Eling Laura, Bouchet Audrey, Ocadiz Alexandre, Adam Jean-François, Kershmiri Sarvenaz, Elleaume Hélène, Krisch Michael, Verry Camille, Laissue Jean A, Balosso Jacques, Serduc Raphaël
INSERM UA7, STROBE, 71 Av. des Martyrs, 38000 Grenoble, France.
European Synchrotron Radiation Facility, 71, Av. des Martyrs, 38000 Grenoble, France.
Cancers (Basel). 2021 Feb 24;13(5):936. doi: 10.3390/cancers13050936.
Delivery of high-radiation doses to brain tumors via multiple arrays of synchrotron X-ray microbeams permits huge therapeutic advantages. Brain tumor (9LGS)-bearing and normal rats were irradiated using a conventional, homogeneous Broad Beam (BB), or Microbeam Radiation Therapy (MRT), then studied by behavioral tests, MRI, and histopathology. A valley dose of 10 Gy deposited between microbeams, delivered by a single port, improved tumor control and median survival time of tumor-bearing rats better than a BB isodose. An increased number of ports and an accumulated valley dose maintained at 10 Gy delayed tumor growth and improved survival. Histopathologically, cell death, vascular damage, and inflammatory response increased in tumors. At identical valley isodose, each additional MRT port extended survival, resulting in an exponential correlation between port numbers and animal lifespan (r = 0.9928). A 10 Gy valley dose, in MRT mode, delivered through 5 ports, achieved the same survival as a 25 Gy BB irradiation because of tumor dose hot spots created by intersecting microbeams. Conversely, normal tissue damage remained minimal in all the single converging extratumoral arrays. Multiport MRT reached exceptional ~2.5-fold biological equivalent tumor doses. The unique normal tissue sparing and therapeutic index are eminent prerequisites for clinical translation.
通过同步加速器X射线微束的多个阵列向脑肿瘤输送高辐射剂量具有巨大的治疗优势。对患有脑肿瘤(9LGS)的大鼠和正常大鼠使用传统的均匀宽束(BB)或微束放射治疗(MRT)进行照射,然后通过行为测试、磁共振成像(MRI)和组织病理学进行研究。由单个端口输送的微束之间沉积的10 Gy谷剂量,比BB等剂量更好地改善了荷瘤大鼠的肿瘤控制和中位生存时间。增加端口数量并将累积谷剂量维持在10 Gy可延迟肿瘤生长并提高生存率。组织病理学上,肿瘤中的细胞死亡、血管损伤和炎症反应增加。在相同的谷等剂量下,每个额外的MRT端口都能延长生存期,导致端口数量与动物寿命之间呈指数相关(r = 0.9928)。由于交叉微束产生的肿瘤剂量热点,在MRT模式下通过5个端口输送的10 Gy谷剂量实现了与25 Gy BB照射相同的生存率。相反,在所有单个汇聚的肿瘤外阵列中,正常组织损伤仍然最小。多端口MRT达到了异常的约2.5倍生物等效肿瘤剂量。独特的正常组织保护和治疗指数是临床转化的重要前提条件。