PET Imaging of Neurofibromatosis Type 1 with a Fluorine-18 Labeled Tryptophan Radiotracer

Author:

Yue Xuyi12ORCID,Stauff Erik12,Boyapati Shriya1,Langhans Sigrid A.23ORCID,Xu Wenqi12ORCID,Makrogiannis Sokratis4,Okorie Uchenna J.4,Okorie Azubuike M.4,Kandula Vinay V. R.1ORCID,Kecskemethy Heidi H.12ORCID,Nikam Rahul M.12,Averill Lauren W.12,Shaffer Thomas H.5

Affiliation:

1. Department of Radiology, Nemours Children’s Health, Delaware, Wilmington, DE 19803, USA

2. Diagnostic & Research PET/MR Center, Nemours Children’s Health, Delaware, Wilmington, DE 19803, USA

3. Division of Neurology, Nemours Children’s Health, Delaware, Wilmington, DE 19803, USA

4. Division of Physics, Engineering, Mathematics, and Computer Science, Delaware State University, Dover, DE 19901, USA

5. Nemours Biomedical Research, Nemours Children’s Health, Delaware, Wilmington, DE 19803, USA

Abstract

Neurofibromatosis type 1 (NF1) is a neurocutaneous disorder. Plexiform neurofibromas (PNFs) are benign tumors commonly formed in patients with NF1. PNFs have a high incidence of developing into malignant peripheral nerve sheath tumors (MPNSTs) with a 5-year survival rate of only 30%. Therefore, the accurate diagnosis and differentiation of MPNSTs from benign PNFs are critical to patient management. We studied a fluorine-18 labeled tryptophan positron emission tomography (PET) radiotracer, 1-(2-[18F]fluoroethyl)-L-tryptophan (L-[18F]FETrp), to detect NF1-associated tumors in an animal model. An ex vivo biodistribution study of L-[18F]FETrp showed a similar tracer distribution and kinetics between the wild-type and triple mutant mice with the highest uptake in the pancreas. Bone uptake was stable. Brain uptake was low during the 90-min uptake period. Static PET imaging at 60 min post-injection showed L-[18F]FETrp had a comparable tumor uptake with [1⁸F]fluorodeoxyglucose (FDG). However, L-[18F]FETrp showed a significantly higher tumor-to-brain ratio than FDG (n = 4, p < 0.05). Sixty-minute-long dynamic PET scans using the two radiotracers showed similar kidney, liver, and lung kinetics. A dysregulated tryptophan metabolism in NF1 mice was further confirmed using immunohistostaining. L-[18F]FETrp is warranted to further investigate differentiating malignant NF1 tumors from benign PNFs. The study may reveal the tryptophan–kynurenine pathway as a therapeutic target for treating NF1.

Funder

Institutional Development Award (IDeA) from the National Institute of General Medical Sciences of the National Institutes of Health

Delaware INBRE Pilot Project Award from the NIGMS/NIH

National Cancer Institute award

National Institute of Biomedical Imaging and Bioengineering

The Nemours Foundation

Publisher

MDPI AG

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