A pilot study of pancreatic islet amyloid PET imaging with [F-18]FDDNP

作者:Lu, Zhi; Xie, Jinghui; Yan, Ran; Yu, Zilin; Sun, Zhigang; Yu, Fei; Gong, Xiaoyan; Feng, Hongbo; Lu, Jing; Zhang, Yanjun*
来源:Nuclear Medicine Communications, 2018, 39(7): 659-664.
DOI:10.1097/MNM.0000000000000849

摘要

ObjectivesPancreatic islet amyloid deposition occurs before -cell damage in type 2 diabetes mellitus patients. The islet and Alzheimer's disease -amyloid shares similar secondary structures. The Alzheimer's disease -amyloid targeting tracer [F-18]FDDNP could be used to image pancreatic islet amyloid with PET.Patients and methodsConsecutive pancreatic tissue sections from a 69-year-old male type 2 diabetes mellitus patient were stained by hematoxylin and eosin, anti-amylin antibody, Congo Red, periodic acid-Schiff, and [F-18]FDDNP reference compound, respectively. The pancreatic tissue sections were also incubated with [F-18]FDDNP with and without its reference compound for autoradiography. Subsequently, we performed control [F-18]FDDNP pancreatic PET/CT imaging in four healthy individuals. The mean standardized uptake values of [F-18]FDDNP uptake in the pancreatic head, neck, body, and tail, blood pool, liver, and vertebral bone from 5 to 120min after injection were determined.ResultsIslet amyloid was observed in all four standard staining methods in the pancreas tissue. Similar islet amyloid distribution and phenotypes were observed clearly in the [F-18]FDDNP reference compound-stained pancreas tissue. [F-18]FDDNP was intensively accumulated in the same pancreatic tissue in autoradiography, which was largely blocked by its reference compound. In the PET/CT scans of control human participants, the mean standardized uptake values in pancreas decreased to the blood pool level in 30min and all parts of the pancreas had similar [F-18]FDDNP uptake. The pancreas could be distinguished clearly from the liver at all-time points.ConclusionThese results suggested that [F-18]FDDNP is a potential tracer for pancreatic islet amyloid PET imaging.