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可注射液态碱合金基肿瘤热消融治疗

Injectable liquid alkali alloy based-tumor thermal ablation therapy.

作者信息

Rao Wei, Liu Jing

机构信息

Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, PR China.

出版信息

Minim Invasive Ther Allied Technol. 2009;18(1):30-5. doi: 10.1080/13645700802384023.

Abstract

The alkali metal was recently found to be a very useful agent for inducing minimally invasive tumor hyperthermia therapy. However, the solid-like metal makes it somewhat inconvenient to perform the surgery. Here, to overcome this drawback, the NaK alloy in liquid state at room temperature was proposed as a highly efficient thermal ablative agent for tumor treatment. For illustration purposes, the functionalized liquid NaK alloy at a mass ratio 1:1 was obtained and an amount of 0.35 ml was injected into in vitro pork. The sizes of the damage region and temperature response were measured. It was found that significant temperature increase by a magnitude of > 80 degrees C can easily be obtained. This produced a large coagulation and necrotic area within selected areas for in vitro tests and the necrotic region volume is three times that of the NaK injection quantity. Furthermore, for the in vivo experiment, breast EMT6 tumor in mouse was subjected to treatment by NaK alloy. Tumor was harvested after the experiment to assess its viability. Histological section showed complete necrosis at the target site. These conceptual results demonstrate that using injectable liquid alkali alloy to ablate tumor is rather promising. This study also raised interesting issues waiting for clarification in future technical and animal studies aiming to assess efficacy, side effects and safety of the new therapy.

摘要

最近发现碱金属是诱导微创肿瘤热疗的一种非常有用的试剂。然而,固态金属使得手术操作有些不便。在此,为克服这一缺点,提出将室温下呈液态的钠钾合金作为一种用于肿瘤治疗的高效热消融剂。为便于说明,制备了质量比为1:1的功能化液态钠钾合金,并将0.35毫升注入体外猪肉中。测量了损伤区域的大小和温度响应。结果发现,很容易实现大于80摄氏度的显著温度升高。这在体外测试的选定区域内产生了大的凝血和坏死区域,坏死区域体积是钠钾注射量的三倍。此外,对于体内实验,用钠钾合金对小鼠的乳腺EMT6肿瘤进行治疗。实验后收获肿瘤以评估其活力。组织学切片显示靶部位完全坏死。这些概念性结果表明,使用可注射液态碱合金消融肿瘤很有前景。本研究还提出了一些有趣的问题,有待在未来旨在评估新疗法的疗效、副作用和安全性的技术和动物研究中加以阐明。

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