Kabalka George W, Nichols Trent L, Smith Gary T, Miller Laurence F, Khan Mohammad K, Busse Paul M
Department of Chemistry, The University of Tennessee Memorial Research Center and Hospital, Knoxville, TN, USA.
J Neurooncol. 2003 Mar-Apr;62(1-2):187-95. doi: 10.1007/BF02699944.
Centers in Japan and the United States are extending boron neutron capture therapy (BNCT) to the treatment of malignant melanoma (MM). Positron emission tomography (PET) has been used to image glioblastoma multiforme with 18F-boronophenylalanine (18F-BPA) for the purpose of generating 10B distribution maps. These distribution maps can be used to improve the BNCT treatment planning. 18F-BPA was given to a patient with widely metastatic MM involving the thorax and brain. 18F-BPA PET scans of the chest and the head were obtained and compared to the computed tomograms (CT) and magnetic resonance (MR) images. The lung metastases seen on the chest CT images and intracranial metastases seen on CT and MR images were correlated with the PET images. The PET images clearly identified a brain lesion that was difficult to identify on MR and CT images. The 18F-BPA lung and peri-oral mucous gland activity was intense indicating a relatively high concentration of BPA. The intensity seen in the peri-oral mucous glands is consistent with the experiences in the BNCT clinical trials. These results have implications in the use of BNCT outside of the cranium. The PET images allow the generation of treatment plans that are consistent with the clinical findings. PET imaging with 18F-BPA can be used to identify potential tumors that may be amenable to BNCT and to improve treatment plans prior to BNCT.
日本和美国的一些中心正在将硼中子俘获疗法(BNCT)扩展至恶性黑色素瘤(MM)的治疗。正电子发射断层扫描(PET)已被用于利用18F-硼苯丙氨酸(18F-BPA)对多形性胶质母细胞瘤进行成像,目的是生成10B分布图。这些分布图可用于改进BNCT治疗计划。对一名患有广泛转移至胸部和脑部的MM患者给予了18F-BPA。获取了胸部和头部的18F-BPA PET扫描图像,并与计算机断层扫描(CT)和磁共振(MR)图像进行比较。胸部CT图像上所见的肺转移灶以及CT和MR图像上所见的颅内转移灶与PET图像相关联。PET图像清晰地识别出一个在MR和CT图像上难以识别的脑病变。18F-BPA在肺部和口腔周围黏液腺的活性很强,表明BPA浓度相对较高。口腔周围黏液腺中所见的强度与BNCT临床试验中的经验一致。这些结果对在颅骨外使用BNCT具有启示意义。PET图像能够生成与临床发现一致的治疗计划。使用18F-BPA进行PET成像可用于识别可能适合BNCT的潜在肿瘤,并在BNCT之前改进治疗计划。