Daghighian F, Pentlow K S, Larson S M, Graham M C, DiResta G R, Yeh S D, Macapinlac H, Finn R D, Arbit E, Cheung N K
Department of Medical Physics, Memorial Sloan-Kettering Cancer Center, New York, NY 10021.
Eur J Nucl Med. 1993 May;20(5):402-9. doi: 10.1007/BF00208998.
We present a method to assess quantitatively the immunological characteristics of tumours using radiolabelled monoclonal antibody and positron emission tomography (PET) to improve dosimetry for radioimmunotherapy. This method is illustrated with a glioma patient who was injected with 96.2 MBq of iodine-124 labelled 3F8, a murine antibody (IgG3) specific against the ganglioside GD2. Serial PET scans and plasma samples were taken over 11 days. A three-compartment model was used to estimate the plasma to tumour transfer constant (K1), the tumour to plasma transfer constant k2, the association and dissociation constants (k3, k4) of antibody binding, and the binding potential. Tumour radioactivity peaked at 18 h at 0.0045% ID/g. The kinetic parameters were estimated to be: K1 = 0.048 ml h-1 g-1, k2 = 0.16 h-1, k3 = 0.03 h-1, k4 = 0.015 h-1 and BP = 2.25. Based on these kinetic parameters, the amount of tumour-bound radiolabelled monoclonal antibody was calculated. This method permits estimates of both macrodosimetry and microdosimetry at the cellular level based on in vivo non-invasive measurement.
我们提出了一种方法,利用放射性标记的单克隆抗体和正电子发射断层扫描(PET)定量评估肿瘤的免疫特性,以改善放射免疫治疗的剂量测定。一名胶质瘤患者注射了96.2 MBq的碘-124标记的3F8(一种针对神经节苷脂GD2的鼠源抗体(IgG3)),以此来说明该方法。在11天内进行了系列PET扫描并采集了血浆样本。采用三室模型来估计血浆到肿瘤的转移常数(K1)、肿瘤到血浆的转移常数k2、抗体结合的结合和解离常数(k3、k4)以及结合潜能。肿瘤放射性在18小时时达到峰值,为0.0045% ID/g。动力学参数估计为:K1 = 0.048 ml h-1 g-1,k2 = 0.16 h-1,k3 = 0.03 h-1,k4 = 0.015 h-1,BP = 2.25。基于这些动力学参数,计算了肿瘤结合的放射性标记单克隆抗体的量。该方法允许基于体内非侵入性测量在细胞水平上估计宏观剂量测定和微观剂量测定。