645-016-0016-7. Epub 2016 Jun 30.
2
Fullerene (C60)-based tumor-targeting nanoparticles with "off-on" state for enhanced treatment of cancer.基于富勒烯(C60)的肿瘤靶向纳米粒子具有“开-关”状态,可增强癌症治疗效果。
J Control Release. 2016 Aug 10;235:245-258. doi: 10.1016/j.jconrel.2016.06.010. Epub 2016 Jun 6.
3
A New Imaging Platform for Visualizing Biological Effects of Non-Invasive Radiofrequency Electric-Field Cancer Hyperthermia.一种用于可视化非侵入性射频电场癌症热疗生物学效应的新型成像平台。
PLoS One. 2015 Aug 26;10(8):e0136382. doi: 10.1371/journal.pone.0136382. eCollection 2015.
4
Evaluation of side effects of radiofrequency capacitive hyperthermia with magnetite on the blood vessel walls of tumor metastatic lesion surrounding the abdominal large vessels: an agar phantom study.磁铁矿射频电容热疗对腹部大血管周围肿瘤转移灶血管壁的副作用评估:琼脂模型研究
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Gold nanoparticles and radiofrequency in experimental models for hepatocellular carcinoma.用于肝细胞癌实验模型的金纳米颗粒与射频
Nanomedicine. 2014 Aug;10(6):1121-30. doi: 10.1016/j.nano.2014.03.004. Epub 2014 Mar 17.
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Delivery of molecular and cellular medicine to solid tumors.向实体瘤递送分子与细胞药物。
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7
PEGylated fullerene/iron oxide nanocomposites for photodynamic therapy, targeted drug delivery and MR imaging.聚乙二醇化富勒烯/氧化铁纳米复合材料用于光动力疗法、靶向药物递送和磁共振成像。
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Nanoparticle drug loading as a design parameter to improve docetaxel pharmacokinetics and efficacy.纳米颗粒载药作为改善多西他赛药代动力学和疗效的设计参数。
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Tumor selective hyperthermia induced by short-wave capacitively-coupled RF electric-fields.短波容性耦合射频电场诱导的肿瘤选择性热疗。
PLoS One. 2013 Jul 4;8(7):e68506. doi: 10.1371/journal.pone.0068506. Print 2013.
10
Remotely triggered cisplatin release from carbon nanocapsules by radiofrequency fields.通过射频场从碳纳米胶囊中远程触发顺铂释放。
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非侵入性射频电场热疗对荧光[60]富勒烯衍生物在小鼠乳腺腺癌原位模型中的生物转运和生物分布的影响。

The effects of non-invasive radiofrequency electric field hyperthermia on biotransport and biodistribution of fluorescent [60]fullerene derivative in a murine orthotopic model of breast adenocarcinoma.

作者信息

Lapin Norman A, Krzykawska-Serda Martyna, Dilliard Sean, Mackeyev Yuri, Serda Maciej, Wilson Lon J, Curley Steven A, Corr Stuart J

机构信息

Michael E. DeBakey Department of Surgery, Baylor College of Medicine, Houston, TX 77030, USA.

Michael E. DeBakey Department of Surgery, Baylor College of Medicine, Houston, TX 77030, USA; Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, Kraków 30-387, Poland.

出版信息

J Control Release. 2017 Aug 28;260:92-99. doi: 10.1016/j.jconrel.2017.05.022. Epub 2017 May 17.

DOI:10.1016/j.jconrel.2017.05.022
PMID:28527736
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5549922/
Abstract

The aim of this study is to understand the combined and differential biokinetic effects of radiofrequency (RF) electric-field hyperthermia as an adjunctive therapy to [60]fullerene nanoparticle-based drug delivery systems in targeting the micro-vasculature and micro-environments of breast cancer tumors. Intravital microscopy (IVM) is an ideal tool to provide the spatial and temporal resolution needed for quantification in this investigation. The water-soluble and fluorescent [60]fullerene derivative (C-serPF) was designed to be an amphiphilic nanostructure, which is able to cross several biological membranes and accumulate in tumor tissues by passing through abnormally leaky tumor blood vessels. To elucidate the coupled effects of the highly permeable, but heterogeneous tumor vasculature, with the permeabilizing effects of mild (40-42°C) hyperthermia produced by a local RF field, we controlled variables across tumor and non-tumor mammary gland microvasculature with and without application of RF hyperthermia in each condition. We notice that tumor tissue is characterized by more intense drug extravasation than in contralateral mammary fat pad tissue, which is consistent with enhanced permeability and retention (EPR) effects. The analysis of a permeability parameter (P), C-serPF velocity, and the time of compound influx into the intra- and extra-vascular space suggest that mild RF hyperthermia can improve nanoparticle delivery into tumor tissue.

摘要

本研究的目的是了解射频(RF)电场热疗作为基于[60]富勒烯纳米颗粒的药物递送系统的辅助疗法,在靶向乳腺癌肿瘤的微血管和微环境方面的联合和差异生物动力学效应。活体显微镜检查(IVM)是提供本研究中定量所需的空间和时间分辨率的理想工具。水溶性荧光[60]富勒烯衍生物(C-serPF)被设计为两亲性纳米结构,它能够穿过几层生物膜,并通过异常渗漏的肿瘤血管在肿瘤组织中积累。为了阐明高度渗透但异质性的肿瘤脉管系统与局部RF场产生的温和(40-42°C)热疗的渗透作用的耦合效应,我们在每种情况下,对应用和未应用RF热疗的肿瘤和非肿瘤乳腺微血管的变量进行了控制。我们注意到,肿瘤组织的特征是药物外渗比同侧乳腺脂肪垫组织更强烈,这与增强的通透性和滞留(EPR)效应一致。对通透性参数(P)、C-serPF速度以及化合物流入血管内和血管外空间的时间的分析表明,温和的RF热疗可以改善纳米颗粒向肿瘤组织的递送。