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Nanotube x-ray for cancer therapy: a compact microbeam radiation therapy system for brain tumor treatment

机译:纳米管X射线用于癌症治疗:用于脑肿瘤治疗的紧凑型微束放射治疗系统

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摘要

Microbeam radiation therapy (MRT) is a promising preclinical modality for cancer treatment, with remarkable preferential tumoricidal effects, that is, tumor eradication without damaging normal tissue functions. Significant lifespan extension has been demonstrated in brain tumor-bearing small animals treated with MRT. So far, MRT experiments can only be performed in a few synchrotron facilities around the world. Limited access to MRT facilities prevents this enormously promising radiotherapy technology from reaching the broader biomedical research community and hinders its potential clinical translation. We recently demonstrated, for the first time, the feasibility of generating microbeam radiation in a laboratory environment using a carbon nanotube x-ray source array and performed initial small animal studies with various brain tumor models. This new nanotechnology-enabled microbeam delivery method, although still in its infancy, has shown promise for achieving comparable therapeutic effects to synchrotron MRT and has offered a potential pathway for clinical translation.
机译:微束放射疗法(MRT)是用于癌症治疗的有希望的临床前方法,具有显着的优先杀肿瘤作用,即在不损害正常组织功能的情况下根除肿瘤。在使用MRT治疗的患有脑瘤的小型动物中已证明寿命显着延长。到目前为止,MRT实验只能在世界各地的一些同步加速器设施中进行。进入MRT设施的机会有限,阻止了这种前景广阔的放射治疗技术进入更广泛的生物医学研究界,并阻碍了其潜在的临床翻译。我们最近首次证明了使用碳纳米管X射线源阵列在实验室环境中产生微束辐射的可行性,并使用各种脑肿瘤模型进行了初步的小动物研究。这种新的支持纳米技术的微束递送方法虽然仍处于起步阶段,但已显示出有望实现与同步加速器MRT相当的治疗效果,并为临床翻译提供了潜在途径。

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