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Updated: Dec 26, 2025

Ex vivo Live Imaging of Lung Metastasis and Their Microenvironment
Published on: February 3, 2016
Imaging Features and Patterns of Metastasis in Non-Small Cell Lung Cancer with RET Rearrangements
Subba R Digumarthy1, Dexter P Mendoza1, Jessica J Lin2
1Department of Radiology, Massachusetts General Hospital, Boston, MA 02114, USA.
Abstract:
Rearranged during transfection proto-oncogene (RET) fusions represent a potentially targetable oncogenic driver in non-small cell lung cancer (NSCLC). Imaging features and metastatic patterns of advanced RET fusion-positive (RET+) NSCLC are not well established. Our goal was to compare the imaging features and patterns of metastases in RET+, ALK+ and ROS1+ NSCLC. Patients with RET+, ALK+, or ROS1+ NSCLC seen at our institution between January 2014 and December 2018 with available pre-treatment imaging were identified. The clinicopathologic features, imaging characteristics, and the distribution of metastases were reviewed and compared. We identified 215 patients with NSCLC harboring RET, ALK, or ROS1 gene fusion (RET = 32; ALK = 116; ROS1 = 67). Patients with RET+ NSCLC were older at presentation compared to ALK+ and ROS1+ patients (median age: RET = 64 years; ALK = 51 years, p < 0.001; ROS = 54 years, p = 0.042) and had a higher frequency of neuroendocrine histology (RET = 12%; ALK = 2%, p = 0.025; ROS1 = 0%, p = 0.010). Primary tumors in RET+ patients were more likely to be peripheral (RET = 69%; ALK = 47%, p = 0.029; ROS1 = 36%, p = 0.003), whereas lobar location, size, and density were comparable across the three groups. RET+ NSCLC was associated with a higher frequency of brain metastases at diagnosis compared to ROS1+ NSCLC (RET = 32%, ROS1 = 10%; p = 0.039. Metastatic patterns were otherwise similar across the three molecular subgroups, with high incidences of lymphangitic carcinomatosis, pleural metastases, and sclerotic bone metastases. RET+ NSCLC shares several distinct radiologic features and metastatic spread with ALK+ and ROS1+ NSCLC. These features may suggest the presence of RET fusions and help identify patients who may benefit from further molecular genotyping.
Insights
Rearranged during transfection (RET) fusions in non-small cell lung cancer (NSCLC) present distinct imaging features and metastatic patterns. Identifying these RET+ NSCLC characteristics aids in molecular genotyping and targeted therapy selection.
Area of Science:
- Oncology
- Radiology
- Genetics
Background:
- Rearranged during transfection (RET) proto-oncogene fusions are oncogenic drivers in non-small cell lung cancer (NSCLC).
- Imaging features and metastatic patterns of RET-fusion-positive (RET+) NSCLC are not well-established.
- Understanding these patterns is crucial for diagnosis and treatment planning.
Purpose of the Study:
- To compare the imaging features and metastatic patterns of advanced RET+, ALK+, and ROS1+ NSCLC.
- To identify distinct radiologic characteristics associated with RET fusions.
- To aid in the identification of patients who may benefit from molecular genotyping.
Main Methods:
- Retrospective review of pre-treatment imaging for 215 NSCLC patients with RET, ALK, or ROS1 gene fusions (RET=32, ALK=116, ROS1=67) between 2014-2018.
- Analysis of clinicopathologic features, imaging characteristics, and metastatic distribution.
- Statistical comparison of features across the three molecular subgroups.
Main Results:
- Patients with RET+ NSCLC were older (median 64 years) and had a higher frequency of neuroendocrine histology (12%) compared to ALK+ and ROS1+ NSCLC.
- Primary tumors in RET+ NSCLC were more likely to be peripheral (69%).
- RET+ NSCLC showed a higher frequency of brain metastases (32%) at diagnosis compared to ROS1+ NSCLC (10%).
Conclusions:
- RET+ NSCLC exhibits distinct radiologic features, including peripheral primary tumors and a higher incidence of brain metastases.
- Metastatic patterns, such as lymphangitic carcinomatosis, pleural, and sclerotic bone metastases, were similar across RET+, ALK+, and ROS1+ NSCLC.
- These imaging findings may suggest the presence of RET fusions, guiding further molecular testing.

