[68Ga]Ga-HBED-CC-PEG6-Exendin-4 PET/CT Imaging in the Diagnosis of Insulinoma
[68Ga]Ga-HBED-CC-PEG6-Exendin-4 PET/CT Imaging in the Diagnosis of Insulinoma
This clinical research evaluates a new PET/CT imaging agent, [68Ga]Ga-HBED-CC-PEG6-exendin-4, for localizing insulinoma, a rare pancreatic tumor that causes severe low blood sugar. Insulinomas are often small and hard to detect with regular CT, ultrasound or standard PET scans. This new tracer targets GLP1R, a protein highly expressed on insulinoma cells, with polyethylene glycol (PEG6) modification to improve tumor uptake and image contrast compared with the earlier similar agent [68Ga]Ga-HBED-CC-exendin-4.
The investigators plan to enroll 20 adult patients suspected of or confirmed to have insulinoma. All participants will receive two free PET/CT scans within one week: one with the new PEG6-modified tracer and one with the original tracer. The first 3 participants will also get dynamic PET scanning to analyze drug distribution and radiation dose in the human body. Within one month after imaging, patients will undergo surgery or biopsy to get pathological results, which serve as the gold standard to calculate and compare the diagnostic accuracy of the two tracers.
All imaging procedures follow standard clinical protocols with safe, low radiation doses within national diagnostic limits. Minor possible risks include slight pain or mild allergic reaction at the injection site; rare side effects related to exendin-4 may occur at a rate below 5%, and the research team has full emergency management measures ready. Participants can withdraw from the study at any time without penalty. All scan fees are covered by the research project, and each subject will receive a formal imaging report for clinical reference. The findings of this trial will help develop a more accurate imaging tool to precisely locate insulinoma and guide surgical treatment.
Insulinoma is the most common cause of endogenous hyperinsulinemic hypoglycemia in adults. Most lesions are benign but typically small (1-2 cm), leading to poor detection sensitivity for conventional cross-sectional imaging including abdominal ultrasound and routine CT, which frequently fails to pinpoint tiny tumor foci. Incomplete resection results in persistent hypoglycemic symptoms and poor quality of life, creating an urgent clinical demand for sensitive, noninvasive localization modalities.
Glucagon-like peptide-1 receptor (GLP-1R) is abundantly overexpressed on benign insulinoma cells at levels approximately five times higher than normal pancreatic beta cells, making it an ideal molecular target for positron emission tomography. Earlier GLP-1R-targeted radiotracers such as [68Ga]Ga-NOTA-exendin-4 require high-temperature heating and post-labeling purification, limiting routine clinical deployment. The precursor probe [68Ga]Ga-HBED-CC-exendin-4 can be synthesized under mild conditions without purification but still presents relatively high physiological renal uptake that may obscure lesions adjacent to the kidney.
To further optimize pharmacokinetic behavior, a PEG6 linker was conjugated to the HBED-CC-exendin-4 scaffold to generate the novel radiotracer [68Ga]Ga-HBED-CC-PEG6-exendin-4. Preclinical mouse biodistribution and microPET experiments demonstrated significantly higher pancreatic and insulinoma tumor uptake, longer intralesional tracer retention, and an improved pancreas-to-kidney ratio relative to the non-PEGylated counterpart, which is expected to enhance lesion conspicuity on clinical PET/CT. Competitive blocking assays verified that tumor signal originates from specific GLP-1R binding. This novel radiopharmaceutical meets compendial standards for sterility and bacterial endotoxin and maintains high radiochemical purity for two physical half-lives after formulation.
This single-center prospective comparative trial will recruit 20 subjects aged 18-70 years with suspected or pathologically verifiable insulinoma. Eligible participants complete two radiotracer PET/CT examinations within a 7-day window at no personal cost: one using the PEG6-modified investigational agent and one using the original [68Ga]Ga-HBED-CC-exendin-4 reference tracer. The initial three enrolled subjects additionally undergo dynamic PET acquisition to generate human pharmacokinetic parameters and internal radiation dosimetry estimates. Baseline laboratory tests, clinical history, and prior imaging data are collected before radiotracer injection. All participants receive surgical resection or biopsy within 30 days of scanning to obtain histopathological confirmation, the reference standard for diagnostic performance calculation.
Two independent experienced nuclear medicine physicians conduct blinded visual and semi-quantitative image analysis, measuring SUV values and tumor-to-background ratios for each tracer. Primary endpoints include comparative diagnostic sensitivity, specificity, accuracy, positive predictive value, and negative predictive value of the two PET agents for insulinoma localization. Secondary endpoints encompass human in vivo biodistribution, radiation dosimetry, and qualitative differences in tumor visualization and background interference.
All radiotracer administrations and PET/CT acquisitions adhere to standardized institutional operating procedures with radiation exposure within permissible diagnostic limits. Study staff monitor participants throughout imaging for adverse events related to intravenous injection or exendin-4-mediated effects, with standardized supportive protocols available for symptom management. Participants retain full voluntary withdrawal rights at any stage without impact on routine clinical care. All identifiable personal data are de-identified for analysis and long-term secure storage. Outcomes will be disseminated via peer-reviewed scientific publications to establish the clinical utility of PEG6-modified GLP-1R PET as an improved localization tool for insulinoma and guide surgical planning for hypoglycemic patients.
Inclusion Criteria:
Exclusion Criteria:
luoyaping@live.com86-10-69154717