Related Experiment Video
Updated: Dec 4, 2025

Imaging CD19+ B Cells in an Experimental Autoimmune Encephalomyelitis Mouse Model using Positron Emission Tomography
Published on: January 20, 2023
Identifying CD38+ cells in patients with multiple myeloma: first-in-human imaging using copper-64-labeled daratumumab
Amrita Krishnan1, Vikram Adhikarla2, Erasmus K Poku3
1The Judy and Bernard Briskin Center for Multiple Myeloma Research.
Insights
New imaging using 64Cu-daratumumab PET/CT shows promise for detecting multiple myeloma (MM). This technique is safe and feasible, potentially offering improved accuracy over standard FDG PET/CT for MM diagnosis.
Area of Science:
- Nuclear Medicine
- Oncology
- Radiopharmaceutical Development
Background:
- 18F-Fluorodeoxyglucose (FDG) positron emission tomography/computed tomography (PET/CT) is a standard imaging technique for multiple myeloma (MM).
- FDG PET/CT has limitations in sensitivity and specificity due to non-specific uptake in malignant and nonmalignant cells.
- Preclinical studies suggest that 64Cu-daratumumab PET/CT may offer improved detection of MM.
Purpose of the Study:
- To assess the safety and feasibility of 64Cu-daratumumab PET/CT in patients with MM.
- To preliminarily evaluate the ability of 64Cu-daratumumab PET/CT to accurately detect or exclude MM lesions.
- To determine the optimal dose of unlabeled daratumumab for improving image quality.
Main Methods:
- A phase 1 trial involving 12 daratumumab-naive patients with MM.
- Patients received varying doses of unlabeled daratumumab prior to 64Cu-daratumumab injection.
- Whole-body PET/CT imaging was performed using 64Cu-daratumumab.
Main Results:
- 64Cu-daratumumab PET/CT was found to be safe and feasible, with no significant adverse events.
- The optimal dose of unlabeled daratumumab for image quality was determined to be 45 mg.
- 64Cu-daratumumab PET/CT demonstrated safe whole-body imaging of MM.
Conclusions:
- 64Cu-daratumumab PET/CT is a safe and feasible imaging modality for multiple myeloma.
- This technique shows potential for improved accuracy in detecting MM compared to FDG PET/CT.
- Further trials comparing 64Cu-daratumumab PET/CT directly with FDG PET/CT are warranted.
Abstract:
18F-Fluorodeoxyglucose (FDG) positron emission tomography/computed tomography (PET/CT) is one of the most widely used imaging techniques to detect multiple myeloma (MM). Intracellular FDG uptake depicts in vivo metabolic activity, which can be seen in both malignant and nonmalignant cells, resulting in limited sensitivity and specificity. Our group showed preclinically that tracing MM dissemination using a CD38-directed human antibody, daratumumab, that is radioconjugated with 64Cu via the chelator DOTA (64Cu-daratumumab), led to improved sensitivity and specificity over that of FDG. Here, we report the results of a phase 1 trial designed to (1) assess the safety and feasibility of 64Cu-daratumumab PET/CT and (2) preliminarily evaluate and characterize the ability of 64Cu-daratumumab to accurately detect or exclude MM lesions. A total of 12 daratumumab-naive patients were imaged. Prior to the injection of 15 mCi/5 mg of 64Cu-daratumumab, patients were treated with 0 (n = 3), 10 (n = 3), 45 (n = 3), or 95 mg (n = 3) of unlabeled daratumumab to assess its effect on image quality. No significant adverse events were observed from either unlabeled daratumumab or 64Cu-daratumumab. Of the dose levels tested, 45 mg unlabeled daratumumab was the most optimal in terms of removing background signal without saturating target sites. 64Cu-daratumumab PET/CT provided safe whole-body imaging of MM. A trial comparing the sensitivity and specificity of 64Cu-daratumumab PET/CT with that of FDG PET/CT is planned. This trial was registered at www.clinicaltrials.gov as #NCT03311828.
More Related Videos
11:34Murine Lymphocyte Labeling by 64Cu-Antibody Receptor Targeting for In Vivo Cell Trafficking by PET/CT
Published on: April 29, 2017
05:32Multimodal Bioluminescent and Positronic-emission Tomography/Computational Tomography Imaging of Multiple Myeloma Bone Marrow Xenografts in NOG Mice
Published on: January 7, 2019