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首页> 外文期刊>Investigative radiology >Gadolinium neutron capture therapy (GdNCT) of melanoma cells and solid tumors with the magnetic resonance imaging contrast agent Gadobutrol.
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Gadolinium neutron capture therapy (GdNCT) of melanoma cells and solid tumors with the magnetic resonance imaging contrast agent Gadobutrol.

机译:用磁共振成像造影剂加多布特罗对黑素瘤细胞和实体瘤进行d中子捕获治疗(GdNCT)。

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摘要

RATIONALE AND OBJECTIVES: The therapeutic gain of neutron capture therapy with a neutral macrocyclic gadolinium (Gd) complex (Gadobutrol) was evaluated through in vitro and in vivo studies in a beam of low-energy neutrons. METHODS: Neutron irradiation for both the in vitro and in vivo studies was performed in a beam of low-energy neutrons produced by the research reactor of the Hahn-Meitner-Institut, Berlin. Malignant melanoma cells of human origin were irradiated in the presence or absence of Gadobutrol. In vivo irradiation was performed on tumor-bearing nude mice. The tumor site was irradiated subsequent to intratumoral injection of Gadobutrol and compared with irradiation in the absence of the Gd complex. RESULTS: In vitro studies showed a Gd-dependent delay of cell proliferation as a consequence of neutron irradiation. In animals, intratumoral administration of the Gd complex at a dose of 1.2 mmol Gd/kg before neutron irradiation results in a significant delay in tumor growth with respect to the control groups. CONCLUSIONS: In vitro and in vivo studies showed a therapeutic benefit with the neutral Gd complex and suggest Gd-containing magnetic resonance contrast media are potential candidates for neutron capture therapy. The Gd dose used in the irradiation experiments was four times the presently accepted high dose in clinical magnetic resonance imaging.
机译:理由和目的:通过在低能中子束中进行的体外和体内研究,评估了使用中性大环g(Gd)配合物(Gadobutrol)进行中子捕获疗法的治疗效果。方法:在柏林哈恩·迈特纳研究所的研究堆产生的一束低能中子中进行了中子辐射的体外和体内研究。在有或没有Gadobutrol的情况下照射人源性恶性黑色素瘤细胞。在荷瘤裸鼠上进行体内照射。肿瘤内注射加多布特罗后照射肿瘤部位,并与不存在Gd复合物的情况下进行照射进行比较。结果:体外研究表明,中子辐照可导致Gd依赖的细胞增殖延迟。在动物中,在中子辐照之前以1.2 mmol Gd / kg的剂量对Gd复合物进行瘤内给药,相对于对照组,导致肿瘤生长显着延迟。结论:体外和体内研究显示了中性Gd复合物的治疗益处,并表明含Gd的磁共振造影剂是中子俘获治疗的潜在候选者。放射实验中使用的Gd剂量是临床磁共振成像中目前接受的高剂量的四倍。

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