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质子治疗中枢神经系统恶性肿瘤的前景。

The Promise of Proton Therapy for Central Nervous System Malignancies.

机构信息

Department of Rad-iation Oncology, Vanderbilt University Medical Center, Nashville, Tennessee.

Department of Radiation Oncology, Perelman School of Medicine, University of Pennsylvania.

出版信息

Neurosurgery. 2019 May 1;84(5):1000-1010. doi: 10.1093/neuros/nyy454.

Abstract

Radiation therapy plays a significant role in management of benign and malignant diseases of the central nervous system. Patients may be at risk of acute and late toxicity from radiation therapy due to dose deposition in critical normal structures. In contrast to conventional photon delivery techniques, proton therapy is characterized by Bragg peak dose deposition which results in decreased exit dose beyond the target and greater sparing of normal structure which may reduce the rate of late toxicities from treatment. Dosimetric studies have demonstrated reduced dose to normal structures using proton therapy as compared to photon therapy. In addition, clinical studies are being reported demonstrating safety, feasibility, and low rates of acute toxicity. Technical challenges in proton therapy remain, including full understanding of depth of proton penetration and the biological activity in the distal Bragg peak. In addition, longer clinical follow-up is required to demonstrate reduction in late toxicities as compared to conventional photon-based radiation techniques. In this review, we summarize the current clinical literature and areas of active investigation in proton therapy for adult central nervous system malignancies.

摘要

放射治疗在中枢神经系统良性和恶性疾病的治疗中起着重要作用。由于剂量在关键正常结构中的沉积,患者可能有发生急性和迟发性毒性的风险。与传统光子输送技术相比,质子治疗的特点是布拉格峰剂量沉积,这导致靶区外的出射剂量降低,正常结构的保护更好,从而可能降低治疗后迟发性毒性的发生率。剂量学研究表明,与光子治疗相比,质子治疗可降低正常组织的剂量。此外,正在报告临床研究,证明其安全性、可行性和较低的急性毒性发生率。质子治疗仍存在技术挑战,包括对质子穿透深度和远侧布拉格峰生物活性的充分理解。此外,需要更长的临床随访时间来证明与传统基于光子的放射技术相比,迟发性毒性的降低。在这篇综述中,我们总结了目前关于成人中枢神经系统恶性肿瘤质子治疗的临床文献和活跃研究领域。

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