Immuno-PET Imaging of the Programmed Cell Death-1 Ligand (PD-L1) Using a Zirconium-89 Labeled Therapeutic Antibody, Avelumab

Author:

Jagoda Elaine M.1,Vasalatiy Olga2,Basuli Falguni2,Opina Ana Christina L.2,Williams Mark R.1,Wong Karen1,Lane Kelly C.2,Adler Steve1,Ton Anita Thein1,Szajek Lawrence P.3,Xu Biying2,Butcher Donna4,Edmondson Elijah F.4,Swenson Rolf E.2,Greiner John5,Gulley James67,Eary Janet8,Choyke Peter L.1

Affiliation:

1. Molecular Imaging Program, National Cancer Institute, Bethesda, MD, USA

2. Imaging Probe Development Center, National Heart, Lung, and Blood Institute, National Institutes of Health, Rockville, MD, USA

3. PET Department, Clinical Center, NIH, Bethesda, MD, USA

4. Pathology & Histotechnology Lab Frederick National Laboratory for Cancer Research, NCI, Frederick, MD, USA

5. Laboratory of Tumor Immunology and Biology, National Cancer Institute, Bethesda, MD, USA

6. Genitourinary Malignancies Branch, National Cancer Institute, Bethesda, MD, USA

7. Clinical Research Directorate/CMRP, Leidos Biomedical Research Inc. (formerly SAIC-Frederick, Inc.), Frederick National Laboratory for Cancer Research, Frederick, MD, USA

8. Cancer Imaging Program, National Cancer Institute, Bethesda, MD, USA

Abstract

Objective: The goal is to evaluate avelumab, an anti-PD-L1 monoclonal immunoglobulin G antibody labeled with zirconium-89 in human PD-L1-expressing cancer cells and mouse xenografts for clinical translation. Methods: [89Zr]Zr-DFO-PD-L1 monoclonal antibody (mAb) was synthesized using avelumab conjugated to desferrioxamine. In vitro binding studies and biodistribution studies were performed with PD-L1+MDA-MB231 cells and MDA-MB231 xenograft mouse models, respectively. Biodistributions were determined at 1, 2, 3, 5, and 7 days post coinjection of [89Zr]Zr-DFO-PD-L1 mAb without or with unlabeled avelumab (10, 20, 40, and 400 µg). Results: [89Zr]Zr-DFO-PD-L1 mAb exhibited high affinity (Kd ∼ 0.3 nM) and detected moderate PD-L1 expression levels in MDA-MB231 cells. The spleen and lymph nodes exhibited the highest [89Zr]Zr-DFO-PD-L1 mAb uptakes in all time points, while MDA-MB231 tumor uptakes were lower but highly retained. In the unlabeled avelumab dose escalation studies, spleen tissue–muscle ratios decreased in a dose-dependent manner indicating specific [89Zr]Zr-DFO-PD-L1 mAb binding to PD-L1. In contrast, lymph node and tumor tissue–muscle ratios increased 4- to 5-fold at 20 and 40 µg avelumab doses. Conclusions: [89Zr]Zr-DFO-PD-L1 mAb exhibited specific and high affinity for PD-L1 in vitro and had target tissue uptakes correlating with PD-L1 expression levels in vivo. [89Zr]Zr-DFO-PD-L1 mAb uptake in PD-L1+tumors increased with escalating doses of avelumab.

Funder

National Cancer Institute

Publisher

SAGE Publications

Subject

Condensed Matter Physics,Radiology Nuclear Medicine and imaging,Biomedical Engineering,Molecular Medicine,Biotechnology

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