The purpose of Part 1 of this study is to evaluate the imaging characteristics, safety, biodistribution and pharmacokinetics of \[68Ga\]Ga-DFC413, and in Part 2 compare to \[68Ga\]Ga-NNS309 in patients with locally advanced or metastatic pancreatic ductal adenocarcinoma (PDAC), non-small cell lung cancer (NSCLC), HR+/HER2- ductal and lobular breast cancer (BC), triple negative breast cancer (TNBC), colorectal cancer (CRC), and soft tissue sarcoma (STS). In Part 2 of this study (comparison of \[68Ga\]Ga-DFC413 and \[68Ga\]Ga-NNS309), not all indications might be explored.
This is a first-in-human (FiH), open-label, multicenter, phase I radioligand imaging study designed to assess the biodistribution, imaging, safety, pharmacokinetics (PK), and dosimetry properties of 68Ga-DFC413 and to explore whether 68Ga-DFC413 can be used to identify FAP-expressing lesions in patients with various solid tumors, including metastatic PDAC, NSCLC, ductal and lobular BC, TNBC, CRC, and STS. The study is divided in 2 parts: An imaging characterization part (Part 1) and a comparative assessment part (Part 2). All patients in Part 1 (imaging characterization part) will receive a single administered radioactive dose of 68Ga-DFC413. In Part 2 (comparative assessment part) patients will either receive a single administered radioactive dose of 68Ga-DFC413 followed by a single administered radioactive dose of 68Ga-NNS309; or a single administered radioactive dose of 68Ga-NNS309 followed by 68Ga-DFC413.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
DIAGNOSTIC
Masking
NONE
Enrollment
66
Radioimaging agent
Radioimaging agent
Novartis Investigative Site
Chuo Ku, Tokyo, Japan
RECRUITINGPart 1: Standard Uptake Value (SUV) of 68Ga-DFC413 uptake in organs and tumors over time
Imaging properties of 68Ga-DFC413 will be evaluated by assessing radiotracer uptake, identified via positron emission tomography (PET) scans. The SUV values will be calculated and reported with summary statistics.
Time frame: Up to 240 minutes after 68Ga-DFC413 administration
Part 1: Standard Uptake Value ratio (SUVr) of 68Ga-DFC413 uptake
SUVr will be calculated by dividing the SUV of the lesions by the SUV of the different organs in order to identify the reference organ with the lowest uptake and the respective SUVr (i.e. using SUVmean or SUVmax).
Time frame: Up to 240 minutes after 68Ga-DFC413 administration
Part 2: Agreement between 68Ga-DFC413 and 68Ga-NNS309 for assessing target lesions from both PET scans per disease group
Agreement between target lesions and normal organs from 68Ga-DFC413 and 68Ga-NNS309 PET imaging will be assessed using summary statistics of SUV and SUVr.
Time frame: Up to 240 minutes after administration of each imaging agent
Part 1: Observed maximum concentration (Cmax) of 68Ga-DFC413 based on blood radioactivity data
The pharmacokinetic analysis of 68Ga-DFC413 will be performed based on blood radioactivity concentration data, obtained by measuring in gamma-counting equipment the blood samples.
Time frame: Up to 240 minutes after 68Ga-DFC413 administration
Part 1: Time to reach maximum concentration (Tmax) of 68Ga-DFC413 based on blood radioactivity data
The pharmacokinetic analysis of 68Ga-DFC413 will be performed based on blood radioactivity concentration data, obtained by measuring in gamma-counting equipment the blood samples.
Time frame: Up to 240 minutes after 68Ga-DFC413 administration
Part 1: Area under the concentration-time curve (AUC) of 68Ga-DFC413 based on blood radioactivity data
The pharmacokinetic analysis of 68Ga-DFC413 will be performed based on blood radioactivity concentration data, obtained by measuring in gamma-counting equipment the blood samples.
Time frame: Up to 240 minutes after 68Ga-DFC413 administration
Part 1: Urinary excretion of 68Ga-DFC413
The elimination of the compound in urine will be evaluated based on urine radioactivity concentration data obtained by measuring in gamma counting equipment the urine samples.
Time frame: Up to 240 minutes after 68Ga-DFC413 administration
Part 1: Incidence and severity of Adverse Events (AEs) and Serious Adverse Events (SAEs) of 68Ga-DFC413
Incidence and severity of AEs and SAEs after administration of 68Ga-DFC413, including changes in vital signs, electrocardiograms and laboratory values qualifying and reported as AEs.
Time frame: Up to 3 days after administration of each imaging agent
Part 1: Absorbed radiation dose in total body
Absorbed radiation dose in total body as measured by image quantification.
Time frame: Up to 240 minutes after 68Ga-DFC413 administration
Part 1: Effective radiation dose
Effective radiation dose in total body as measured by image quantification.
Time frame: Up to 240 minutes after 68Ga-DFC413 administration
Part 2: Number of FAP positive lesions that are detected using 68Ga-DFC413 and 68Ga-NNS309 PET imaging, and conventional imaging methods
Numbers of Fibroblast Activation Protein (FAP) positive lesions detected by each imaging method.
Time frame: Up to 240 minutes after administration of each imaging agent
Part 2: Incidence and severity of Adverse Events (AEs) and Serious Adverse Events (SAEs) of 68Ga-DFC413 and 68Ga-NNS309
Incidence and severity of AEs and SAEs after administration of 68Ga-DFC413 followed by 68Ga-NNS309 (and vice versa), including changes in vital signs, electrocardiograms and laboratory values qualifying and reported as AEs.
Time frame: Up to 3 days after administration of each imaging agent
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.