强子治疗的多学科合作与新技术进展。

IF 2.7 4区 医学 Q3 ONCOLOGY
Manjit Dosanjh, Alberto Degiovanni, Maria Monica Necchi, Elena Benedetto
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引用次数: 0

摘要

与癌症的斗争仍然是社会的首要任务,迫切需要开发能够针对具有挑战性的肿瘤的治疗方法,同时保持患者的生活质量。强子疗法(HT)采用质子、碳离子和其他带电粒子的加速束,代表了癌症治疗的一个重要前沿。与传统方法相比,这种方式提供了更高的精确度和有效性,直接向肿瘤提供治疗剂量,同时保留健康组织。尽管全球已有35万名患者接受了质子治疗,5万名患者接受了碳离子治疗,但高温疗法仍然是一个相对年轻的领域,需要更多的研究以及新颖、经济、紧凑的加速器技术,才能使这种治疗在全球范围内更容易获得。有趣的是,第一个病人是在1954年9月接受质子照射的,同年同月,欧洲核子研究中心成立。这两项努力都植根于尖端技术和多学科合作。粒子疗法终于取得了进展,即使在70年后,粒子治疗领域仍在不断创新和改进,以造福全球患者。开发既负担得起又易于使用的技术是关键,这将使更多的患者能够获得治疗。加速器驱动的硼中子捕获疗法(BNCT)、图像引导强子束输送、临床试验和免疫疗法的进展,以及最近对FLASH疗法的兴趣和进展,这是一种目前涉及超高剂量率输送的实验性治疗方式,只是创新的几个例子,最终可能有助于为更多的患者提供治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multidisciplinary Collaboration and Novel Technological Advances in Hadron Therapy.

The battle against cancer remains a top priority for society, with an urgent need to develop therapies capable of targeting challenging tumours while preserving patient's quality of life. Hadron Therapy (HT), which employs accelerated beams of protons, carbon ions, and other charged particles, represents a significant frontier in cancer treatment. This modality offers superior precision and efficacy compared to conventional methods, delivering therapeutic the dose directly to tumours while sparing healthy tissue. Even though 350,000 patients have already been treated worldwide with protons and 50,000 with carbon ions, HT is still a relatively young field and more research as well as novel, cost-effective and compact accelerator technologies are needed to make this treatment more readily available globally. Interestingly the very first patient was irradiated with protons in September 1954, the same month and year CERN was founded. Both of these endeavours are embedded in cutting edge technologies and multidisciplinary collaboration. HT is finally gaining ground and, even after 70 years, the particle therapy field continues innovating and improving for the benefits of patients globally. Developing technologies that are both affordable and easy to use is key and would allow access to more patients. Advances in accelerator-driven Boron Neutron Capture Therapy (BNCT), image-guided hadron beams delivery, clinical trials and immunotherapy, together with the recent interest and advances in FLASH therapy, which is currently an experimental treatment modality that involves ultrahigh-dose rate delivery, are just a few examples of innovation that may eventually help to provide access to a larger number of patients.

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来源期刊
CiteScore
4.40
自引率
0.00%
发文量
202
审稿时长
2 months
期刊介绍: Technology in Cancer Research & Treatment (TCRT) is a JCR-ranked, broad-spectrum, open access, peer-reviewed publication whose aim is to provide researchers and clinicians with a platform to share and discuss developments in the prevention, diagnosis, treatment, and monitoring of cancer.
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